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USF1 polyclonal Antibody | BS6759

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SKU:
BW-BS6759
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£888.00 - £1,356.00

Description

USF1 polyclonal Antibody | BS6759 | Gentaur UK, US & Europe Distribution

Host: Rabbit

Reactivity: Human,Mouse

Application: WB IHC

Application Range: WB: 1:500~1:2000 IHC: 1:50~1:200

Background: The ubiquitously expressed cellular upstream stimulatory factor (USF) consists of (USF-1) and (USF-2) polypeptides which independently exhibit site-specific DNA binding and are members of the c-Myc-related family of regulatory factors containing helix-loop-helix domains. USF also contains a leucine repeat that is required for efficient DNA binding. USF was originally identified as an upstream stimulatory factor that binds the core sequence CACGTG in the adenovirus late promoter. These findings, together with the demonstration of cooperative interaction between USF and the initiator-binding protein, TFII-I, raises the possibility of a more general involvement of USF in transcriptional regulation. While expression of both USF-1 and USF-2 species is ubiquitous, different ratios of USF homo- and heterodimers are found in different cell types.

Storage & Stability: Store at 4°C short term. Aliquot and store at -20°C long term. Avoid freeze-thaw cycles.

Specificity: USF1 polyclonal Antibody detects endogenous levels of USF1 protein.

Molecular Weight: ~ 41 kDa

Note: For research use only, not for use in diagnostic procedure.

Alternative Names: bHLHb11; Class B basic helix-loop-helix protein 11; FCHL 1; FCHL; FCHL1; HGNC:12593; HYPLIP 1; HYPLIP1; Major late transcription factor 1; Major late transcription factor; MLTF; MLTF I; MLTFI; Transcription factor USF-1; UEF; Upstream stimulatory factor 1; Upstream transcription factor 1; Upstream transcription factor 1; isoform CRA_a; USF 1; USF;

Immunogen: Recombinant full length Human USF1.

Conjugate: Unconjugated

Modification: Unmodification

Purification & Purity: The Antibody was affinity-purified from rabbit antiserum by affinity-chromatography using epitope-specific immunogen and the purity is > 95% (by SDS-PAGE) .

Pathway:

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