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Crk Tyrosine Phosphorylation Regulates PDGF-BB-inducible Src Activation and Breast Tumorigenicity and Metastasis

机译:Crk酪氨酸磷酸化调节PDGF-BB诱导的SRC活化和乳腺肿瘤性和转移

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摘要

The activity of Src family kinases (Src being the prototypical member) is tightly regulated by differential phosphorylation on Tyr416 (positive) and Tyr527 (negative), a duet that reciprocally regulates kinase activity. The latter negative regulation of Src on Tyr527 is mediated by C-terminal Src kinase (CSK) that phosphorylates Tyr527 and maintains Src in a clamped negative regulated state by promoting an intramolecular association. Here it is demonstrated that the SH2-and SH3-domain containing adaptor protein CrkII, by virtue of its phosphorylation on Tyr239, regulates the Csk/Src signaling axis to control Src activation. Once phosphorylated, the motif (PIpYARVIQ) forms a consensus sequence for the SH2 domain of CSK to form a pTyr239-CSK complex. Functionally, when expressed in Crk(-/-)MEFs or in Crkthorn/thorn HS683 cells, Crk Y239F delayed PDGF-BB-inducible Src Tyr416 phosphorylation. Moreover, expression of Crk Y239F in HS683 cells delayed Src kinase activation and suppressed the cell-invasive and -transforming phenotypes. Finally, through loss-of-function and epistasis experiments using CRISPR-Cas9-engineered 4T1 murine breast cancer cells, Crk Tyr239 is implicated in breast cancer tumor growth and metastasis in orthotopic immunocompetent 4T1 mice model of breast adenocarcinoma. These findings delineate a novel role for Crk Tyr239 phosphorylation in the regulation of Src kinases, as well as a potential molecular explanation for a long-standing question as to how Crk regulates the activation of Src kinases.
机译:SRC系列激酶(SRC是原型构件)的活性通过Tyr416(阳性)和Tyr527(阴性)的差分磷酸化紧密调节,该Duet互持续调节激酶活性。 Tyr527上的后一种阴性调节由C-末端SRC激酶(CSK)介导,所述C-末端SRC激酶(CSK)通过促进分子内缔组织来磷酸化TYR527并将SRC保持在夹紧的负调节状态下。在这里,证明含有适配器蛋白Crkii的SH2和SH3结构域,借助于其在TYR239上的磷酸化,调节CSK / SRC信号轴来控制SRC活化。一旦磷酸化,主题(PIPYARVIQ)就能形成CSK的SH2结构域以形成PTYR239-CSK复合物的共分序列。在功能上,当在CRK(/ - / - )MEF或CRKTHORN /刺HS683细胞中表达时,CRK Y239F延迟PDGF-BB诱导的SRC TYR416磷酸化。此外,HS683细胞CRK Y239F的表达延迟了SRC激酶活化并抑制了细胞侵入性和转化表型。最后,通过使用CRISPR-CAS9设计的4T1鼠乳腺癌细胞的功能丧失和超越实验,CRK TYR239涉及乳腺癌肿瘤生长和转移,在原位免疫活性4T1乳腺腺癌模型中。这些发现描绘了Crk Tyr239磷酸化在调节SRC激酶中的新作用,以及对Crk如何调节SRC激酶的激活的潜在分子解释。

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  • 来源
    《Molecular cancer research: MCR》 |2018年第1期|共11页
  • 作者单位

    Rutgers New Jersey Med Sch Ctr Canc Dept Microbiol Biochem &

    Mol Genet Newark NJ USA;

    Wenzhou Med Univ Prot Qual Control &

    Dis Lab Ctr Canc Sch Lab Med &

    Life Sci Wenzhou Zhejiang;

    Rutgers New Jersey Med Sch Ctr Canc Dept Microbiol Biochem &

    Mol Genet Newark NJ USA;

    Cell Signaling Technol Danvers MA USA;

    Univ Connecticut Sch Med Raymond &

    Beverly Sackler Lab Genet &

    Mol Med Gen Farmington CT USA;

    Rutgers New Jersey Med Sch Ctr Canc Dept Microbiol Biochem &

    Mol Genet Newark NJ USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
  • 关键词

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