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Results for "

Xenopus laevis

" in MedChemExpress (MCE) Product Catalog:

22

Inhibitors & Agonists

11

Peptides

7

Natural
Products

10

Recombinant Proteins

1

Isotope-Labeled Compounds

Cat. No. Compare Product Name Species Source
  • HY-P72336

    H4C1

    Xenopus laevis;Human E. coli
    Histone H4 proteins are core components of nucleosomes, which compact DNA into chromatin and regulate DNA accessibility during cellular processes. Histones, including H4, play critical roles in transcriptional regulation, DNA repair, replication, and chromosome stability. Histone H4 Protein, Human/Xenopus laevis is the recombinant Xenopus laevis-derived Histone H4 protein, expressed by E. coli , with tag free.
  • HY-P72330

    h2ac14.L

    Xenopus laevis E. coli
    Histone H2A, an integral nucleosome component, forms the histone octamer with H2B, H3, and H4. This molecular spool, consisting of two H2A-H2B heterodimers and one H3-H4 heterotetramer, wraps around approximately 147 base pairs of DNA, organizing chromatin structure. The intricate histone-DNA association, especially with H2A, plays a vital role in regulating cellular processes like gene expression and DNA packaging. Histone H2A Protein, Xenopus laevis is the recombinant Xenopus laevis-derived Histone H2A protein, expressed by E. coli , with tag free.
  • HY-P72331

    H2B1.1

    Xenopus laevis E. coli
    Histone H2B 1.1 protein is a key nucleosome component that compacts DNA into chromatin, thereby restricting access to cellular processes. Histone H2B 1.1 Protein, Xenopus laevis is the recombinant Xenopus laevis-derived Histone H2B 1.1 protein, expressed by E. coli , with tag free.
  • HY-P72333

    h3c8.S

    Xenopus laevis E. coli
    Histone H3 Protein constitutes a core element in the nucleosome, an octamer comprising H2A, H2B, H3, and H4. The assembly forms a histone octamer with one H3-H4 heterotetramer and two H2A-H2B heterodimers, serving as a molecular spool that wraps around 147 base pairs of DNA. This compact organization contributes to chromatin structure, and Histone H3, as part of this assembly, plays a crucial role in chromatin structure and gene regulation. Histone H3 Protein, Xenopus laevis (135a.a) is the recombinant Xenopus laevis-derived Histone H3 protein, expressed by E. coli , with tag free.
  • HY-P703458

    H2BFL; HIST1H2BC

    Xenopus laevis E. coli
    Histone-H2B Protein, Xenopus laevis is the recombinant Xenopus laevis-derived Histone-H2B, expressed by E. coli , with tag Free labeled tag. ,
  • HY-P72334

    H3c8.S; H3I; hist1h3g

    Xenopus laevis E. coli
    Histone H3 Protein constitutes a core element in the nucleosome, an octamer comprising H2A, H2B, H3, and H4. The assembly forms a histone octamer with one H3-H4 heterotetramer and two H2A-H2B heterodimers, serving as a molecular spool that wraps around 147 base pairs of DNA. This compact organization contributes to chromatin structure, and Histone H3, as part of this assembly, plays a crucial role in chromatin structure and gene regulation. Histone H3 Protein, Xenopus laevis (98a.a, His) is the recombinant Xenopus laevis-derived Histone H3 protein, expressed by E. coli , with tag free.
  • HY-P7822

    rHuCerberus 1, cysteine knot superfamily, homolog (Xenopus laevis)/CER1, His; Cerberus; Cerberus-Related Protein; DAN Domain Family Member 4; CER1; DAND4

    Human HEK293
    The CER1 protein, a DAN family BMP antagonist, coordinates growth-promoting ureteric bud signaling by inducing BMP inhibition. CER1 also regulates embryogenesis and carcinogenesis by inhibiting NODAL signaling to SMAD2 or SMAD3 through ALK4/ALK7. Cerberus 1/CER1 Protein, Human (HEK293, His) is the recombinant human-derived Cerberus 1/CER1 protein, expressed by HEK293 , with C-6*His labeled tag.
  • HY-P703460

    Histone H3; LOC121398065; LOC108703785; LOC121398067; Xenopus laevis; African clawed frog; DNA-binding

    Xenopus laevis E. coli
    Histone-H3 Protein, Xenopus laevis is the recombinant Xenopus laevis-derived Histone-H3, expressed by E. coli , with tag Free labeled tag.
  • HY-P700483

    TGF-beta-1; TGFB1; TGFB; rHuTGF-β1

    Xenopus laevis P. pastoris
    TGFB1 proprotein is the precursor of latency-associated peptide (LAP) and active transforming growth factor Beta-1 (TGF-β-1) chain, which maintains TGF-β-1 latency in the extracellular matrix. Through non-covalent binding, TGFB1 critically regulates TGF-β-1 activation by interacting with “environmental molecules” (LTBP1, LRRC32/GARP, LRRC33/NRROS) that collectively control TGF-β-1 activation. TGF beta 1/TGFB1 Protein, Xenopus laevis (P. pastoris, His) is the recombinant Xenopus laevis-derived TGF beta 1/TGFB1 protein, expressed by P. pastoris , with N-6*His labeled tag.
  • HY-P702688

    CDK7; cyclin-dependent kinase 7; cyclin dependent kinase 7 (homolog of Xenopus MO15 cdk activating kinase) , cyclin dependent kinase 7 (MO15 homolog, Xenopus laevis, cdk activating kinase); CAK; CAK1; CDKN7; MO15; STK1; p39 Mo15; protein kinase; 39 KDa protein kinase; kinase subunit of CAK; CDK-activating kinase 1; serine/threonine kinase stk1; cell division protein kinase 7; serine/threonine protein kinase 1; serine/threonine-protein kinase 1; serine/threonine protein kinase MO15

    Human Sf9 insect cells
    Together with its regulatory partners CCNH and MNAT1, CDK7 functions as an important serine/threonine kinase in cell cycle regulation and RNA polymerase II-mediated transcription. As the catalytic subunit of the CDK-activated kinase (CAK) complex, CDK7 plays a key role in activating CDK1/cyclin-B and CDK2/cyclin during cell cycle transitions. CDK7-CCNH-MNAT1 Protein, Human (sf9, GST, His, Flag) is the recombinant human-derived CDK7-CCNH-MNAT1, expressed by Sf9 insect cells, with N-His, N-GST, N-Flag labeled tag.

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