首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Insight derived from molecular dynamics simulation into dynamics and molecular motions of cuticle-degrading serine protease Ver112
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Insight derived from molecular dynamics simulation into dynamics and molecular motions of cuticle-degrading serine protease Ver112

机译:从分子动力学模拟中的洞察力衍生成带状降解丝氨酸蛋白酶Ver112的动力学和分子动力学

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摘要

Cuticle-degrading serine protease Ver112, which derived from a nematophagous fungus Lecanicillium psalliotae, has been exhibited to have high cuticle-degrading and nematicidal activities. We have performed molecular dynamics (MD) simulation based on the crystal structure of Ver112 to investigate its dynamic properties and large-scale concerted motions. The results indicate that the structural core of Ver112 shows a small fluctuation amplitude, whereas the substrate binding sites, and the regions close to and opposite the substrate binding sites experience significant conformational fluctuations. The large concerted motions obtained from essential dynamics (ED) analysis of MD trajectory can lead to open or close of the substrate binding sites, which are proposed to be linked to the functional properties of Ver112, such as substrate binding, orientation, catalytic, and release. The significant motion in the loop regions that is located opposite the binding sites are considered to play an important role in modulating the dynamics of the substrate binding sites. Furthermore, the bottom of free energy landscape (FEL) of Ver112 are rugged, which is mainly caused by the fluctuations of substrate binding regions and loops located opposite the binding site. In addition, the mechanism underlying the high flexibility and catalytic activity of Ver112 was also discussed. Our simulation study complements the biochemical and structural studies, and provides insight into the dynamics-function relationship of cuticle-degrading serine protease Ver112.
机译:Cuclics降解丝氨酸蛋白酶Ver112,其源自Nematophagous真菌乳酸乳酸钙霉素,已经表现出具有高角质层降解和象征性的活性。我们基于Ver112的晶体结构进行了分子动力学(MD)仿真,以研究其动态特性和大规模的齐全运动。结果表明,Ver112的结构核心显示出小的波动幅度,而衬底结合位点,并且靠近衬底结合位点的区域和与基板结合位点的区域经历了显着的构象波动。从MD轨迹的基本动力学(ED)分析中获得的大的齐齐齐子能可以导致底物结合位点的打开或关闭,这提出与Ver112的功能性能相关,例如底物结合,取向,催化剂和释放。在与结合位点相对的环形区域中的显着运动被认为是在调节衬底结合位点的动态方面发挥重要作用。此外,Ver112的自由能景观(FEL)的底部坚固耐用,主要由基板结合区域的波动和位于结合位点相对的环。此外,还讨论了Ver112的高柔韧性和催化活性的机制。我们的仿真研究补充了生物化学和结构研究,并提供了对角质层降解丝氨酸蛋白酶Ver112的动力学功能关系的洞察。

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