30 Results for "

Nuclear localization signal

" in MedChemExpress (MCE) Product Catalog:
Products (30)

30 Results for "Nuclear localization signal" in MCE Product Catalog:

3
3 Cited Publications
Cat. No.: HY-P1876
CAS No.: 95088-49-6
Target:  

DNA/RNA Synthesis

Research Areas:  

Cancer

NLS (PKKKRKV) is a nuclear localization signal (NLS) derived from the SV40 large T antigen, which mediates the binding of karyophilic proteins to importin α. NLS (PKKKRKV) serves as a method to enhance nuclear entry in the field of gene transfer research .
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3
3 Cited Publications
Cat. No.: HY-P1876B
Target:  

DNA/RNA Synthesis

Research Areas:  

Cancer

NLS (PKKKRKV) hydrochloride is the hydrochloride form of NLS (PKKKRKV) (HY-P1876). NLS (PKKKRKV) is a nuclear localization signal (NLS) derived from the simian virus 40 large tumor antigen (SV40 large T antigen), that mediates binding of the karyophilic protein to importin α. NLS (PKKKRKV) can function as a method to enhance nuclear entry in the field of gene transfer research .
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2
2 Cited Publications
Cat. No.: HY-120855
CAS No.: 1207113-88-9
Purity:  99.29%
Target:  

Ras

Research Areas:  

Cardiovascular Disease

CCG-100602 is a specific inhibitor of myocardin-related transcription factor A/serum response factor (MRTF-A/SRF) signaling. CCG-100602 specifically block MRTF-A nuclear localization and thus inhibit the fibrogenic transcription factor SRF .
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Cat. No.: HY-170316
Target:  

Ras

Research Areas:  

Cancer

Ibetazol is a Importin β1 (KPNB1) inhibitor and nucleocytoplasmic transport disruptor. Ibetazol binds covalently to Cys585 of Importin β1, blocks both Importin β1-mediated direct transport and Importin α-dependent nuclear import processes, without affecting transport mediated by other nucleocytoplasmic transport proteins. Ibetazol induces cytoplasmic accumulation of Importin α1, and inhibits nuclear import of substrates carrying nuclear localization signals (NLS), including the NLS-cMyc reporter gene, RelA/p65 and SREBP1. Ibetazol triggers spindle malformation and chromosome misalignment by disrupting the mitotic function of Importin β1. Ibetazol inhibits the proliferation of cells expressing wild-type Importin β1. Ibetazol has a high activity-cytotoxicity window, lacks intrinsic fluorescence, and acts rapidly on nucleocytoplasmic transport processes. Ibetazol serves as a tool compound for investigating nuclear import processes specifically mediated by Importin β1 .
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Cat. No.: HY-P4121
CAS No.: 1898254-09-5
Target:  

Potassium Channel

Research Areas:  

Inflammation/Immunology Cancer

L17E is an attenuated cationic amphiphilic lytic (ACAL) peptide that can be used to deliver a variety of macromolecules, including proteins, antibodies, and DNA nanostructures. L17E inserts and cleaves the membrane structure through electrostatic interaction, enabling intracellular escape. The efficiency of L17E-mediated delivery is strongly correlated with the expression level of KCNN4 (the gene encoding the calcium-activated potassium channel KCa3.1). L17E also promotes the cellular uptake of macromolecules by inducing micropinocytosis. L17E can be further optimized and improved through dimerization strategies and in combination with other delivery systems, such as nuclear localization signal peptides and cell membrane-coated nanoparticles .
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Cat. No.: HY-P4076
CAS No.: 791642-10-9
Research Areas:  

