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Role of the histone domain in the autoinhibition and activation of the Ras activator Son of Sevenless

机译:组蛋白结构域在Ras激活剂Sevenless之子的自抑制和激活中的作用

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摘要

Membrane-bound Ras is activated by translocation of the Son of Sevenless (SOS) protein to the plasma membrane. SOS is inactive unless Ras is bound to an allosteric site on SOS, and the Dbl homology (DH) and Pleckstrin homology (PH) domains of SOS (the DH-PH unit) block allosteric Ras binding. We showed previously that the activity of SOS at the membrane increases with the density of PIP2 and the local concentration of Ras-GTP, which synergize to release the DH-PH unit. Here we present a new crystal structure of SOS that contains the N-terminal histone domain in addition to the DH-PH unit and the catalytic unit (SOSHDFC, residues 1–1049). The structure reveals that the histone domain plays a dual role in occluding the allosteric site and in stabilizing the autoinhibitory conformation of the DH-PH unit. Additional insight is provided by kinetic analysis of the activation of membrane-bound Ras by mutant forms of SOS that contain mutations in the histone and the PH domains (E108K, C441Y, and E433K) that are associated with Noonan syndrome, a disease caused by hyperactive Ras signaling. Our results indicate that the histone domain and the DH-PH unit are conformationally coupled, and that the simultaneous engagement of the membrane by a PH domain PIP2-binding interaction and electrostatic interactions between a conserved positively charged patch on the histone domain and the negatively charged membrane coincides with a productive reorientation of SOS at the membrane and increased accessibility of both Ras binding sites on SOS.
机译:膜结合的Ras通过将Sevenlessless的Son(SOS)蛋白转运到质膜上而激活。除非Ras绑定到SOS的变构位点,否则SOS是无活性的,并且SOS的Dbl同源性(DH)和Pleckstrin同源性(PH)域(DH-PH单元)阻止了变构Ras结合。我们以前表明,膜上SOS的活性随PIP2的密度和Ras-GTP的局部浓度而增加,它们协同释放DH-PH单元。在这里,我们介绍了一种新的SOS晶体结构,除了DH-PH单元和催化单元(SOSHDFC,残基1-1049)之外,还包含N端组蛋白结构域。该结构表明,组蛋白结构域在封闭变构位点和稳定DH-PH单位的自抑制构象中起着双重作用。通过动力学分析对SOS突变形式的膜结合Ras的激活进行动力学分析,该突变形式的SOS包含与Noonan综合征相关的组蛋白和PH域(E108K,C441Y和E433K)突变,后者是由过度活跃引起的疾病Ras信令。我们的结果表明,组蛋白结构域和DH-PH单元是构象耦合的,并且通过PH域的膜同时参与PIP2结合相互作用以及组蛋白结构域上保守的带正电荷的补片与带负电荷的静电之间的相互作用膜与SOS在膜上的生产性重新定向以及SOS上两个Ras结合位点的可及性增加相吻合。

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