首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Monitoring Ras Interactions with the Nucleotide Exchange Factor Son of Sevenless (Sos) Using Site-specific NMR Reporter Signals and Intrinsic Fluorescence
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Monitoring Ras Interactions with the Nucleotide Exchange Factor Son of Sevenless (Sos) Using Site-specific NMR Reporter Signals and Intrinsic Fluorescence

机译:使用特定于站点的NMR报告信号和固有荧光监测Ras与核苷酸交换因子Sonlessless(Sos)的相互作用

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摘要

The activity of Ras is controlled by the interconversion between GTP- and GDP-bound forms partly regulated by the binding of the guanine nucleotide exchange factor Son of Sevenless (Sos). The details of Sos binding, leading to nucleotide exchange and subsequent dissociation of the complex, are not completely understood. Here, we used uniformly 15N-labeled Ras as well as [13C]methyl-Met,Ile-labeled Sos for observing site-specific details of Ras-Sos interactions in solution. Binding of various forms of Ras (loaded with GDP and mimics of GTP or nucleotide-free) at the allosteric and catalytic sites of Sos was comprehensively characterized by monitoring signal perturbations in the NMR spectra. The overall affinity of binding between these protein variants as well as their selected functional mutants was also investigated using intrinsic fluorescence. The data support a positive feedback activation of Sos by Ras·GTP with Ras·GTP binding as a substrate for the catalytic site of activated Sos more weakly than Ras·GDP, suggesting that Sos should actively promote unidirectional GDP → GTP exchange on Ras in preference of passive homonucleotide exchange. Ras·GDP weakly binds to the catalytic but not to the allosteric site of Sos. This confirms that Ras·GDP cannot properly activate Sos at the allosteric site. The novel site-specific assay described may be useful for design of drugs aimed at perturbing Ras-Sos interactions.
机译:Ras的活性受GTP结合型与GDP结合型之间的相互转化控制,该转化部分受鸟嘌呤核苷酸交换因子Sevenless(Sos)的鸟嘌呤核苷酸交换因子调控。 Sos结合的细节,导致核苷酸交换和随后的复合物的解离,尚未完全了解。在这里,我们使用统一的 15 N标记的Ras和[ 13 C]甲基-Met,Ile标记的Sos观察Ras-Sos相互作用的特定位置细节在解决方案中。通过监测NMR光谱中的信号扰动,可以全面表征在Sos的变构和催化位点结合各种形式的Ras(装载GDP和GTP模拟物或无核苷酸)。还使用固有荧光研究了这些蛋白变异体及其选择的功能突变体之间结合的总体亲和力。数据支持Ras·GTP以Ras·GTP结合作为活化的Sos催化位点的底物,从而使Ras·GTP对Sos产生正反馈活化作用,这表明Sos应该优先促进Ras上的单向GDP→GTP交换。同源核苷酸交换的过程。 Ras·GDP与Sos的催化位点弱绑定,但与Sos的变构位点无关。这证实了Ras·GDP无法正确激活变构位点上的Sos。所描述的新颖的位点特异性测定法可用于设计旨在扰乱Ras-Sos相互作用的药物。

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