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The protein encoded by PTPN9 is a member of the protein tyrosine phosphatase (PTP) family. Zusätzlich bieten wir Ihnen PTPN9 Antikörper (31) und und viele weitere Produktgruppen zu diesem Protein an.
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Results from a study on gene expression variability markers in early-stage human embryos shows that PTPN9 is a putative expression variability marker for the 3-day, 8-cell embryo stage.
this study highlights an important role for miR (zeige MLXIP Proteine)-96 in the regulation of PTPN9 in breast cancer cells and may provide insight into the molecular mechanisms of breast carcinogenesis.
Expression of MEG2 is reversely correlated with that of miR (zeige MLXIP Proteine)-181a-5p in gastric cancer.
PTPN9 inhibited cell proliferation in HepG2 cells.
PTPMeg2 is an important phosphatase for the dephosphorylation of STAT3 (zeige STAT3 Proteine) and plays a critical role in breast cancer development.
This study indentified VEGFR2 (zeige KDR Proteine) as a PTPN9 substrate, and indicated that PTPN9 is a negative regulator of VEGFR2 (zeige KDR Proteine) signaling and function in endothelial cells.
data suggest PTPN9 as a negative regulator of breast cancer cells by targeting ErbB2 (zeige ERBB2 Proteine) and EGFR (zeige EGFR Proteine) and inhibiting STAT (zeige STAT1 Proteine) activation
Purification and characterization of protein tyrosine phosphatase (zeige ACP1 Proteine) PTP (zeige SLC25A3 Proteine)-MEG2
PTP (zeige SLC25A3 Proteine)-MEG2 has an important role in the development of erythroid cells.
PTPase-MEG2 through its Sec14p homology domain couples inositide phosphorylation to tyrosine dephosphorylation and the regulation of intracellular traffic of the secretory pathway in T cells.
As a result, overexpression of PTP (zeige SLC25A3 Proteine)-MEG2 down-regulates NGF (zeige NGFB Proteine)/TrkA (zeige NTRK1 Proteine) signaling and blocks neurite outgrowth and differentiation
role in the negative regulation of hepatic insulin (zeige INS Proteine) signaling
The protein encoded by this gene is a member of the protein tyrosine phosphatase (PTP) family. PTPs are known to be signaling molecules that regulate a variety of cellular processes including cell growth, differentiation, mitotic cycle, and oncogenic transformation. This PTP contains an N-terminal domain that shares a significant similarity with yeast SEC14, which is a protein that has phosphatidylinositol transfer activity and is required for protein secretion through the Golgi complex in yeast. This PTP was found to be activated by polyphosphoinositide, and is thought to be involved in signaling events regulating phagocytosis.
protein tyrosine phosphatase, non-receptor type 9
, PTPase MEG2
, protein-tyrosine phosphatase MEG2
, tyrosine-protein phosphatase non-receptor type 9
, Protein-tyrosine phosphatase, non-receptor type 9 (Protein-tyrosine phosphatase MEG2) (PTPase-MEG2)