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Homo- and Heterotypic Association Regulates Signaling by the SgK269/PEAK1 and SgK223 Pseudokinases

机译:同型和异型协会调节SgK269 / PEAK1和SgK223假激酶的信号传导

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摘要

SgK269/PEAK1 is a pseudokinase and scaffolding protein that plays a critical role in regulating growth factor receptor signal output and is implicated in the progression of several cancers, including those of the breast, colon, and pancreas. SgK269 is structurally related to SgK223, a human pseudokinase that also functions as a scaffold but recruits a distinct repertoire of signaling proteins compared with SgK269. Structural similarities between SgK269 and SgK223 include a predicted α-helical region (designated CH) immediately preceding the conserved C-terminal pseudokinase (PK) domain. Structure-function analyses of SgK269 in MCF-10A mammary epithelial cells demonstrated a critical role for the CH and PK regions in promoting cell migration and Stat3 activation. Characterization of the SgK269 “interactome” by mass spectrometry-based proteomics identified SgK223 as a novel binding partner, and association of SgK269 with SgK223 in cells was dependent on the presence of the CH and PK domains of both pseudokinases. Homotypic association of SgK269 and SgK223 was also demonstrated and exhibited the same structural requirements. Further analysis using pulldowns and size-exclusion chromatography underscored the critical role of the CH region in SgK269/SgK223 association. Importantly, although SgK269 bridged SgK223 to Grb2, it was unable to activate Stat3 or efficiently enhance migration in SgK223 knock-out cells generated by CRISPR/Cas9. These results reveal previously unrecognized interplay between two oncogenic scaffolds and demonstrate a novel signaling mechanism for pseudokinases whereby homotypic and heterotypic association is used to assemble scaffolding complexes with distinct binding properties and hence qualitatively regulate signal output.
机译:SgK269 / PEAK1是一种假激酶和支架蛋白,在调节生长因子受体信号输出中起关键作用,并与多种癌症的进展有关,包括乳腺癌,结肠癌和胰腺癌。 SgK269在结构上与SgK223相关,SgK223是一种人假激酶,与SgK269相比,它还可以充当支架,但是募集了不同的信号蛋白。 SgK269和SgK223之间的结构相似性包括一个保守的C端假激酶(PK)结构域之前的预测α螺旋区域(称为CH)。在MCF-10A乳腺上皮细胞中SgK269的结构功能分析表明,CH和PK区在促进细胞迁移和Stat3激活中起关键作用。通过基于质谱的蛋白质组学对SgK269“ interactome”的表征将SgK223确定为新型结合伴侣,并且细胞中SgK269与SgK223的结合取决于两种假激酶的CH和PK域的存在。 SgK269和SgK223的同型关联也得到了证明,并表现出相同的结构要求。使用下拉和大小排阻色谱的进一步分析强调了CH区在SgK269 / SgK223关联中的关键作用。重要的是,尽管SgK269将SgK223桥接至Grb2,但它无法激活Stat3或有效增强CRISPR / Cas9产生的SgK223敲除细胞的迁移。这些结果揭示了以前无法识别的两个致癌支架之间的相互作用,并证明了一种针对假激酶的新型信号传导机制,其中同型和异型缔合被用于组装具有独特结合特性的支架复合物,从而定性地调节信号输出。

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