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Pathways Recommended: Membrane Transporter/Ion Channel
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transient receptor potential cation channel 5

" in MedChemExpress (MCE) Product Catalog:

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Cat. No. Compare Product Name Species Source
  • HY-P701832

    TRPC5; Short transient receptor potential channel 5; TrpC5; transient receptor protein 5; TRP-5; hTRP-5; hTRP5

    Human HEK293
    The TRPC5 protein is hypothesized to be a receptor-activated, nonselective calcium-permeable cation channel, possibly activated by phosphatidylinositol second messengers via receptor tyrosine kinases or G-protein-coupled receptors. Although TRPC5 is thought to have calcium-selective properties, it may also respond to depletion of intracellular calcium stores. TRPC5 Protein, Human (HEK293, His, MBP, FLAG) is the recombinant human-derived TRPC5 protein, expressed by HEK293 , with N-MBP, C-Flag, N-8*His labeled tag. The total length of TRPC5 Protein, Human (HEK293, His, MBP, FLAG) is 972 a.a., .
  • HY-P702477

    transient receptor potential cation channel subfamily V member 3; Vanilloid receptor-like 3; VRL-3

    Human E. coli Cell-free
    The TRPV3 protein is a putative receptor-activated calcium channel that responds to warm temperatures and exhibits increased activity at harmful temperatures above 39 degrees Celsius. It negatively regulates hair growth by inhibiting keratinocyte proliferation, inducing apoptosis, and causing premature degeneration of hair follicles. TRPV3 Protein, Human (Cell-Free, His, Flag) is the recombinant human-derived TRPV3 protein, expressed by E. coli Cell-free , with N-10*His, N-Flag labeled tag. The total length of TRPV3 Protein, Human (Cell-Free, His, Flag) is 790 a.a., with molecular weight of 93.1 kDa.
  • HY-P702476

    transient receptor potential cation channel subfamily V member 2; Osm-9-like TRP channel 2; OTRPC2; Stretch-activated channel 2B; Vanilloid receptor-like protein 1; VRL-1

    Rat E. coli Cell-free
    The TRPV2 protein is a calcium-permeable nonselective cation channel with outward rectification and may be regulated by growth factors such as IGF1, PDGF, and morphogenetic neuropeptide/tau activator. TRPV2 Protein, Rat (Cell-Free, His) is the recombinant rat-derived TRPV2 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of TRPV2 Protein, Rat (Cell-Free, His) is 761 a.a., with molecular weight of 88.2 kDa.
  • HY-P702475

    Short transient receptor potential channel 1; transient receptor protein 1; TRP-1; mTrp1; Trp-related protein 1

    Mouse E. coli Cell-free
    The TRPC1 protein theoretically forms a receptor-activated nonselective calcium-permeable cation channel that may be regulated by a phosphatidylinositol second messenger system activated through receptor tyrosine kinases or G protein-coupled receptors. It may also respond to depletion of intracellular calcium stores. TRPC1 Protein, Mouse (Cell-Free, His) is the recombinant mouse-derived TRPC1 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of TRPC1 Protein, Mouse (Cell-Free, His) is 793 a.a., with molecular weight of 94.0 kDa.
  • HY-P702566

    TRPA1; transient receptor potential cation channel subfamily A member 1; Ankyrin-like with transmembrane domains protein 1; Transformation-sensitive protein p120; Wasabi receptor

    Human HEK293
  • HY-P702374

    Mucolipin-1; MG-2; Mucolipidin; transient receptor potential channel mucolipin 1; TRPML1

    Human E. coli Cell-free
    The TRPML1 protein is a nonselective cation channel that regulates membrane trafficking and metal homeostasis. It promotes the release of Ca(2+) in late endosomes and lysosomes, affecting organelle fusion, exocytosis and autophagy. MCOLN1 Protein, Human (Cell-Free, His) is the recombinant human-derived MCOLN1 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of MCOLN1 Protein, Human (Cell-Free, His) is 580 a.a., with molecular weight of 66.5 kDa.
  • HY-P701382

    TRPA1; transient receptor potential cation channel subfamily A member 1; Ankyrin-like with transmembrane domains protein 1; Transformation-sensitive protein p120; Wasabi receptor

    Human HEK293
    The TRPA1 protein is a receptor-activated nonselective cation channel that is critical for pain detection and may affect cold sensation, oxygen sensing, cough reflex, itch, and inner ear function. It responds to inflammatory mediators and irritants such as allyl thiocyanate (AITC), cinnamic aldehyde, diallyl disulfide (DADS), and acrolein. TRPA1 Protein, Human (HEK293, His, MBP, FLAG) is the recombinant human-derived TRPA1 protein, expressed by HEK293 , with N-10*His, N-MBP, C-Flag labeled tag. The total length of TRPA1 Protein, Human (HEK293, His, MBP, FLAG) is 1118 a.a. .
  • HY-P701383

