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抗Human ZFHX3 抗体:
抗Mouse (Murine) ZFHX3 抗体:
抗Rat (Rattus) ZFHX3 抗体:
Nuclear localization of AT-motif binding factor 1 (ATBF1) indicates better prognosis of urothelial carcinoma.
Cellular localization of ATBF1 is correlated with its function in breast cancer. Nuclear ATBF1 was co-localized with chromosome during mitosis normally. Estrogen induced translocation of cytoplasmic ATBF1 to nuclei in MCF7.
The results suggest an additive effect of ZFHX3 and PTEN (显示 PTEN 抗体) deletions on the development and progression of prostate neoplasia
Both ZFHX3 and PITX2c (显示 PITX2 抗体) regulate expression of NPPA (显示 NPPA 抗体), TBX5 (显示 TBX5 抗体) and NKX2.5 (显示 NKX2-5 抗体).
In a Caucasian population, genetic variant rs7193343 SNP in ZFHX3 gene is associated with risk of atrial fibrillation.
Study found increased levels of ATBF1 in the cytoplasm of hippocampal pyramidal neurons in Alzheimer's disease brains and that ATBF1 binds to the C-terminal of A-beta (显示 SUCLA2 抗体)-PP, increasing the steady state levels of A-beta (显示 SUCLA2 抗体)-PP and resulting in increased A-beta (显示 SUCLA2 抗体) production
The CAA (显示 TSHZ1 抗体) repeat polymorphism in exon 9 of the ZFHX3 gene contributes to the Coronary heart disease susceptibility in the Chinese population.
ZFHX3 defects are associated with poor outcome in endometroid endometrial cancer.
Two SNPs (rs2106261, rs6499600) located in gene ZFHX3 showed significant associations with atrial fibrillation in a Chinese Han population.
ZFHX3 transcription is regulated in a transcript-specific fashion by independent cis (显示 CISH 抗体)-acting transcribed polymorphisms.
ZFHX3 knock-down in atrial myocytes dysregulated calcium homeostasis and increased atrial arrhythmogenesis.
Data show that knock-out of zinc finger homeobox 3 (ZFHX3) interrupted lactogenesis, resulting in underdeveloped glands.
These findings provide in vivo evidence that ATBF1 is a tumor suppressor in the prostate
These data indicate that tachypacing decreased ATBF1, leading to enhanced STAT3 (显示 STAT3 抗体) DNA-binding activity due to the reduced formation of a binary complex of ATBF1 and PIAS3 (显示 PIAS3 抗体).
findings indicate that Atbf1 plays a role in the development of pubertal mammary gland likely by modulating the function of estrogen-ER signaling in luminal cells and by modulating gene expression in basal cells
Atbf1 heterozygous mice displayed reduced body weight, preweaning mortality, increased cell proliferation, and attenuated cytokeratin 18 (显示 KRT18 抗体) expression, indicating haploinsufficiency of Atbf1.
these results demonstrate that these phosphorylation sites on ATBF1 function as a defensive shield to calpain-1 (显示 CAPN1 抗体).
A novel signaling pathway that links ATM (显示 ATM 抗体) via CREB (显示 CREB1 抗体) to the transcription factor ZFHX3, which in turn promotes survival of neurons by inducing expression of platelet-derived growth factor receptor beta (显示 PDGFRB 抗体), is reported.
Atbf1, serves as a novel pituitary regulator for one of the two required enhancers as shown by genetic and in vitro analysis
This gene encodes a transcription factor with multiple homeodomains and zinc finger motifs, and regulates myogenic and neuronal differentiation. The encoded protein suppresses expression of the alpha-fetoprotein gene by binding to an AT-rich enhancer motif. The protein has also been shown to negatively regulate c-Myb, and transactivate the cell cycle inhibitor cyclin-dependent kinase inhibitor 1A (also known as p21CIP1). This gene is reported to function as a tumor suppressor in several cancers, and sequence variants of this gene are also associated with atrial fibrillation. Multiple transcript variants expressed from alternate promoters and encoding different isoforms have been found for this gene.
zinc finger homeobox 3
, zinc finger homeobox protein 3-like
, AT-binding transcription factor 1
, AT-binding transcription factor1
, AT motif-binding factor 1
, alpha-fetoprotein enhancer binding protein
, alpha-fetoprotein enhancer-binding protein
, zinc finger homeobox protein 3
, zinc finger homeodomain protein 3
, AT motif binding factor 1
, AT motif-binding factor