Infection

MPG peptides, Pβ is an amphipathic cell-penetrating peptide. MPG peptides, Pβ consists of three components: the hydrophobic fusion sequence (GALFLGFLGAAGSTMGA) of HIV glycoprotein 41, a spacer domain (WSQP), and the nuclear localization signal (KKKRKV) of the large T antigen of Simian virus 40. MPG peptides, Pβ can form stable non-covalent complexes with nucleic acids (including DNA) through electrostatic interactions and improve their intracellular delivery. MPG peptides, Pβ can be used in studies of HIV-1-related immune responses .
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Cat. No.: HY-135700
CAS No.: 19115-49-2
Purity:  ≥98.0%
Mevalonolactone is an intermediate metabolite in the eukaryotic mevalonate pathway, serving as the stable δ-lactone form of mevalonate with oral activity. Mevalonolactone exhibits binding affinity for ZNF384 (Ka = 12.6 μM) and inhibitory activity against aconitase (aconitase). Mevalonolactone promotes the nuclear localization of ZNF384 and enhances its binding to the GGPPS promoter. Mevalonolactone induces insulin resistance, disrupts glucose and lipid metabolism, enhances the isoprenylation of K-Ras, and inhibits the activation of the insulin signaling pathway. Mevalonolactone inhibits polypeptide synthesis of HMG-CoA reductase in isolated rat hepatocytes, promotes its degradation, and reduces its enzymatic activity. Mevalonolactone impairs mitochondrial function in rat brains. Mevalonolactone promotes the development of metabolically unhealthy obesity. Mevalonolactone can be used in research related to metabolically abnormal obesity, mevalonic aciduria, HMGCR-related limb-girdle myopathy, and statin-induced myopathy .
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Cat. No.: HY-P10600A
Target:  

Ras

Research Areas:  

Others

BIMAX2 acetate is a high affinity nuclear localization signal (NLS) peptide. BIMAX2 acetate can mimic the activity of the classical nuclear localization signal (cNLS) and competitively bind to importin α, thereby inhibiting the binding of cNLS-cargo proteins to importin α. BIMAX2 acetate can be used to study the role of RBBP4 in regulating nuclear import efficiency and cell senescence .
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Cat. No.: HY-P1877A
Target:  

Peptides

Research Areas:  

Cancer

SV40 T-Ag-derived NLS peptide TFA is a nuclear localization signal DNA tagged to this peptide efficiently translocates into the cell nucleus .
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Cat. No.: HY-P1877
CAS No.: 105425-98-7
Target:  

Peptides

Research Areas:  

Cancer

SV40 T-Ag-derived NLS peptide is a nuclear localization signal DNA tagged to this peptide efficiently translocates into the cell nucleus .
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Cat. No.: HY-P11208C
Target:  

GABA Receptor

Research Areas:  

Inflammation/Immunology

mNLS-CPP-WSTF TFA is the trifluoroacetate salt of mNLS-CPP-WSTF (HY-P11208). mNLS-CPP-WSTF is a nuclear localization signal (NLS)-cell-penetrating peptide based on the mouse WSTF sequence. mNLS-CPP-WSTF significantly inhibits the GABARAP-WSTF interaction, WSTF degradation and inflammatory gene expression. mNLS-CPP-WSTF effectively attenuates chronic inflammation, liver fibrosis and cartilage damage in metabolic-dysfunction-associated steatohepatitis (MASH) and osteoarthritis (OA) mice model. mNLS-CPP-WSTF is promising for research of chronic inflammatory diseases such as MASH and OA .
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Cat. No.: HY-P11208
Target:  

GABA Receptor

Research Areas:  

Inflammation/Immunology

mNLS-CPP-WSTF is a nuclear localization signal (NLS)-cell-penetrating peptide based on the mouse WSTF sequence. mNLS-CPP-WSTF significantly inhibits the GABARAP-WSTF interaction, WSTF degradation and inflammatory gene expression. mNLS-CPP-WSTF effectively attenuates chronic inflammation, liver fibrosis and cartilage damage in metabolic-dysfunction-associated steatohepatitis (MASH) and osteoarthritis (OA) mice model. mNLS-CPP-WSTF is promising for research of chronic inflammatory diseases such as MASH and OA .
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Cat. No.: HY-P10600
CAS No.: 1105053-46-0
Target:  

Ras

Research Areas:  

Others

BIMAX2 is a high affinity nuclear localization signal (NLS) peptide. BIMAX2 can mimic the activity of the classical nuclear localization signal (cNLS) and competitively bind to importin α, thereby inhibiting the binding of cNLS-cargo proteins to importin α. BIMAX2 can be used to study the role of RBBP4 in regulating nuclear import efficiency and cell senescence .
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Cat. No.: HY-P11207
CAS No.: 1228086-59-6
Synonyms: NLS-cell penetrating peptide
Target:  

Peptides

Research Areas:  

