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The tyrosine kinase CSK associates with FLT3 and c-Kit receptors and regulates downstream signaling

机译:酪氨酸激酶CSK与FLT3和c-Kit受体缔合并调节下游信号传导

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Type III receptor tyrosine kinases (RTKs), FLT3 and c-Kit play important roles in a variety of cellular processes. A number of SH2-domain containing proteins interact with FLT3 and c-Kit and regulate downstream signaling. The SH2-domain containing non-receptor protein tyrosine kinase CSK is mainly studied in the context of regulating Src family kinases. Here we present an additional role of this kinase in RTK signaling. We show that CSK interacts with FLT3 and c-Kit in a phosphorylation dependent manner. This interaction is facilitated through the SH2-domain of CSK. Under basal conditions CSK is mainly localized throughout the cytosolic compartment but upon ligand stimulation it is recruited to the inner side of cell membrane. CSK association did not alter receptor ubiquitination or phosphorylation but disrupted downstream signaling. Selective depletion of CSK using siRNA, or inhibition with CSK inhibitor, led to increased phosphorylation of Akt and Erk, but not p38, upon FLT3 ligand (FL) stimulation. Stem cell factor (SCF)-mediated Akt and Erk activation was also elevated by CSK inhibition. However, siRNA mediated CSK knockdown increased SCF stimulated Akt phosphorylation but decreased Erk phosphorylation. CSK depletion also significantly increased both FL- and SCF-induced SHC, Gab2 and SHP2 phosphorylation. Furthermore, CSK depletion contributed to oncogenic FLT3- and c-Kit-mediated cell proliferation, but not to cell survival. Thus, the results indicate that CSK association with type III RTKs, FLT3 and c-Kit can have differential impact on receptor downstream signaling. ?CSK associates with type III receptor tyrosine kinases.?CSK SH2 domain and receptor activation are mandatory for this association.?CSK differentially regulates FLT3 and c-Kit downstream signaling.
机译:III型受体酪氨酸激酶(RTK),FLT3和c-Kit在多种细胞过程中起重要作用。许多含有SH2结构域的蛋白质与FLT3和c-Kit相互作用并调节下游信号传导。包含SH2域的非受体蛋白酪氨酸激酶CSK主要在调节Src家族激酶的背景下进行研究。在这里,我们介绍了该激酶在RTK信号传导中的其他作用。我们表明,CSK与磷酸化依赖方式与FLT3和c-Kit相互作用。通过CSK的SH2域促进了这种相互作用。在基础条件下,CSK主要位于整个胞质区室,但在配体刺激下,它被募集到细胞膜内侧。 CSK缔合没有改变受体的泛素化或磷酸化,但破坏了下游信号传导。当刺激FLT3配体(FL)时,使用siRNA选择性清除CSK或用CSK抑制剂抑制可导致Akt和Erk磷酸化增加,但不引起p38磷酸化。通过CSK抑制,干细胞因子(SCF)介导的Akt和Erk活化也得以提高。然而,siRNA介导的CSK敲低增加了SCF刺激的Akt磷酸化,但降低了Erk磷酸化。 CSK消耗也显着增加了FL和SCF诱导的SHC,Gab2和SHP2磷酸化。此外,CSK耗竭促进了致癌的FLT3和c-Kit介导的细胞增殖,但没有促进细胞存活。因此,结果表明,CSK与III型RTK,FLT3和c-Kit的结合可能对受体下游信号传导产生不同的影响。 ?CSK与III型受体酪氨酸激酶相关。?CSK SH2结构域和受体激活对该关系必不可少。?CSK差异调节FLT3和c-Kit下游信号传导。

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