    MCOLN1 (ML4, TRPML1); Mucolipin-1; MG-2; Mucolipidin; transient receptor potential channel mucolipin 1 (TRPML1)

    Human HEK293
    The TRPML1 protein is a nonselective cation channel that regulates membrane trafficking and metal homeostasis. It promotes the release of Ca(2+) in late endosomes and lysosomes, affecting organelle fusion, exocytosis and autophagy. TRPML1 Protein, Human (HEK293, Strep, FLAG) is the recombinant human-derived TRPML1 protein, expressed by HEK293 , with N-Strep, C-Flag labeled tag. The total length of TRPML1 Protein, Human (HEK293, Strep, FLAG) is 580 a.a., .
  • HY-P702253

    Cyclic nucleotide-gated cation channel alpha-4; Cyclic nucleotide-gated channel alpha-4; CNG channel alpha-4; CNG-4; CNG4

    Human E. coli Cell-free
    The CNGA4 protein is a regulatory subunit of cation-selective cyclic nucleotide-gated (CNG) channels in olfactory sensory neurons that responds to cAMP to induce depolarization. This critical role in odorant signal transduction and adaptation enhances neural responses to olfactory stimulation. CNGA4 Protein, Human (Cell-Free, His, SUMO) is the recombinant human-derived CNGA4 protein, expressed by E. coli Cell-free , with N-6*His, N-SUMO labeled tag. The total length of CNGA4 Protein, Human (Cell-Free, His, SUMO) is 575 a.a., with molecular weight of 82 kDa.
  • HY-P702361

    cation-dependent mannose-6-phosphate receptor; 46 kDa mannose 6-phosphate receptor; MPR 46

    Bovine E. coli Cell-free
    M6PR (mannose 6-phosphate receptor) transports phosphorylated lysosomal enzymes from the Golgi complex to lysosomes. Lysosomal enzymes with mannose phosphate residues specifically bind to Golgi M6PR. M6PR Protein, Bovine (Cell-Free, His) is the recombinant bovine-derived M6PR protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of M6PR Protein, Bovine (Cell-Free, His) is 251 a.a., with molecular weight of 30.8 kDa.
  • HY-P702362

    cation-dependent mannose-6-phosphate receptor; 46 kDa mannose 6-phosphate receptor; MPR 46

    Human E. coli Cell-free
    M6PR, vital in cellular transport, guides phosphorylated lysosomal enzymes from Golgi and cell surface to lysosomes. Recognizing phosphomannosyl residues, it forms receptor-ligand complexes, transported to acidic prelyosomal compartments. Low pH triggers complex dissociation. M6PR, functioning as a homodimer, interacts with adaptors GGA1, GGA2, and GGA3, ensuring the precision of this transport mechanism. M6PR Protein, Human (Cell-Free, His) is the recombinant human-derived M6PR protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of M6PR Protein, Human (Cell-Free, His) is 251 a.a., with molecular weight of 30.7 kDa.
  • HY-P70120

    rHuChloride intracellular channel protein 4/CLIC4, His; Chloride Intracellular channel Protein 4; Intracellular Chloride Ion channel Protein p64H1; CLIC4

    Human E. coli
    CLIC4/Chloride The intracellular channel 4 protein inserts into the membrane to form a pH-dependent, poorly selective ion channel that transports chloride ions. It enhances cell surface expression of HRH3 and maintains membrane polarity during angiogenesis, mitosis, cytokinesis, endothelial cell proliferation, and morphogenesis. CLIC4/Chloride intracellular channel 4 Protein, Human (His) is the recombinant human-derived CLIC4/Chloride intracellular channel 4 protein, expressed by E. coli , with N-6*His labeled tag. The total length of CLIC4/Chloride intracellular channel 4 Protein, Human (His) is 253 a.a., with molecular weight of ~32.0 kDa.
  • HY-P7840A

    Chloride Intracellular channel Protein 1; Chloride channel ABP; Nuclear Chloride Ion channel 27; NCC27; Regulatory Nuclear Chloride Ion channel Protein; hRNCC; CLIC1; G6; NCC27

    Human E. coli
    The CLIC1 protein exhibits specific lysophospholipase activity and plays a critical role in mediating cellular responses to oxidative stress. As a member of the chloride intracellular channel family, CLIC1 is involved in a variety of physiological processes, including cell volume regulation, membrane potential regulation, and regulation of cell cycle progression. CLIC1 Protein, Human (N-His) is the recombinant human-derived CLIC1 protein, expressed by E. coli , with N-6*His labeled tag. The total length of CLIC1 Protein, Human (N-His) is 240 a.a., with molecular weight of ~29 kDa.
  • HY-P702348