Inflammation/Immunology

NLS-CPP is a nuclear localization signal (NLS)-cell-penetrating peptide, which contains the NLS of OCT6. NLS-CPP facilitates nuclear delivery. NLS-CPP can be used for chronic inflammatory diseases s research, such as metabolic-dysfunction-associated steatohepatitis (MASH) and osteoarthritis (OA) .
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Cat. No.: HY-175496
CAS No.: 2907705-12-6
Target:  

Ceramidase

Research Areas:  

Inflammation/Immunology

Acid Ceramidase-IN-3 is a acid ceramidase (aCDase) inhibitor. Acid Ceramidase-IN-3 inhibits the enzymatic activity of aCDase with a pIC 50 of 8.5 in enzymatic assays and 6.8 in A375 melanoma cellular assays. Acid Ceramidase-IN-3 promotes HSC inactivation, as measured by a dose-dependent reduction in COL1A1 and ACTA2. Acid Ceramidase-IN-3 inhibits aCDase activity in HSCs, promotes HSC inactivation and suppresses YAP/TAZ nuclear localization. Acid Ceramidase-IN-3 increases Dynein/Kinesin (NDE1, NDEL1. KIF3B, KIF15) while decreases several proteins involved with signaling pathway (SARM1, RGAP1, PDGF-D,PDGFR-B). Acid Ceramidase-IN-3 can be used for the study of fibrotic diseases .
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Cat. No.: HY-174794
Target:  

mRNA

Research Areas:  

Others

The Cas9-T2A-GFP mRNA encodes a Cas9 nuclease gene with two nuclear localization signals (NLS) and a green fluorescent protein (GFP), which could be used in genome engineering experiments.
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Cat. No.: HY-P1876A
Target:  

DNA/RNA Synthesis

Research Areas:  

Cancer

NLS (PKKKRKV) TFA is the TFA form of NLS (PKKKRKV) (HY-P1876). NLS (PKKKRKV) is a nuclear localization signal (NLS) derived from the simian virus 40 large tumor antigen (SV40 large T antigen), that mediates binding of the karyophilic protein to importin α. NLS (PKKKRKV) can function as a method to enhance nuclear entry in the field of gene transfer research .
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Cat. No.: HY-174793
Target:  

mRNA

Research Areas:  

Others

The Cas9-T2A-GFP mRNA encodes a Cas9 nuclease gene with two nuclear localization signals (NLS) and a green fluorescent protein (GFP), which could be used in genome engineering experiments. The incorporation of N1-Methylpseudo-UTP can reduce the immunogenicity of the resulting mRNA.
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Cat. No.: HY-174499
Target:  

mRNA

Research Areas:  

Others

Cas9 Nickase D10A mRNA expresses a version of the Streptococcus pyogenes SF370 Cas9 protein (CRISPR Associated Protein 9) that contains a D10A amino acid substitution. This mRNA also contains a C-terminal nuclear localization signal followed by a HA tag.Cas9 functions as part of the CRISPR (clustered regularly interspaced short palindromic repeats) genome editing system. In the CRISPR system, an RNA guide sequence targets the site of interest and the Cas9 protein is employed to perform the DNA cleavage. While wild-type Cas9 creates a double-stranded break at the target site, Cas9 nickase creates a single-stranded break. This favors homology-directed repair and decreases the occurrence of non-homologous end joining.
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Cat. No.: HY-125535
CAS No.: 1290069-19-0
OSU-53 is an orally active AMPK activator and mTOR inhibitor, with an IC50 of 0.3 μM for AMPK, an EC50 of 2-5 μM for AMPK, and an IC50 of 8.23 μM for mTOR. OSU-53 inhibits the Akt signaling pathway, directly activates AMPK by binding to its autoinhibitory domain, reduces IKKβ-mediated phosphorylation of Foxo3a, blocks Akt-mediated phosphorylation of MDM2, and promotes the nuclear localization and stabilization of Foxo3a, while directly inhibiting mTOR. OSU-53 inhibits epithelial-mesenchymal transition (EMT), induces epithelial phenotype, suppresses invasion and metastasis, induces autophagy, inhibits the activation of ERK and Akt, reduces the secretion of nitric oxide and proinflammatory cytokines, and inhibits the migration of MDSC; at high doses, it induces MDSC apoptosis, attenuates the immunosuppressive effect of MDSC, reduces MDSC levels, and blocks incision-induced mechanical hyperalgesia. OSU-53 can be used in studies related to breast cancer, prostate cancer, thyroid cancer, melanoma and postoperative pain .
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