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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Arl2-Mediated Allosteric Release of Farnesylated KRas4B from Shuttling Factor PDE delta
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Arl2-Mediated Allosteric Release of Farnesylated KRas4B from Shuttling Factor PDE delta

机译:ARL2-介导的Farnery kras4b的介导的kras4b从穿梭因子pde delta

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Proper localization of Ras proteins at the plasma membrane (PM) is crucial for their functions. To get to the PM, KRas4B and some other Ras family proteins bind to the PDE delta shuttling protein through their farnesylated hypervariable regions (HVRs). The docking of their famesyl (and to a lesser extent geranylgeranyl) in the hydrophobic pocket of PDE delta's stabilizes the interaction. At the PM, guanosine 5'-triphosphate (GTP)-bound Arf-like protein 2 (Arl2) assists in the release of Ras from the PDE delta. However, exactly how is still unclear. Using all-atom molecular dynamics simulations, we unraveled the detailed mechanism of Arl2-mediated release of KRas4B, the most abundant oncogenic Ras isoform, from PDE delta. We simulated ternary Arl2 PDE delta KRas4B HVR complexes and observed that Arl2 binding weakens the PDE delta farnesylated HVR interaction. Our detailed analysis showed that allosteric changes (involving beta 6 of PDE delta and additional PDE delta residues) compress the hydrophobic PDE delta pocket and push the HVR out. Mutating PDE delta residues that mediate allosteric changes in PDE delta terminates the release process. Mutant Ras proteins are enriched in human cancers, with currently no drugs in the clinics. This mechanistic account may inspire efforts to develop drugs suppressing oncogenic KRas4B release.
机译:在血浆膜(PM)处Ras蛋白的适当定位对其功能至关重要。要到达PM,KRAS4B和一些其他RAS系列蛋白通过其法润盘的高变区域(HVRS)与PDE Delta梭蛋白结合。 PDE Delta的疏水袋中的对胎蛋白(以及较小程度的小壬基甲基)对接稳定相互作用。在PM,鸟苷5'-三磷酸(GTP)结合的ARF-像的Ras从PDE增量释放蛋白2(Arl2)协助。但是,究竟是如何尚不清楚的。使用全原子分子动力学模拟,我们解开了来自PDE Delta的Arl2介导的rAS4b介导的ras4b释放的详细机制。我们模拟了三元ARL2 PDE Delta Kras4b HVR复合物,并观察到ARL2结合削弱了PDE Delta法呢尼合并的HVR相互作用。我们的详细分析表明,变构变化(涉及PDEδ的β6和额外的PDEδ残基)压缩疏水PDE Delta口袋并推出HVR。突变PDE Delta残基,即PDE Delta中的变构变化介导的释放过程。突变体Ras蛋白质在人类癌症中富集,目前在诊所中没有药物。该机制账户可以激发努力开发抑制致癌kras4b释放的药物。

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