    Potassium channel subfamily K member 9; Acid-sensitive potassium channel protein TASK-3; TWIK-related acid-sensitive K(+) channel 3; Two pore potassium channel KT3.2; Two pore K(+) channel KT3.2

    Human E. coli Cell-free
    KCNK9 Protein, a pH-dependent background potassium channel, usually forms homodimers and may also heterodimerize with KCNK1. KCNK9 Protein, Human (Cell-Free, His) is the recombinant human-derived KCNK9 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of KCNK9 Protein, Human (Cell-Free, His) is 374 a.a., with molecular weight of 48.3 kDa.
  • HY-P702344

    ATP-sensitive inward rectifier potassium channel 10; ATP-sensitive inward rectifier potassium channel KAB-2; BIR10; Brain-specific inwardly rectifying K(+) channel 1; BIRK1; Inward rectifier K(+) channel Kir4.1; Potassium channel, inwardly rectifying subfamily J member 10

    Rat E. coli Cell-free
    The KCNJ10 protein is an inwardly rectifying potassium channel that plays a critical buffering role in potassium in brain glial cells. It facilitates the influx of potassium and is regulated at extracellular levels. KCNJ10 Protein, Rat (Cell-Free, His) is the recombinant rat-derived KCNJ10 protein, expressed by E. coli Cell-free , with N-6*His labeled tag. The total length of KCNJ10 Protein, Rat (Cell-Free, His) is 379 a.a., with molecular weight of 46.6 kDa.
  • HY-P702329

    Voltage-gated hydrogen channel 1; Hydrogen voltage-gated channel 1; HV1; Voltage sensor domain-only protein; mVSOP

    Mouse E. coli Cell-free
    The HVCN1 protein plays a crucial role in cellular function by mediating voltage-dependent proton permeability, forming proton-selective channels that allow protons to pass along electrochemical gradients. This channel promotes proton efflux, which in combination with membrane depolarization contributes to the generation of reactive oxygen species during phagocytosis. HVCN1 Protein, Mouse (Cell-Free, His) is the recombinant mouse-derived HVCN1 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of HVCN1 Protein, Mouse (Cell-Free, His) is 269 a.a., with molecular weight of 36.7 kDa.
  • HY-P702345

    Inward rectifier potassium channel 16; Inward rectifier K(+) channel Kir5.1; Potassium channel, inwardly rectifying subfamily J member 16

    Human E. coli Cell-free
    The KCNJ16 protein is a member of inwardly rectifying potassium channels, which facilitates the influx of potassium into cells. Extracellular potassium concentration modulates voltage dependence, resulting in a positive voltage shift. KCNJ16 Protein, Human (Cell-Free, His) is the recombinant human-derived KCNJ16 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of KCNJ16 Protein, Human (Cell-Free, His) is 418 a.a., with molecular weight of 50.8 kDa.
  • HY-P702341

    ATP-sensitive inward rectifier potassium channel 10; ATP-dependent inwardly rectifying potassium channel Kir4.1; Inward rectifier K(+) channel Kir1.2; Potassium channel, inwardly rectifying subfamily J member 10

    Human E. coli Cell-free
    The KCNJ10 protein is an inwardly rectifying potassium channel that is essential for potassium buffering by glial cells in the brain. It favors potassium influx rather than efflux, and the voltage dependence is regulated by extracellular potassium levels. KCNJ10 Protein, Human (Cell-Free, His) is the recombinant human-derived KCNJ10 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of KCNJ10 Protein, Human (Cell-Free, His) is 379 a.a., with molecular weight of 48.6 kDa.
  • HY-P702343

    ATP-sensitive inward rectifier potassium channel 10; Inward rectifier K(+) channel Kir4.1; Potassium channel, inwardly rectifying subfamily J member 10

    Mouse E. coli Cell-free
    The KCNJ10 protein regulates potassium buffering in brain glial cells, favoring potassium influx due to its inward rectifying properties. Extracellular potassium concentration modulates its voltage dependence, and internal magnesium induces inward rectification by blocking outward current. KCNJ10 Protein, Mouse (Cell-Free, His) is the recombinant mouse-derived KCNJ10 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of KCNJ10 Protein, Mouse (Cell-Free, His) is 379 a.a., with molecular weight of 48.5 kDa.
  • HY-P702346

    Inward rectifier potassium channel 16; BIR9; Inward rectifier K(+) channel Kir5.1; Potassium channel, inwardly rectifying subfamily J member 16

