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Results for "

ATP synthase

" in MedChemExpress (MCE) Product Catalog:

25

Inhibitors & Agonists

1

Screening Libraries

1

Peptides

6

Natural
Products

9

Recombinant Proteins

2

Isotope-Labeled Compounds

6

Antibodies

Cat. No. Compare Product Name Species Source
  • HY-P72098

    ATP synthase subunit delta; mitochondrial ; ATP synthase subunit delta; mitochondrial; ATP synthase; H+ transporting; mitochondrial F1 complex; delta subunit; ATP5D; ATPD_HUMAN; F ATPase delta subunit ; F-ATPase delta subunit; Mitochondrial ATP synthase complex delta subunit precusor ; Mitochondrial ATP synthase delta subunit

    Human E. coli
    ATP5D Protein, a vital component of mitochondrial membrane ATP synthase (Complex V), facilitates ATP generation from ADP using the proton gradient established by respiratory chain electron transport complexes. As part of the F(1) domain and central stalk, ATP5D contributes to ATP hydrolysis through a rotary mechanism. The ATP synthase complex, involving ATP5D, is pivotal for cellular energy production via ATP synthesis. ATP5D Protein, Human (His) is the recombinant human-derived ATP5D protein, expressed by E. coli , with N-10*His labeled tag. The total length of ATP5D Protein, Human (His) is 146 a.a., with molecular weight of ~20 kDa.
  • HY-P72097

    ATP synthase subunit delta; mitochondrial ; ATP synthase subunit delta; mitochondrial; ATP synthase; H+ transporting; mitochondrial F1 complex; delta subunit; ATP5D; ATPD_HUMAN; F ATPase delta subunit ; F-ATPase delta subunit; Mitochondrial ATP synthase complex delta subunit precusor ; Mitochondrial ATP synthase delta subunit

    Human E. coli
    ATP5D Protein, a vital component of mitochondrial membrane ATP synthase (Complex V), facilitates ATP generation from ADP using the proton gradient established by respiratory chain electron transport complexes. As part of the F(1) domain and central stalk, ATP5D contributes to ATP hydrolysis through a rotary mechanism. The ATP synthase complex, involving ATP5D, is pivotal for cellular energy production via ATP synthesis. ATP5D Protein, Human (His-SUMO) is the recombinant human-derived ATP5D protein, expressed by E. coli , with N-6*His, N-SUMO labeled tag. The total length of ATP5D Protein, Human (His-SUMO) is 146 a.a., with molecular weight of ~31 kDa.
  • HY-P702220

    ATP synthase subunit f, mitochondrial; ATP synthase membrane subunit f

    Human E. coli Cell-free
    ATP5J2 protein is a component of mitochondrial membrane ATP synthase (complex V), which uses the proton gradient established by the respiratory chain electron transport complex to help ADP synthesize ATP. ATP5J2 is located in the F(0) domain as a small subunit and cooperates with subunit a in the membrane. ATP5J2 Protein, Human (Cell-Free, His) is the recombinant human-derived ATP5J2 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of ATP5J2 Protein, Human (Cell-Free, His) is 94 a.a., with molecular weight of 12.4 kDa.
  • HY-P71550

    ATP5MG; ATP5LATP synthase subunit g; mitochondrial; ATPase subunit g; ATP synthase membrane subunit g

    Bovine E. coli
    ATP5MG Protein, an essential part of mitochondrial membrane ATP synthase (Complex V), facilitates ATP generation from ADP using the proton gradient established by respiratory chain electron transport complexes. Positioned within the F(0) domain as a minor subunit alongside subunit a, ATP5MG collaborates with various subunits in the overall F-type ATPase complex, including CF(1) and CF(0), to ensure efficient ATP synthesis. ATP5MG Protein, Bovine (Myc, His) is the recombinant bovine-derived ATP5MG protein, expressed by E. coli , with N-His, C-Myc labeled tag. The total length of ATP5MG Protein, Bovine (Myc, His) is 102 a.a., with molecular weight of ~18.7 kDa.
  • HY-P72095

    ATP synthase alpha chain; ATP synthase alpha chain; mitochondrial; ATP synthase; H+ transporting; mitochondrial F1 complex; alpha subunit 1; cardiac muscle; ; ATP synthase; H+ transporting; mitochondrial F1 complex; alpha subunit; isoform 2; alpha subunit; ATP5A; ATP5a1; ATP5AL2; ATPA_HUMAN; ATPM; hATP1; HEL-S-123m; MC5DN4; mitochondrial;

