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Rational design of the survivin/CDK4 complex by combining protein-protein docking and molecular dynamics simulations

机译:结合蛋白-蛋白对接和分子动力学模拟,合理设计survivin / CDK4复合物

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摘要

Survivin, the smallest inhibitor of apoptosis protein (IAP), is a valid target for cancer research. It mediates both the apoptosis pathway and the cell cycle and has been proposed to form a complex with the cyclin-dependent kinase protein CDK4. The resulting complex transports CDK4 from the cytosol to the nucleus, where CDK4 participates in cell division. Survivin has been recognized as a node protein that interacts with several partners; disruption of the formed complexes can lead to new anticancer compounds. We propose a rational model of the survivin/CDK4 complex that fulfills the experimental evidence and that can be used for structure-based design of inhibitors modifying its interface recognition. In particular, the suggested complex involves the alpha helical domain of survivin and resembles the mode of binding of survivin in the survivin/borealin X-ray structure. The proposed model has been obtained by combining protein-protein docking, fractal-based shape complementarity, electrostatics studies and extensive molecular dynamics simulations.
机译:Survivin是凋亡蛋白(IAP)的最小抑制剂,是癌症研究的有效靶标。它介导细胞凋亡途径和细胞周期,并已提出与细胞周期蛋白依赖性激酶蛋白CDK4形成复合物。产生的复合物将CDK4从胞质溶胶转运到细胞核,在此CDK4参与细胞分裂。 Survivin被认为是一种与几种伴侣相互作用的节点蛋白。形成的复合物的破坏可导致新的抗癌化合物。我们提出了一种survivin / CDK4复合物的合理模型,该模型可满足实验证据,并可用于基于结构的抑制剂设计(修改其界面识别)。特别地,建议的复合物涉及survivin的α螺旋结构域,并且类似于survivin / borealin X射线结构中survivin的结合模式。通过结合蛋白质-蛋白质对接,基于分形的形状互补性,静电学研究和广泛的分子动力学模拟,获得了建议的模型。

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