    Rat E. coli Cell-free
    KCNJ16 is a member of the inwardly rectifying potassium channel, which facilitates potassium influx and is regulated by extracellular potassium concentration. Its inward rectification involves the suppression of outward current by internal magnesium. KCNJ16 Protein, Rat (Cell-Free, His) is the recombinant rat-derived KCNJ16 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of KCNJ16 Protein, Rat (Cell-Free, His) is 419 a.a., with molecular weight of 54.0 kDa.
  • HY-P702342

    ATP-sensitive inward rectifier potassium channel 10; ATP-dependent inwardly rectifying potassium channel Kir4.1; Inward rectifier K(+) channel Kir1.2; Potassium channel, inwardly rectifying subfamily J member 10

    Human E. coli Cell-free
    The KCNJ10 protein is an inwardly rectifying potassium channel that is essential for potassium buffering by glial cells in the brain. It favors potassium influx rather than efflux, and the voltage dependence is regulated by extracellular potassium levels. KCNJ10 Protein, Human (Cell-Free, His, SUMO) is the recombinant human-derived KCNJ10 protein, expressed by E. coli Cell-free , with N-6*His, N-SUMO labeled tag. The total length of KCNJ10 Protein, Human (Cell-Free, His, SUMO) is 379 a.a., with molecular weight of 58.5 kDa.
  • HY-P702347

    Potassium channel subfamily K member 13; Tandem pore domain halothane-inhibited potassium channel 1; THIK-1

    Human E. coli Cell-free
    KCNK13 Protein, a potassium channel, uniquely features weak inward rectification in symmetrical K(+) solution. As a homodimer, it regulates potassium ion flow across cellular membranes, impacting cellular excitability and membrane potential. This property highlights KCNK13's role in shaping electrochemical gradients, influencing processes reliant on potassium ion dynamics. KCNK13 Protein, Human (Cell-Free, His) is the recombinant human-derived KCNK13 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of KCNK13 Protein, Human (Cell-Free, His) is 408 a.a., with molecular weight of 51.4 kDa.
  • HY-P702213

    Aquaporin-2; ADH water channel; Aquaporin-CD; AQP-CD; Collecting duct water channel protein; WCH-CD; Water channel protein for renal collecting duct

    Mouse E. coli Cell-free
    AQP2 is a homotetrameric protein that plays a key role in renal water homeostasis. It acts as a water-specific channel, facilitating the movement of water across the plasma membrane of the renal collecting duct. AQP2 Protein, Mouse (Cell-Free, His) is the recombinant mouse-derived AQP2 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of AQP2 Protein, Mouse (Cell-Free, His) is 271 a.a., with molecular weight of 30.5 kDa.
  • HY-P702214

    Aquaporin-2; ADH water channel; Aquaporin-CD; AQP-CD; Collecting duct water channel protein; WCH-CD; Water channel protein for renal collecting duct

    Rat E. coli Cell-free
    AQP2 Protein, a water-specific channel, imparts high water permeability to renal collecting duct plasma membranes, facilitating water movement along osmotic gradients. Crucial for renal water homeostasis, AQP2 significantly regulates water reabsorption in the kidneys. Existing as a homotetramer, it is a key component in selectively transporting water through renal tissues. AQP2 Protein, Rat (Cell-Free, His) is the recombinant rat-derived AQP2 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of AQP2 Protein, Rat (Cell-Free, His) is 271 a.a., with molecular weight of 30.4 kDa.
  • HY-P72109

    CA2D1_HUMAN; CACN A2; CACNA2; Cacna2d1; CACNL2A; Calcium channel L type alpha 2 polypeptide; Calcium channel voltage dependent alpha 2/delta subunit 1; CCHL2A; Dihydropyridine receptor alpha 2 subunit; Dihydropyridine sensitive L type calcium channel alpha 2/delta subunit; Dihydropyridine sensitive L type calcium channel subunits alpha 2/delta; L type calcium channel subunit alpha 2; MHS 3; MHS3; Voltage dependent calcium channel subunit alpha 2/delta 1; Voltage gated calcium channel subunit alpha 2/delta 1; Voltage-dependent calcium channel subunit delta-1; Voltage-gated calcium channel subunit alpha-2/delta-1

    Human E. coli
    The CACNA2D1 protein, particularly its α-2/δ subunit, plays a key role in regulating calcium current density and activation/deactivation kinetics of voltage-dependent calcium channels. It contributes to excitation-contraction coupling, coordinating cellular processes. CACNA2D1 Protein, Human (His-SUMO) is the recombinant human-derived CACNA2D1 protein, expressed by E. coli , with N-6*His, N-SUMO labeled tag. The total length of CACNA2D1 Protein, Human (His-SUMO) is 141 a.a., with molecular weight of ~32.3 kDa.
  • HY-P7857

    rHuChloride intracellular channel protein 3/CLIC3, His; Chloride intracellular channel protein 3; CLIC3