    Human E. coli
    ATP5F1A is an important component of mitochondrial ATP synthase (complex V) that coordinates ATP production from ADP by utilizing the transmembrane proton gradient. As part of the F-type ATPase, the α and β subunits of ATP5F1A form the catalytic core to achieve ATP hydrolysis. ATP5F1A Protein, Human (His) is the recombinant human-derived ATP5F1A protein, expressed by E. coli , with N-6*His labeled tag. The total length of ATP5F1A Protein, Human (His) is 510 a.a., with molecular weight of ~59.2 kDa.
  • HY-P702382

    ATP synthase subunit a; F-ATPase protein 6

    Others E. coli Cell-free
    MT-ATP6 protein is a component of mitochondrial membrane ATP synthase (complex V), which helps convert ADP into ATP through the proton gradient established by the respiratory chain electron transport complex. As part of the F-type ATPase, MT-ATP6 contributes to the rotational mechanism that links ATP synthesis in the F(1) catalytic domain to proton translocation. MT-ATP6 Protein, Chicken (Cell-Free, His) is the recombinant MT-ATP6 protein, expressed by E. coli Cell-free , with N-10*His labeled tag. The total length of MT-ATP6 Protein, Chicken (Cell-Free, His) is 227 a.a., with molecular weight of 26.3 kDa.
  • HY-P72096

    ATP synthase alpha chain; ATP synthase alpha chain; mitochondrial; ATP synthase subunit alpha; ATP synthase subunit alpha mitochondrial; ATP synthase; H+ transporting; mitochondrial F1 complex; alpha subunit 1; cardiac muscle; ATP synthase; H+ transporting; mitochondrial F1 complex; alpha subunit; 1; ATP synthase; H+ transporting; mitochondrial F1 complex; alpha subunit; isoform 1; cardiac muscle; ATP synthase; H+ transporting; mitochondrial F1 complex; alpha subunit; isoform 2; non-cardiac muscle-like 2; ATP sythase F1 ATPase; alpha subunit; ATP5A; ATP5a1; ATP5AL2; ATPA_HUMAN; ATPM; Epididymis secretory sperm binding protein Li 123m; hATP1; HEL-S-123m; MC5DN4; mitochondrial; Mitochondrial ATP synthetase; Mitochondrial ATP synthetase oligomycin resistant; Modifier of Min 2; Modifier of Min 2 mouse homolog; Modifier of Min 2; mouse; homolog of; MOM2; OMR; ORM; OTTHUMP00000163475

    Human E. coli
    ATP5F1A is an important component of mitochondrial ATP synthase (complex V) that coordinates ATP production from ADP by utilizing the transmembrane proton gradient. As part of the F-type ATPase, the α and β subunits of ATP5F1A form the catalytic core to achieve ATP hydrolysis. ATP5F1A Protein, Human (His-SUMO) is the recombinant human-derived ATP5F1A protein, expressed by E. coli , with N-6*His, N-SUMO labeled tag. The total length of ATP5F1A Protein, Human (His-SUMO) is 510 a.a., with molecular weight of ~71.2 kDa.
  • HY-P71716

    ATP 5B; ATP synthase H+ transporting mitochondrial F1 complex beta polypeptide; ATPB; ATPB_HUMAN; ATPMB; ATPSB

    Human P. pastoris
    ATP5F1B protein is an important component of mitochondrial membrane ATP synthase (complex V). ATP5F1B Protein, Human (P.pastoris, His) is the recombinant human-derived ATP5F1B protein, expressed by P. pastoris , with N-His labeled tag. The total length of ATP5F1B Protein, Human (P.pastoris, His) is 482 a.a., with molecular weight of ~53.8 kDa.
  • HY-P72070

    ACL; Acly; ACLY_HUMAN; ATP citrate pro-S; lyase; ATP citrate lyase; ATP citrate synthase; ATP-citrate pro-S-; -lyase; ATP-citrate synthase; ATPcitrate synthase; ATPCL; Citrate cleavage enzyme; CLATP; OTTHUMP00000164773

    Human E. coli
    ACLY Protein, Human (His-SUMO) is an important enzyme in the cholesterol biosynthetic pathway. ACLY produces acetyl-CoA (AcCoA) from mitochondrial citrate for cholesterol and fatty acid biosynthesis.

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