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Validated All-in-One™ qPCR Primer for TEAD1(NM_021961.5) Search again
Product ID:
HQP018003
(click here to view gene annotation page)
Species:
Human
Symbol:
Alias:
AA, NTEF-1, REF1, TCF-13, TCF13, TEAD-1, TEF-1
Gene Description:
TEA domain transcription factor 1
Target Gene Accession:
NM_021961.5(click here to view gene page)
Estimated Delivery:
Approximately 1-3 weeks, but may vary. Please email sales@genecopoeia.com or call 301-762-0888 to confirm ETA.
Important Note:
By default, qPCR primer pairs are designed to measure the expression level of the splice variant (accession number) you selected for this gene WITHOUT consideration of other possible variants of this gene. If this gene has multiple variants, and you would like to measure the expression levels of one particular variant, multiple variants, or all variants, please contact us for a custom service project at inquiry@genecopoeia.com.
Validated result:
Gene References into function
- These results are consistent with two plausible models of cryptic MCAT enhancer regulation by Pur alpha, Pur beta, and MSY1 involving either competitive single-stranded DNA binding or masking of MCAT-bound transcription enhancer factor-1.
- TEAD1 (TEF-1) interacts with a muscle-specific cofactor to promote skeletal muscle gene expression.
- Transcription enhancer factor 1 binds multiple muscle MEF2 and A/T-rich elements during fast-to-slow skeletal muscle fiber type transitions
- A missense mutation (Y421H) in TEAD1 is tightly linked to Sveinsson's chorioretinal atrophy (SCRA), an autosomal dominant eye disease characterized by symmetrical lesions radiating from the optic disc involving the retina and the choroid.
- the mutation in the TEAD1 gene is the cause of Sveinsson's chorioretinal atrophy.
- regulation of IFITM3 by TEF-1 demonstrates that TEF-1 dependent regulation is more widespread than its previously established role in the expression of muscle specific genes
- TEAD1 inhibits prolactin gene expression in cultured human uterine decidual cells.
- TEAD1 and the ubiquitin ligase c-Cbl were identified as novel basal cell markers in prostate cancer
- Here we show that during vertebrate neural tube development, the TEA domain transcription factor (TEAD) is the cognate DNA-binding partner of YAP.