    Human E. coli
    The CLIC3 protein is a multifunctional molecule capable of integrating into membranes and forming chloride channels. It has been implicated in potential roles related to cell growth control. CLIC3 Protein, Human (His) is the recombinant human-derived CLIC3 protein, expressed by E. coli , with C-6*His labeled tag. The total length of CLIC3 Protein, Human (His) is 236 a.a., with molecular weight of ~30.0 kDa.
  • HY-P70113

    rHuChloride intracellular channel protein 5/CLIC5, His; Chloride Intracellular channel Protein 5; CLIC5

    Human E. coli
    The CLIC5 protein is essential for normal hearing and contributes to the formation of stereocilia and the development of the organ of Corti in the inner ear. It forms poorly selective ion channels that may transport chloride ions. CLIC5 Protein, Human (His) is the recombinant human-derived CLIC5 protein, expressed by E. coli , with N-6*His labeled tag. The total length of CLIC5 Protein, Human (His) is 238 a.a., with molecular weight of ~32.0 kDa.
  • HY-P76531

    Osteopetrosis-associated transmembrane protein 1; Chloride channel 7 beta subunit; GL

    Human HEK293
    The OSTM1 protein is indispensable for the maturation and function of osteoclasts and melanocytes. It forms a heteromer with CLCN7, with CLCN7 as the α subunit and OSTM1 as the β subunit. OSTM1 Protein, Human (HEK293, His) is the recombinant human-derived OSTM1 protein, expressed by HEK293 , with C-His labeled tag. The total length of OSTM1 Protein, Human (HEK293, His) is 253 a.a., with molecular weight of 40-50 kDa.
  • HY-P77117

    Osteopetrosis-associated transmembrane protein 1; Chloride channel 7 beta subunit; GL

    Mouse HEK293
    OSTM1 Protein is crucial for osteoclast and melanocyte maturation and function, forming heteromers with alpha subunits (CLCN7) to create chloride channel 7. OSTM1 Protein, Mouse (HEK293, His) is the recombinant mouse-derived OSTM1 protein, expressed by HEK293 , with C-His labeled tag. The total length of OSTM1 Protein, Mouse (HEK293, His) is 254 a.a., with molecular weight of ~29.7 KDa.
  • HY-P702340

    Potassium voltage-gated channel subfamily E member 2; MinK-related peptide 1; Minimum potassium ion channel-related peptide 1; Potassium channel subunit beta MiRP1

    Human E. coli Cell-free
    The KCNE2 protein acts as an auxiliary subunit in voltage-gated potassium channels, affecting gating kinetics and channel stability. It regulates KCNB1, affects delayed rectifier voltage-dependent potassium channels, and cooperates with KCNH2/HERG to form the rapidly activating component of cardiac delayed rectifier potassium current (IKr). KCNE2 Protein, Human (Cell-Free, His) is the recombinant human-derived KCNE2 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of KCNE2 Protein, Human (Cell-Free, His) is 123 a.a., with molecular weight of 17.3 kDa.
  • HY-P7843

    rHuChloride intracellular channel protein 2/CLIC2, His; Chloride Intracellular channel Protein 2; XAP121; CLIC2

    Human E. coli
    CLIC2/XAP121 protein exhibits the capability to insert into membranes and form chloride ion channels, and the activity of these channels is pH-dependent. The process of membrane insertion appears to be redox-regulated and is likely to occur specifically under oxidizing conditions. Moreover, CLIC2/XAP121 plays a regulatory role in modulating the activity of RYR2 and inhibiting calcium influx. Structurally, it functions as a monomer and is known to interact with TRAPPC2 and RYR2. CLIC2/XAP121 Protein, Human (His) is the recombinant human-derived CLIC2/XAP121 protein, expressed by E. coli , with N-6*His labeled tag. The total length of CLIC2/XAP121 Protein, Human (His) is 247 a.a., with molecular weight of ~32.0 kDa.
  • HY-P702229

    Voltage-dependent calcium channel gamma-1 subunit; Dihydropyridine-sensitive L-type, skeletal muscle calcium channel subunit gamma

    Mouse E. coli Cell-free
    CACNG1 Protein, a regulatory subunit of the voltage-gated calcium channel, contributes to L-type calcium currents in skeletal muscle and modulates channel inactivation kinetics. Collaborating with CACNA1S, CACNB1 or CACNB2, and CACNA2D1, CACNG1 orchestrates a balanced 1:1:1:1 ratio channel assembly, influencing the voltage-gated calcium channel's functionality in skeletal muscle. CACNG1 Protein, Mouse (Cell-Free, His) is the recombinant mouse-derived CACNG1 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of CACNG1 Protein, Mouse (Cell-Free, His) is 223 a.a., with molecular weight of 26.6 kDa.
  • HY-P702228

