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TAF15 Antibody - N-terminal region : FITC (ARP40468_P050-FITC)

Product Specifications

Gene Name

TAF15 RNA polymerase II, TATA box binding protein (TBP) -associated factor, 68kDa

Gene Aliases

Npl3, RBP56, TAF2N, TAFII68

Gene ID

8148

Swiss Prot

Q92804

Accession Number

NP_631961

Host

Rabbit

Reactivity

Human, Mouse, Rat, Cow, Dog, Guinea Pig, Horse, Rabbit, Yeast

Immunogen

The immunogen is a synthetic peptide directed towards the N terminal region of human TAF15

Target

Initiation of transcription by RNA polymerase II requires the activities of more than 70 polypeptides. The protein that coordinates these activities is transcription factor IID (TFIID), which binds to the core promoter to position the polymerase properly, serves as the scaffold for assembly of the remainder of the transcription complex, and acts as a channel for regulatory signals. TFIID is composed of the TATA-binding protein (TBP) and a group of evolutionarily conserved proteins known as TBP-associated factors or TAFs. TAFs may participate in basal transcription, serve as coactivators, function in promoter recognition or modify general transcription factors (GTFs) to facilitate complex assembly and transcription initiation. Its gene encodes a subunit of TFIID present in a subset of TFIID complexes. Translocations involving chromosome 17 and chromosome 9, where the gene for the nuclear receptor CSMF is located, result in a gene fusion product that is an RNA binding protein associated with a subset of extraskeletal myxoid chondrosarcomas. Initiation of transcription by RNA polymerase II requires the activities of more than 70 polypeptides. The protein that coordinates these activities is transcription factor IID (TFIID), which binds to the core promoter to position the polymerase properly, serves as the scaffold for assembly of the remainder of the transcription complex, and acts as a channel for regulatory signals. TFIID is composed of the TATA-binding protein (TBP) and a group of evolutionarily conserved proteins known as TBP-associated factors or TAFs. TAFs may participate in basal transcription, serve as coactivators, function in promoter recognition or modify general transcription factors (GTFs) to facilitate complex assembly and transcription initiation. This gene encodes a subunit of TFIID present in a subset of TFIID complexes. Translocations involving chromosome 17 and chromosome 9, where the gene for the nuclear receptor CSMF is located, result in a gene fusion product that is an RNA binding protein associated with a subset of extraskeletal myxoid chondrosarcomas. Two transcripts encoding different isoforms have been identified.

Partner Proteins

RPA3; RPA2; RPA1; SUZ12; RNF2; EZH2; BMI1; EED; UBD; PRMT8; MED26; UBC; FUS; TPR; TPM2; DDB1; SCARB2; RNF168; TMED9; SAP30BP; NEDD8; CAND1; DCUN1D1; COPS5; COPS6; CUL1; CUL2; CUL3; CUL4A; CUL4B; CUL5; YWHAZ; SIRT7; HIST2H4A; HIST1H3A; HIST2H2AC; CACNA1A

Clonality

Polyclonal

Conjugation

FITC: Fluorescein Isothiocyanate

Type

Polyclonal Antibody

Applications

WB

Purification

Affinity Purified

Concentration

0.5 mg/ml

Homology

Cow: 93%; Dog: 79%; Guinea Pig: 86%; Horse: 93%; Human: 100%; Mouse: 86%; Rabbit: 93%; Rat: 86%; Yeast: 89%

Format

Liquid. Purified antibody supplied in 1x PBS buffer.

Reconstitution

All conjugated antibodies should be stored in light-protected vials or covered with a light protecting material (i.e. aluminum foil) . Conjugated antibodies are stable for at least 12 months at 4C. If longer storage is desired (24 months), conjugates may be diluted with up to 50% glycerol and stored at -20C to -80C. Freezing and thawing conjugated antibodies will compromise enzyme activity as well as antibody binding.

Molecular Weight

62kDa

References & Citations

Kim, S., (2008) Int. J. Cancer 122 (11), 2446-2453

Shipping Conditions

Wet Ice

Protein Length

592

NCBI Gene Symbol

TAF15

NCBI GB Accession Number

TAF15

Host or Source

Rabbit

Protein Name

TATA-binding protein-associated factor 2N

Nucleotide Accession Number

NM_139215

Peptide Sequence

PDYGQQDSYDQQSGYDQHQGSYDEQSNYDQQHDSYSQNQQSYHSQRENYS

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