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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Identification of PTPN23 as a novel regulator of cell invasion in mammary epithelial cells from a loss-of-function screen of the 'PTP-ome'.
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Identification of PTPN23 as a novel regulator of cell invasion in mammary epithelial cells from a loss-of-function screen of the 'PTP-ome'.

机译:从“ PTP-ome”功能丧失筛选中鉴定出PTPN23作为乳腺上皮细胞中细胞入侵的新型调节剂。

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We used an RNAi-mediated loss-of-function screen to study systematically the role of the protein tyrosine phosphatase (PTP) superfamily of enzymes in mammary epithelial cell motility in the absence or presence of the oncoprotein tyrosine kinase ERBB2. We report that although shRNAs directed against most of the PTP family were without effect, suppression of three PTPs-PRPN23, PTPRG, and PTPRR-enhanced cell motility. Furthermore, we found that suppression of PTPN23, but not PTPRG or PTPRR, induced cell invasion. Suppression of PTPN23 increased E-cadherin internalization, impaired early endosome trafficking of E-cadherin, induced the expression of mesenchymal proteins, and caused cell scattering. The activity of SRC and beta-catenin was elevated when PTPN23 was suppressed. Moreover, we identified SRC, E-cadherin, and beta-catenin as direct substrates of PTPN23. Inhibition of SRC with the small molecular inhibitor SU6656 blocked the effects of PTPN23 depletion. These findings suggest that loss of PTPN23 may increase the activity of SRC and the phosphorylation status of the E-cadherin/beta-catenin signaling complex to promote tumor growth and invasive behavior in breast cancer. In addition, our studies highlight functional specificity among PTPs and reveal new roles for PTPs in mammary epithelial cell biology.
机译:我们使用RNAi介导的功能丧失筛选系统地研究了蛋白质酪氨酸磷酸酶(PTP)超家族在不存在或存在癌蛋白酪氨酸激酶ERBB2的情况下在乳腺上皮细胞运动中的作用。我们报道,尽管针对大多数PTP家族的shRNA无效,但抑制了三种PTP-PRPN23,PTPRG和PTPRR增强了细胞运动。此外,我们发现抑制PTPN23而不是PTPRG或PTPRR可以诱导细胞侵袭。 PTPN23的抑制增加E-钙粘蛋白的内在化,损害E-钙粘蛋白的早期内体运输,诱导间充质蛋白的表达,并引起细胞分散。当PTPN23被抑制时,SRC和β-catenin的活性增加。此外,我们确定了SRC,E-钙粘着蛋白和β-连环蛋白是PTPN23的直接底物。用小分子抑制剂SU6656抑制SRC可以阻断PTPN23耗竭的影响。这些发现表明,PTPN23的缺失可能会增加SRC的活性以及E-钙粘蛋白/β-连环蛋白信号复合物的磷酸化状态,从而促进乳腺癌的生长和侵袭行为。此外,我们的研究突出了PTP之间的功能特异性,并揭示了PTP在乳腺上皮细胞生物学中的新作用。

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