Recombinant Human ASCL1 protein

Specification
Description Recombinant protein from the full-length sequence of Homo sapiens achaete-scute family bHLH transcription factor 1 (ASCL1) (NM_004316).
Organism Homo sapiens (Human)
Expression Host Human Cells
Tag Info His or DYKDDDDK. Please contact us if you need further information or require specific designed tag.
Purity Greater than 90% by SDS-PAGE gel
Uniprot ID P50553
Entry Name ASCL1_HUMAN
Gene Names ASCL1 ASH1 BHLHA46 HASH1
Alternative Gene Names ASH1 BHLHA46 HASH1
Alternative Protein Names Achaete-scute homolog 1 (ASH-1) (hASH1) (Class A basic helix-loop-helix protein 46) (bHLHa46)
Application Antigens, Western, ELISA and other in vitro binding or in vivo functional assays, and protein-protein interaction studies; For research & development use only!
Buffer Purified protein formulated in a sterile solution of PBS buffer, pH7.2, without any preservatives
Endotoxin Endotoxin level is < 0.1 ng/µg of protein (<1EU /µg)
Length 236
Molecular Weight(Da) 25454
Protein Sequence (The sequence of expressed protein may have some variation from the sequence shown below. Please contact us for the exact sequence.)
MESSAKMESGGAGQQPQPQPQQPFLPPAACFFATAAAAAAAAAAAAAQSAQQQQQQQQQQQQAPQLRPAADGQPSGGGHKSAPKQVKRQRSSSPELMRCKRRLNFSGFGYSLPQQQPAAVARRNERERNRVKLVNLGFATLREHVPNGAANKKMSKVETLRSAVEYIRALQQLLDEHDAVSAAFQAGVLSPTISPNYSNDLNSMAGSPVSSYSSDEGSYDPLSPEEQELLDFTNWF
Background
Function FUNCTION: Transcription factor that plays a key role in neuronal differentiation: acts as a pioneer transcription factor, accessing closed chromatin to allow other factors to bind and activate neural pathways. Directly binds the E box motif (5'-CANNTG-3') on promoters and promotes transcription of neuronal genes. The combination of three transcription factors, ASCL1, POU3F2/BRN2 and MYT1L, is sufficient to reprogram fibroblasts and other somatic cells into induced neuronal (iN) cells in vitro. Plays a role at early stages of development of specific neural lineages in most regions of the CNS, and of several lineages in the PNS. Essential for the generation of olfactory and autonomic neurons. Acts synergistically with FOXN4 to specify the identity of V2b neurons rather than V2a from bipotential p2 progenitors during spinal cord neurogenesis, probably through DLL4-NOTCH signaling activation. Involved in the regulation of neuroendocrine cell development in the glandular stomach (By similarity). {ECO:0000250|UniProtKB:Q02067}.
Pathway
Protein Families
Tissue Specificity
QC Data
Note Please contact us for QC Data
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SKU
EB-EPE8048425

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