    Voltage-dependent L-type calcium channel subunit alpha-1C; Calcium channel, L type, alpha-1 polypeptide, isoform 1, cardiac muscle; Voltage-gated calcium channel subunit alpha Cav1.2

    Pig E. coli Cell-free
    The CACNA1C protein is the alpha-1C subunit of voltage-gated calcium channels that generate L-type calcium currents that are critical for calcium influx and sarcoplasmic release. Its role in excitation-contraction coupling is critical for cardiac development, rhythm regulation, and smooth muscle cell contraction. CACNA1C Protein, Pig (Cell-Free, His) is the recombinant pig-derived CACNA1C protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of CACNA1C Protein, Pig (Cell-Free, His) is 169 a.a., with molecular weight of 22.3 kDa.
  • HY-P702351

    pH-gated potassium channel KcsA

    Others E. coli Cell-free
    KCSA Protein, a pH-gated potassium ion channel, uniquely opens in response to cytosolic pH changes, particularly from 7 to 4. This homotetrameric molecular gatekeeper facilitates pH-dependent passage of potassium ions. KCSA Protein, Streptomyces coelicolor (Cell-Free, His) is the recombinant KCSA protein, expressed by E. coli Cell-free, with N-10*His labeled tag. The total length of KCSA Protein, Streptomyces coelicolor (Cell-Free, His) is 160 a.a., with molecular weight of 23.7 kDa.
  • HY-P72085

    AQP 1; AQP CHIP; AQP-1; AQP1; AQP1_HUMAN; aquaporin 1 channel-forming integral protein; 28kDa; CO blood group; ; aquaporin 1 Colton blood group; ; Aquaporin CHIP; Aquaporin-1; Aquaporin-CHIP; Aquaporin1; channel forming integral protein 28kDa; channel like integral membrane protein 28 kDa; CHIP 28; CHIP28; CO; Colton blood group; Growth factor induced delayed early response protein; MGC26324; Urine water channel; Water channel protein CHIP 29; Water channel protein CHIP29; Water channel protein for red blood cells and kidney proximal tubule

    Human E. coli
    The AQP1 protein forms water-specific channels that allow water to cross red blood cells and renal proximal tubule membranes. AQP1 Protein, Human (His-SUMO) is the recombinant human-derived AQP1 protein, expressed by E. coli , with N-6*His, N-SUMO labeled tag. The total length of AQP1 Protein, Human (His-SUMO) is 50 a.a., with molecular weight of ~21.6 kDa.
  • HY-P700377

    AQP CHIP; AQP-1; AQP1; AQP1_HUMAN; aquaporin 1 channel-forming integral protein; 28kDa; CO blood group; ; aquaporin 1 Colton blood group; ; Aquaporin CHIP; Aquaporin-1; Aquaporin-CHIP; Aquaporin1; channel forming integral protein 28kDa; channel like integral membrane protein 28 kDa; CHIP 28; CHIP28; CO; Colton blood group; Growth factor induced delayed early response protein; MGC26324; Urine water channel; Water channel protein CHIP 29; Water channel protein CHIP29; Water channel protein for red blood cells and kidney proximal tubule

    Human E. coli Cell-free
    The AQP1 protein forms water-specific channels that allow water to cross red blood cells and renal proximal tubule membranes. Aquaporin-1/AQP1 Protein, Human (Cell-Free, His-SUMO) is the recombinant human-derived Aquaporin-1/AQP1 protein, expressed by E. coli Cell-free , with N-SUMO, N-6*His labeled tag. The total length of Aquaporin-1/AQP1 Protein, Human (Cell-Free, His-SUMO) is 268 a.a., with molecular weight of 41.3 kDa.
  • HY-P701834

    KCNH2; Potassium voltage-gated channel subfamily H member 2; Eag homolog; Ether-a-go-go-related gene potassium channel 1; ERG-1; Eag-related protein 1; Ether-a-go-go-related protein 1; H-ERG; hERG-1; hERG1; Voltage-gated potassium channel subunit Kv11.1

    Human HEK293
    The hERG protein is the α subunit of voltage-gated potassium channels and is critical for mediating cardiac delayed rectifier potassium current (IKr). It lacks individual channel activity but dynamically affects properties by forming heterotetramers with other isoforms. hERG Protein, Human (HEK293, GFP, His) is the recombinant human-derived hERG protein, expressed by HEK293 , with C-10*His, C-GFP labeled tag. ,
  • HY-P702350

