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Epigentics Chromatin

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Acetylated Lysine Antibody - Mouse Anti-Acetylated Lysine 0.1ml
CBP and p300 are large nuclear proteins that bind to many sequence-specific factors involved in cell growth and/or differentiation including c-jun and the adenoviral oncoprotein E1A The protein encoded by this gene associates with p300/CBP It has in vitro and in vivo binding activity with CBP and p300 and competes with E1A for binding sites in p300/CBP It has histone acetyl transferase activity with core histones and nucleosome core particles indicating that this protein plays a direct role in transcriptional regulation
£226.00

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Acetylated Lysine Antibody - Mouse Anti-Acetylated Lysine 50ul
CBP and p300 are large nuclear proteins that bind to many sequence-specific factors involved in cell growth and/or differentiation including c-jun and the adenoviral oncoprotein E1A The protein encoded by this gene associates with p300/CBP It has in vitro and in vivo binding activity with CBP and p300 and competes with E1A for binding sites in p300/CBP It has histone acetyl transferase activity with core histones and nucleosome core particles indicating that this protein plays a direct role in transcriptional regulation
£183.00

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APPL1 Antibody - Rabbit Anti-APPL1 50ul
The protein encoded by this gene has been shown to be involved in the regulation of cell proliferation and in the crosstalk between the adiponectin signalling and insulin signalling pathways The encoded protein binds many other proteins including RAB5A DCC AKT2 PIK3CA adiponectin receptors and proteins of the NuRD/MeCP1 complex This protein is found associated with endosomal membranes but can be released by EGF and translocated to the nucleus
£226.00

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HDAC1 Antibody ; Mouse Anti-HDAC1
Responsible for the deacetylation of lysine residues on the N-terminal part of the core histones (H2A, H2B, H3 and H4). Histone deacetylation gives a tag for epigenetic repression and plays an important role in transcriptional regulation, cell cycle progression and developmental events. Histone deacetylases act via the formation of large multiprotein complexes. Deacetylates SP proteins, SP1 and SP3, and regulates their function. Component of the BRG1-RB1-HDAC1 complex, which negatively regulates the CREST-mediated transcription in resting neurons. Upon calcium stimulation, HDAC1 is released from the complex and CREBBP is recruited, which facilitates transcriptional activation. Deacetylates TSHZ3 and regulates its transcriptional repressor activity
£226.00

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HDAC2 Antibody ; Mouse Anti-HDAC2
Responsible for the deacetylation of lysine residues on the N-terminal part of the core histones (H2A, H2B, H3 and H4). Histone deacetylation gives a tag for epigenetic repression and plays an important role in transcriptional regulation, cell cycle progression and developmental events. Histone deacetylases act via the formation of large multiprotein complexes.Forms transcriptional repressor complexes by associating with MAD, SIN3, YY1 and N-COR. Interacts in the late S-phase of DNA-replication with DNMT1 in the other transcriptional repressor complex composed of DNMT1, DMAP1, PCNA, CAF1. Deacetylates TSHZ3 and regulates its transcriptional repressor activity
£226.00

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HDAC3 Antibody ; Mouse Anti-HDAC3
Responsible for the deacetylation of lysine residues on the N-terminal part of the core histones (H2A, H2B, H3 and H4). Histone deacetylation gives a tag for epigenetic repression and plays an important role in transcriptional regulation, cell cycle progression and developmental events. Histone deacetylases act via the formation of large multiprotein complexes. Probably participates in the regulation of transcription through its binding to the zinc-finger transcription factor YY1; increases YY1 repression activity. Required to repress transcription of the POU1F1 transcription factor. Acts as a molecular chaperone for shuttling phosphorylated NR2C1 to PML bodies for sumoylation
£226.00

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Histone H4 Me1K20 Antibody ; Mouse Anti-Histone H4 Me1K20
Histone proteins H3, H4, H2A, and H2B function as building blocks to package eukaryotic DNA into repeating nucleosome units that are folded in higher order chromatin fibers. The nucleosome is composed of an octamer containing a H3/H4 tetramer and two H2A/H2B dimers, surrounded by approximately 146 base pairs of DNA. A diverse and elaborate array of post-translational modifications including acetylation, phosphorylation, methylation, ubiquitination, and ADP-ribosylation occurs on the N-terminal tail domains of histones. Methylation of position-specific lysine residues in histone N termini is a central modification for regulating epigenetic transitions in chromatin. Each methylatable lysine residue can exist in a mono, di, or tri methylated state. Arginine resdiues can also by mono or di methylated
£226.00

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Histone H4 Me3K20 Antibody ; Mouse Anti-Histone H4 Me3K20
Histone proteins H3, H4, H2A, and H2B function as building blocks to package eukaryotic DNA into repeating nucleosome units that are folded in higher order chromatin fibers. The nucleosome is composed of an octamer containing a H3/H4 tetramer and two H2A/H2B dimers, surrounded by approximately 146 base pairs of DNA. A diverse and elaborate array of post-translational modifications including acetylation, phosphorylation, methylation, ubiquitination, and ADP-ribosylation occurs on the N-terminal tail domains of histones. Methylation of position-specific lysine residues in histone N termini is a central modification for regulating epigenetic transitions in chromatin. Each methylatable lysine residue can exist in a mono, di, or tri methylated state. Arginine resdiues can also by mono or di methylated
£226.00

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RNA polymerase II CTD Antibody- Mouse Anti-RNA polymerase II CTD
RNA polymerase II carboxy-terminal domain (CTD) interacts with a large multisubunit complex that contains TATA-binding protein (TBP) and is an integral part of the transcription initiation complex Phosphorylation of RNA polymerase IIs largest subunit C-terminal domain (CTD) is a key event during mRNA metabolism Numerous enzymes including cell cycle-dependent kinases and TFIIF-dependent phosphatases target the CTD
£183.00

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RNA polymerase II CTD Antibody- Mouse Anti-RNA polymerase II CTD-phosphorylated
RNA polymerase II carboxy-terminal domain (CTD) interacts with a large multisubunit complex that contains TATA-binding protein (TBP) and is an integral part of the transcription initiation complex Phosphorylation of RNA polymerase IIs largest subunit C-terminal domain (CTD) is a key event during mRNA metabolism Numerous enzymes including cell cycle-dependent kinases and TFIIF-dependent phosphatases target the CTD
£183.00

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TRF1 Antibody- Mouse Anti-TRF1
The TRF1 gene encodes a telomere specific protein which is a component of the telomere nucleoprotein complex It is present at telomeres throughout the cell cycle and functions as an inhibitor of telomerase acting in cis to limit the elongation of individual chromosome ends The protein structure contains a C-terminal Myb motif a dimerization domain near its N-terminus and an acidic N-terminus Two transcripts of this gene are alternatively spliced products
£183.00

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