Adenosine Receptor A2A Blocking Peptide
Adenosine Receptor A2A Blocking Peptide
Adenosine Receptor A2A is a multi-pass membrane protein that is normally localized to the plasma membrane.{15465} This receptor is part...
€521.00 €442.85
Diverse signal transduction pathways impinging on the N-terminal tails of histones lead to a number of post-translational modifications including acetylation, phosphorylation, poly(ADP-ribosylation), ubiquitination, and methylation. These modifications play critical roles in regulating chromatin structure and gene expression. Histone methyltransferases (HMTases) selectively methylate evolutionarily conserved arginine or lysine residues, primarily in the N-terminal tails of histones H3 and H4. SET7/9 is a histone specific HMTase that methylates histone H3 lysine 4. SET7/9 transfers methyl groups to lysine 4 of histone H3 in complex with S-adenosyl-L-methionine. Human SET7/9 is a 366 amino acid protein.
Territorial Availability: Available through Bertin Technologies only in France
Size | 1 ea |
---|---|
Shipping | dry ice |
Molecular weight | 0 |
Host | Rabbit |
Antigen | human SET7/9 amino acids 131-145 and 336-352 |
Application(s) | WB |
Formulation | 200 µl of protein G-purified IgG in 200 µl PBS containing 0.2% gelatin and 0.05% sodium azide |
Custom code | 3822.19 |
UNSPSC code | 12352203 |
Cayman Chemical’s mission is to help make research possible by supplying scientists worldwide with the basic research tools necessary for advancing human and animal health. Our utmost commitment to healthcare researchers is to offer the highest quality products with an affordable pricing policy.
Our scientists are experts in the synthesis, purification, and characterization of biochemicals ranging from small drug-like heterocycles to complex biolipids, fatty acids, and many others. We are also highly skilled in all aspects of assay and antibody development, protein expression, crystallization, and structure determination.
Over the past thirty years, Cayman developed a deep knowledge base in lipid biochemistry, including research involving the arachidonic acid cascade, inositol phosphates, and cannabinoids. This knowledge enabled the production of reagents of exceptional quality for cancer, oxidative injury, epigenetics, neuroscience, inflammation, metabolism, and many additional lines of research.
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Accreditations
ISO/IEC 17025:2005
ISO Guide 34:2009
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