    Intermediate conductance calcium-activated potassium channel protein 4; IKCa1; IK1; KCa3.1; KCa4; Putative Gardos channel

    Human E. coli Cell-free
    KCNN4 is a voltage-dependent potassium channel that is activated by intracellular calcium, leading to membrane hyperpolarization and subsequent calcium influx. This channel is critical for the reactivation of naive T cells, helping to maximize calcium influx and promote T cell proliferation. KCNN4 Protein, Human (Cell-Free, His) is the recombinant human-derived KCNN4 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of KCNN4 Protein, Human (Cell-Free, His) is 427 a.a., with molecular weight of 59.1 kDa.
  • HY-P702408

    Proton channel OTOP1; Otopetrin-1

    Mouse E. coli Cell-free
    The OTOP1 protein is a proton-selective channel that transports protons into less voltage-sensitive cells. This uniqueness is critical for cell types because changes in intracellular pH regulate biochemical and developmental processes. OTOP1 Protein, Mouse (Cell-Free, His) is the recombinant mouse-derived OTOP1 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of OTOP1 Protein, Mouse (Cell-Free, His) is 600 a.a., with molecular weight of 68.6 kDa.
  • HY-P702252

    Chemerin-like receptor 2; Chemerin chemokine-like receptor 2; Chemokine-like receptor 2; G-protein coupled receptor 1

    Rat E. coli Cell-free
    CMKLR2 Protein, a receptor for chemerin/RARRES2, regulates inflammation and energy homeostasis through G proteins and MAPK1/MAPK3 pathways. It also serves as a TAFA1 receptor, impacting neuronal stem-cell processes via ROCK/ERK and ROCK/STAT3 signaling. CMKLR2 Protein, Rat (Cell-Free, His) is the recombinant rat-derived CMKLR2 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of CMKLR2 Protein, Rat (Cell-Free, His) is 353 a.a., with molecular weight of 42.4 kDa.
  • HY-P702215

    Aquaporin-4; Mercurial-insensitive water channel; MIWC; WCH4

    Mouse E. coli Cell-free
    The AQP4 protein forms water-specific channels that are critical for brain water homeostasis and lymphoid solute transport. It regulates water exchange at the blood-brain interface, promoting the influx of cerebrospinal fluid into the brain and the drainage of interstitial fluid. AQP4 Protein, Mouse (Cell-Free) is the recombinant mouse-derived AQP4 protein, expressed by E. coli Cell-free , with tag free. The total length of AQP4 Protein, Mouse (Cell-Free) is 323 a.a., with molecular weight of 34.8 kDa.
  • HY-P702313

    Hydroxycarboxylic acid receptor 2; G-protein coupled receptor 109A; G-protein coupled receptor HM74A; Niacin receptor 1; Nicotinic acid receptor

    Human E. coli Cell-free
    HCAR2 protein, a high-affinity receptor for nicotinic acid and (D)-beta-hydroxybutyrate, induces increased adiponectin secretion and reduced lipolysis through G(i)-protein-mediated adenylyl cyclase inhibition. This requires nicotinic acid doses exceeding typical dietary levels. HCAR2 also mediates nicotinic acid-induced apoptosis in neutrophils. Upon nicotinic acid activation, reduced cAMP levels potentially influence cAMP-dependent protein kinase A activity and target protein phosphorylation, leading to neutrophil apoptosis. Relative potency for displacing nicotinic acid binding: 5-methyl pyrazole-3-carboxylic acid = pyridine-3-acetic acid > acifran > 5-methyl nicotinic acid = acipimox >> nicotinuric acid = nicotinamide. HCAR2 Protein, Human (Cell-Free, His) is the recombinant human-derived HCAR2 protein, expressed by E. coli Cell-free, with C-6*His labeled tag. The total length of HCAR2 Protein, Human (Cell-Free, His) is 363 a.a., with molecular weight of 42.7 kDa.
  • HY-P76051

    Sodium channel subunit beta-2; SCN2B

    Human HEK293
    SCN2B protein is a key subunit of voltage-gated sodium channels and plays an important role in regulating channel function by interacting with the pore-forming α subunit. This interaction regulates the flux of sodium ions across the cell membrane, affecting neuronal excitability and action potential propagation. SCN2B Protein, Human (HEK293, Fc) is the recombinant human-derived SCN2B protein, expressed by HEK293 , with C-hFc labeled tag. The total length of SCN2B Protein, Human (HEK293, Fc) is 159 a.a., with molecular weight of 53-57 kDa.
  • HY-P76052

