首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Computational Study of the 'DFG-Flip' Conformational Transition in c-Abl and c-Src Tyrosine Kinases
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Computational Study of the 'DFG-Flip' Conformational Transition in c-Abl and c-Src Tyrosine Kinases

机译:c-Abl和c-Src酪氨酸激酶中“ DFG-Flip”构象转变的计算研究

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摘要

Protein tyrosine kinases are crucial to cellular signaling pathways regulating cell growth, proliferation, metabolism, differentiation, and migration. To maintain normal regulation of cellular signal transductions, the activities of tyrosine kinases are also highly regulated. The conformation of a three-residue motif Asp-Phe-Gly (DFG) near the N-terminus of the long "activation" loop covering the catalytic site is known to have a critical impact on the activity of c-Abl and c-Src tyrosine kinases. A conformational transition of the DFG motif can switch the enzyme from an active (DFG-in) to an inactive (DFG-out) state. In the present study, the string method with swarms-of-trajectories was used to computationally determine the reaction pathway connecting the two end-states, and umbrella sampling calculations were carried out to characterize the thermodynamic factors affecting the conformations of the DFG motif in c-Abl and c-Src kinases. According to the calculated free energy landscapes, the DFG-out conformation is clearly more favorable in the case of c-Abl than that of c-Src. The calculations also show that the protonation state of the aspartate residue in the DFG motif strongly affects the in/out conformational transition in c-Abl, although it has a much smaller impact in the case of c-Src due to local structural differences.
机译:蛋白酪氨酸激酶对于调节细胞生长,增殖,代谢,分化和迁移的细胞信号通路至关重要。为了维持细胞信号转导的正常调节,酪氨酸激酶的活性也受到高度调节。已知长三个“残基” Asp-Phe-Gly(DFG)靠近覆盖催化位点的长“激活”环的N末端,其构象对c-Abl和c-Src的活性具有关键影响酪氨酸激酶。 DFG基序的构象转变可将酶从活性(DFG-in)切换到非活性(DFG-out)状态。在本研究中,采用带轨迹的串方法来计算确定连接两个最终状态的反应途径,并进行了伞形计算以表征影响C中DFG基序构象的热力学因素。 -Abl和c-Src激酶。根据计算出的自由能态势,在c-Abl情况下,DFG-out构型显然比c-Src更有利。计算还表明,DFG基序中的天冬氨酸残基的质子化状态强烈影响c-Abl中的输入/输出构象转变,尽管由于局部结构差异而对c-Src的影响小得多。

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