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CDX1 is a member of the caudal-related homeobox transcription factor gene family. Zusätzlich bieten wir Ihnen Caudal Type Homeobox 1 Antikörper (125) und viele weitere Produktgruppen zu diesem Protein an.
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Results identified CDX1 as cis (zeige CISH Proteine) methylation quantitative trait loci in allergic rhinitis.
Downregulation of CDX1 is associated with recurrence in hepatocellular carcinoma.
Data indicate an association between highly fucosylated glycans and caudal type homeobox 1 (CDX1) and/or villin mRNA expression that both correlate with cell differentiation.
Changes in CDX1/CDX2 (zeige CDX2 Proteine) mRNA expression in gastric mucosa following H. pylori eradication showed only insignificant results
miR (zeige MLXIP Proteine)-215 is a link between CDX1 expression and BMI1 (zeige BMI1 Proteine) repression that governs differentiation in colorectal cancer
CDX1 restricts the invasion of HTR (zeige F2R Proteine)-8/SVneo trophoblast cells by inhibiting MMP-9 (zeige MMP9 Proteine) expression independently of the PI3K (zeige PIK3CA Proteine)/AKT (zeige AKT1 Proteine) pathway.
Results showed an anti-growth effect of CDX1 and identified its miRNA regulatory mechanism in gastric cancer.
Certain SNPs of Cdx1 and Cdx2 (zeige CDX2 Proteine) and their interactions with other risk factors are associated with Barrett's esophagus (BE) and may contribute to human susceptibility to BE.
The differential regulation of the gene expression of CDX1, CDX2 (zeige CDX2 Proteine) and SOX2 (zeige SOX2 Proteine) in patients with gastric cancer affects not only the tumour but also the non-neoplastic tumour-distant mucosa.
Data indicate that autophagy is activated though the Cdx1-Bcl-2 (zeige BCL2 Proteine)-LC3 (zeige MAP1LC3A Proteine) pathway.
Cdx1-Cdx2 (zeige CDX2 Proteine) double null mutants exhibited loss of primitive erythroblasts, aberrant vascular remodelling of the yolk sac (zeige ADCY10 Proteine) and a block in hematopoietic differentiation from yolk sac (zeige ADCY10 Proteine)-derived cells in culture.
transient expression of CDX1 promotes epicardial EMT (zeige ITK Proteine), whereas subsequent down-regulation of CDX1 after 11.5 dpc in mice is necessary for further subepicardial invasion of EPDCs and contribution to coronary vascular endothelium or smooth muscle cells.
These findings underscore previously unrecognized roles for Cdx members in intestinal tumorigenesis
we found that relative to Cdx1, Cdx2 (zeige CDX2 Proteine) was significantly less potent at effecting a transcriptional response from the Cdx1 promoter, a known Cdx target gene.
study is the first example of Cdx-Hox protein (zeige HOXA13 Proteine) interactions and suggests that such complexes may modulate Hox (zeige MSH2 Proteine) and/or Cdx function
SALL4 (zeige SALL4 Proteine) and KLF5 (zeige KLF5 Proteine) were aberrantly expressed in the CDX1(+) intestinal metaplasia of the stomach. Sustained expression of CDX1 gave rise to the induction of early intestinal-stemness markers, followed by the expression of intestinal-differentiation markers.
Cdx1 regulation on HoxC8 (zeige HOXC8 Proteine) expression and suggest the possibility that the temporal changes in Cdx activity levels during gastrulation, combined with differential DNA binding affinity, might play a role in the establishment of Hox (zeige MSH2 Proteine) sequential activation.
The findings suggested that Cdx2 (zeige CDX2 Proteine) is essential for differentiation of the small intestinal epithelium, and that both Cdx1 and Cdx2 (zeige CDX2 Proteine) contribute to homeostasis of the colon.
Cdx members operate upstream of Dll1 (zeige DLL1 Proteine) to convey different functions in both somitogenesis and Goblet cell differentiation.
Data suggest that cdx proteins affect cardiogenesis by regulating the formation of cardiogenic mesoderm.
Oct3/4 (zeige POU5F1 Proteine) initiates its own negative autoregulation through Cdx1 up-regulation to begin the repression of pluripotency in preparation for the onset of gastrulation and germ layer differentiation.
This gene is a member of the caudal-related homeobox transcription factor gene family. The encoded DNA-binding protein regulates intestine-specific gene expression and enterocyte differentiation. It has been shown to induce expression of the intestinal alkaline phosphatase gene, and inhibit beta-catenin/T-cell factor transcriptional activity.
caudal type homeobox 1
, caudal type homeobox transcription factor 1
, caudal type homeo box transcription factor 1
, caudal-type homeobox protein 1
, homeobox protein CDX-1
, caudal-type homeobox protein CDX1
, caudal type homeo box 1
, caudal-type homeodomain protein A
, homeobox protein CHOX-CAD