    Sodium channel subunit beta-2; SCN2B

    Human HEK293
    SCN2B protein is a key subunit of voltage-gated sodium channels and plays an important role in regulating channel function by interacting with the pore-forming α subunit. This interaction regulates the flux of sodium ions across the cell membrane, affecting neuronal excitability and action potential propagation. SCN2B Protein, Human (HEK293, His) is the recombinant human-derived SCN2B protein, expressed by HEK293 , with C-His labeled tag. The total length of SCN2B Protein, Human (HEK293, His) is 130 a.a., with molecular weight of 21-34 kDa.
  • HY-P702216

    Aquaporin-4; Mercurial-insensitive water channel; MIWC; WCH4

    Mouse E. coli Cell-free
    The AQP4 protein forms water-specific channels that are critical for brain water homeostasis and lymphoid solute transport. It regulates water exchange at the blood-brain interface, promoting the influx of cerebrospinal fluid into the brain and the drainage of interstitial fluid. AQP4 Protein, Mouse (Cell-Free, His) is the recombinant mouse-derived AQP4 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of AQP4 Protein, Mouse (Cell-Free, His) is 323 a.a., with molecular weight of 40.5 kDa.
  • HY-P702352

    ER lumen protein-retaining receptor 2; KDEL endoplasmic reticulum protein retention receptor 2; KDEL receptor 2

    Mouse E. coli Cell-free
    KDELR2 Protein, a membrane receptor, crucially maintains endoplasmic reticulum (ER) resident proteins' localization. It binds the K-D-E-L sequence motif, retaining these proteins within the ER. This interaction facilitates vesicle-mediated recycling, ensuring proper subcellular localization through Golgi-to-ER protein return. KDELR2's pH-dependent binding, optimal at pH 5-5.4, underscores the regulatory role of pH in this vital cellular process. KDELR2 Protein, Mouse (Cell-Free, His) is the recombinant mouse-derived KDELR2 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of KDELR2 Protein, Mouse (Cell-Free, His) is 212 a.a., with molecular weight of 26.0 kDa.
  • HY-P702306

    G-protein coupled receptor 35; Kynurenic acid receptor; KYNA receptor

    Human E. coli Cell-free
    GPR35 Protein, a receptor for kynurenic acid, operates through G(qi/o) proteins, triggering calcium mobilization and inositol phosphate production. It plays a pivotal role in transducing signals related to tryptophan metabolism, contributing to cellular responses via intricate G-protein signaling pathways. GPR35 Protein, Human (Cell-Free, His) is the recombinant human-derived GPR35 protein, expressed by E. coli Cell-free, with N-10*His labeled tag. The total length of GPR35 Protein, Human (Cell-Free, His) is 309 a.a., with molecular weight of 36.9 kDa.
  • HY-P702250

    Chemerin-like receptor 1; Chemokine-like receptor 1; G-protein coupled receptor ChemR23; G-protein coupled receptor DEZ

    Human E. coli Cell-free
    CMKLR1 protein is a receptor for chemerin/RARRES2 and resolvin E1, activating G protein and β-arrestin pathways when RARRES2 interacts. This triggers a cascade of reactions including calcium mobilization, MAP kinase phosphorylation, and PI3K activation, leading to various effects including reduced immune response, adipogenesis, and angiogenesis. CMKLR1 Protein, Human (Cell-Free, His) is the recombinant human-derived CMKLR1 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of CMKLR1 Protein, Human (Cell-Free, His) is 373 a.a., with molecular weight of 45.1 kDa.
  • HY-P702275

    Proteinase-activated receptor 3; Coagulation factor II receptor-like 2; Thrombin receptor-like 2

    Human E. coli Cell-free
    F2RL2 Protein, a receptor for activated thrombin, activates phosphoinositide hydrolysis through G proteins, participating in intracellular signaling. Its interaction with INSC/inscuteable and potential association with GPSM2 suggest involvement in cellular processes dependent on these interactions. F2RL2 Protein, Human (Cell-Free, His) is the recombinant human-derived F2RL2 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of F2RL2 Protein, Human (Cell-Free, His) is 336 a.a., with molecular weight of 40.0 kDa.
  • HY-P702227

    C5a anaphylatoxin chemotactic receptor 2; Complement component 5a receptor 2; G-protein coupled receptor 77

    Human E. coli Cell-free
    The C5AR2 protein is a receptor for C3a, C4a, and C5a peptides as well as ASP/C3adesArg, C4adesArg, and C5adesArg, and is weakly coupled to G(i)-mediated signaling pathways. It interacts with C3 and exhibits higher affinity for the lipogenic hormone ASP. C5AR2 Protein, Human (Cell-Free, His) is the recombinant human-derived C5AR2 protein, expressed by E. coli Cell-free , with C-10*His labeled tag. The total length of C5AR2 Protein, Human (Cell-Free, His) is 337 a.a., with molecular weight of 38.9 kDa.

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