Khanna Ranvikram S, Le Hoa T, Wang Jing, Fung Thomas C H, Pallen Catherine J
From the Departments of Medicine and the Child and Family Research Institute, University of British Columbia, Vancouver, British Columbia V5Z 4H4, Canada.
the Child and Family Research Institute, University of British Columbia, Vancouver, British Columbia V5Z 4H4, Canada Pediatrics and.
J Biol Chem. 2015 Apr 10;290(15):9886-95. doi: 10.1074/jbc.M114.624247. Epub 2015 Feb 18.
Protein tyrosine phosphatase α (PTPα) promotes integrin-stimulated cell migration in part through the role of Src-phosphorylated PTPα-Tyr(P)-789 in recruiting and localizing p130Cas to focal adhesions. The growth factor IGF-1 also stimulates PTPα-Tyr-789 phosphorylation to positively regulate cell movement. This is in contrast to integrin-induced PTPα phosphorylation, that induced by IGF-1 can occur in cells lacking Src family kinases (SFKs), indicating that an unknown kinase distinct from SFKs can target PTPα. We show that this IGF-1-stimulated tyrosine kinase is Abl. We found that PTPα binds to the scaffold protein RACK1 and that RACK1 coordinates the IGF-1 receptor, PTPα, and Abl in a complex to enable IGF-1-stimulated and Abl-dependent PTPα-Tyr-789 phosphorylation. In cells expressing SFKs, IGF-1-stimulated phosphorylation of PTPα is mediated by RACK1 but is Abl-independent. Furthermore, expressing the SFKs Src and Fyn in SFK-deficient cells switches IGF-1-induced PTPα phosphorylation to occur in an Abl-independent manner, suggesting that SFK activity dominantly regulates IGF-1/IGF-1 receptor signaling to PTPα. RACK1 is a molecular scaffold that integrates growth factor and integrin signaling, and our identification of PTPα as a RACK1 binding protein suggests that RACK1 may coordinate PTPα-Tyr-789 phosphorylation in these signaling networks to promote cell migration.
蛋白酪氨酸磷酸酶α(PTPα)部分通过Src磷酸化的PTPα-Tyr(P)-789在将p130Cas募集并定位到粘着斑中的作用来促进整合素刺激的细胞迁移。生长因子IGF-1也刺激PTPα-Tyr-789磷酸化以正向调节细胞运动。这与整合素诱导的PTPα磷酸化相反,IGF-1诱导的磷酸化可在缺乏Src家族激酶(SFKs)的细胞中发生,表明一种不同于SFKs的未知激酶可作用于PTPα。我们发现这种IGF-1刺激的酪氨酸激酶是Abl。我们发现PTPα与支架蛋白RACK1结合,并且RACK1在一个复合物中协调IGF-1受体、PTPα和Abl,以实现IGF-1刺激的和Abl依赖性的PTPα-Tyr-789磷酸化。在表达SFKs的细胞中,IGF-1刺激的PTPα磷酸化由RACK1介导,但不依赖于Abl。此外,在缺乏SFK的细胞中表达SFKs Src和Fyn会使IGF-1诱导的PTPα磷酸化以不依赖于Abl的方式发生,这表明SFK活性主要调节IGF-1/IGF-1受体向PTPα的信号传导。RACK1是一个整合生长因子和整合素信号的分子支架,我们将PTPα鉴定为RACK1结合蛋白表明RACK1可能在这些信号网络中协调PTPα-Tyr-789磷酸化以促进细胞迁移。