Department of Biochemistry and Molecular Biology, Shanghai JiaoTong University School of Medicine, Shanghai, PR China.
EMBO J. 2011 Jul 1;30(15):3200-11. doi: 10.1038/emboj.2011.212.
Receptor protein tyrosine phosphatase α (RPTPα)-mediated Src activation is required for survival of tested human colon and oestrogen receptor-negative breast cancer cell lines. To explore whether mutated RPTPα participates in human carcinogenesis, we sequenced RPTPα cDNAs from five types of human tumours and found splice mutants in ∼30% of colon, breast, and liver tumours. RPTPα245, a mutant expressed in all three tumour types, was studied further. Although it lacks any catalytic domain, RPTPα245 expression in the tumours correlated with Src tyrosine dephosphorylation, and its expression in rodent fibroblasts activated Src by a novel mechanism. This involved RPTPα245 binding to endogenous RPTPα (eRPTPα), which decreased eRPTPα-Grb2 binding and increased eRPTPα dephosphorylation of Src without increasing non-specific eRPTPα activity. RPTPα245-eRPTPα binding was blocked by Pro210 → Leu/Pro211 → Leu mutation, consistent with the involvement of the structural 'wedge' that contributes to eRPTPα homodimerization. RPTPα245-induced fibroblast transformation was blocked by either Src or eRPTPα RNAi, indicating that this required the dephosphorylation of Src by eRPTPα. The transformed cells were tumourigenic in nude mice, suggesting that RPTPα245-induced activation of Src in the human tumours may have contributed to carcinogenesis.
受体蛋白酪氨酸磷酸酶 α(RPTPα)介导的Src 激活对于测试的人类结肠和雌激素受体阴性乳腺癌细胞系的存活是必需的。为了探索突变的 RPTPα 是否参与人类癌变,我们从五种类型的人类肿瘤中测序了 RPTPα cDNA,并在大约 30%的结肠、乳腺和肝癌中发现了剪接突变体。进一步研究了在所有三种肿瘤类型中表达的 RPTPα245 突变体。尽管它缺乏任何催化结构域,但在肿瘤中表达的 RPTPα245 与 Src 酪氨酸去磷酸化相关,并且在啮齿动物成纤维细胞中表达的 RPTPα245 通过一种新的机制激活了 Src。这涉及 RPTPα245 与内源性 RPTPα(eRPTPα)结合,这减少了 eRPTPα-Grb2 的结合,并增加了 eRPTPα 对 Src 的去磷酸化,而不增加非特异性的 eRPTPα 活性。RPTPα245-eRPTPα 结合被 Pro210→Leu/Pro211→Leu 突变阻断,与参与 eRPTPα 同源二聚化的结构“楔形”有关。RPTPα245 诱导的成纤维细胞转化被 Src 或 eRPTPα RNAi 阻断,表明这需要 eRPTPα 对 Src 的去磷酸化。转化细胞在裸鼠中具有致瘤性,表明 RPTPα245 在人类肿瘤中诱导的 Src 激活可能促成了癌变。