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Kinase Suppressor of Ras Forms a Multiprotein Signaling Complex and Modulates MEK Localization

机译:Ras的激酶抑制剂形成一种多蛋白信号复合物并调节MEK的定位。

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摘要

Genetic screens for modifiers of activated Ras phenotypes have identified a novel protein, kinase suppressor of Ras (KSR), which shares significant sequence homology with Raf family protein kinases. Studies using Drosophila melanogaster and Caenorhabditis elegans predict that KSR positively regulates Ras signaling; however, the function of mammalian KSR is not well understood. We show here that two predicted kinase-dead mutants of KSR retain the ability to complement ksr-1 loss-of-function alleles in C. elegans, suggesting that KSR may have physiological, kinase-independent functions. Furthermore, we observe that murine KSR forms a multimolecular signaling complex in human embryonic kidney 293T cells composed of HSP90, HSP70, HSP68, p50CDC37, MEK1, MEK2, 14-3-3, and several other, unidentified proteins. Treatment of cells with geldanamycin, an inhibitor of HSP90, decreases the half-life of KSR, suggesting that HSPs may serve to stabilize KSR. Both nematode and mammalian KSRs are capable of binding to MEKs, and three-point mutants of KSR, corresponding to C. elegans loss-of-function alleles, are specifically compromised in MEK binding. KSR did not alter MEK activity or activation. However, KSR-MEK binding shifts the apparent molecular mass of MEK from 44 to >700 kDa, and this results in the appearance of MEK in membrane-associated fractions. Together, these results suggest that KSR may act as a scaffolding protein for the Ras-mitogen-activated protein kinase pathway.
机译:活化Ras表型修饰子的遗传筛选已鉴定出一种新型蛋白质,Ras激酶抑制剂(KSR),与Raf家族蛋白激酶具有明显的序列同源性。使用果蝇和秀丽隐杆线虫的研究预测,KSR积极调节Ras信号传导。然而,哺乳动物KSR的功能尚不十分清楚。我们在这里显示,两个预测的KSR激酶死亡突变体保留补充秀丽隐杆线虫中ksr-1功能缺失等位基因的能力,表明KSR可能具有生理,激酶非依赖性功能。此外,我们观察到鼠KSR在人胚胎肾293T细胞中形成了多分子信号复合物,该细胞由HSP90,HSP70,HSP68,p50 CDC37 ,MEK1,MEK2、14-3-3等组成,未鉴定的蛋白质。用格尔德霉素(一种HSP90抑制剂)处理细胞会降低KSR的半衰期,这表明HSP可能有助于稳定KSR。线虫和哺乳动物的KSR都能够结合MEK,并且对应于秀丽隐杆线虫功能丧失等位基因的KSR的三点突变体在MEK结合中受到特别的损害。 KSR并未改变MEK的活性或激活。然而,KSR-MEK结合使MEK的表观分子量从44 kDa转变为> 700 kDa,这导致膜相关部分中出现MEK。总之,这些结果表明,KSR可能充当Ras丝裂原激活的蛋白激酶途径的支架蛋白。

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