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POLR2A Antibody

ArtNr E92107
Hersteller Enogene
Menge 100 ul
Quantity options 100 ul 100 ul 100 ug/100 ul 100 ug/200 ul 100 ul 100 ul 100 ul 100 ul 100 ul 100 ul
Kategorie
Typ Antibody
Applikationen WB, IHC
Specific against Human (Homo sapiens), Mouse (Murine, Mus musculus), Rat (Rattus norvegicus)
Host Rabbit
ECLASS 10.1 32160702
ECLASS 11.0 32160702
UNSPSC 12352203
Alias RPB1, RPO2, POLR2, POLRA, RPBh1, RPOL2, RpIILS, hsRPB1, hRPB220,
Lieferbar
Manufacturer - Conjugate / Tag
This antibody is also available with the following conjugates:
AF350, AF405L, AF405M, AF405S, AF488, AF514, AF532, AF546, AF555, AF568, AF594, AF610, AF635, AF647, AF680, AF700, AF750, AF790, APC, AP, Biotin, Cy3, Cy5.5, Cy5, Cy7, FITC, HRP, PE, Magnetic beads (1 um, 2.8 um, 3 um, 4.5 um, 5 um, 10 um, 15 um, 20 um, 30 um, or different size option)
Please contact sales@hoelzel.de for pricing and availability.
Storage Conditions
Store at -20C or -80oC. Avoid freeze / thaw cycles. Buffer: PBS with 0.02% sodium azide, 50% glycerol, pH7.3.
Molecular Weight
270kDa
Immunogen
Recombinant proteinof human POLR2A
Purification
Affinity purification
Research Area
Autophagy antibody, Cancer, Cardiovascular, Cell Biology, Epigenetics and Nuclear Signaling, Developmental Biologys, Immunology, Drug Discovery Products, Metabolism, Neuroscience, Signal Transduction, Stem Cells
Background
RNA polymerase II (RNAPII) is a large multi-protein complex that functions as a DNA-dependent RNA polymerase, catalyzing the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates (1). The largest subunit, RNAPII subunit B1 (Rpb1), also known as RNAPII subunit A (POLR2A), contains a unique heptapeptide sequence (Tyr1, Ser2, Pro3, Thr4, Ser5, Pro6, Ser7), which is repeated up to 52 times in the carboxy-terminal domain (CTD) of the protein (1). This CTD heptapeptide repeat is subject to multiple post-translational modifications, which dictate the functional state of the polymerase complex. Phosphorylation of the CTD during the active transcription cycle integrates transcription with chromatin remodeling and nascent RNA processing by regulating the recruitment of chromatin modifying enzymes and RNA processing proteins to the transcribed gene (1). During transcription initiation, RNAPII contains a hypophosphorylated CTD and is recruited to gene promoters through interactions with DNA-bound transcription factors and the Mediator complex (1). The escape of RNAPII from gene promoters requires phosphorylation at Ser5 by CDK7, the catalytic subunit of transcription factor IIH (TFIIH) (2). Phosphorylation at Ser5 mediates the recruitment of RNA capping enzymes, in addition to histone H3 Lys4 methyltransferases, which function to regulate transcription initiation and chromatin structure (3, 4). After promoter escape, RNAPII proceeds down the gene to an intrinsic pause site, where it is halted by the negative elongation factors NELF and DSIF (5). At this point, RNAPII is unstable and frequently aborts transcription and dissociates from the gene. Productive transcription elongation requires phosphorylation at Ser2 by CDK9, the catalytic subunit of the positive transcription elongation factor P-TEFb (6). Phosphorylation at Ser2 creates a stable transcription elongation complex and facilitates recruitment of RNA splicing and polyadenylation factors, in addition to histone H3 Lys36 methyltransferases, which function to promote elongation-compatible chromatin (7, 8).
CiteID
EN0133406

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Alle Produkte sind nur für Forschungszwecke bestimmt. Nicht für den menschlichen, tierärztlichen oder therapeutischen Gebrauch.

Menge: 100 ul
Lieferbar: In stock
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