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Multiscale molecular dynamics simulations of membrane remodeling by Bin/Amphiphysin/Rvs family proteins
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作者 陈骏 文豪华 +1 位作者 鲁兰原 范俊 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第1期349-359,共11页
Membrane curvature is no longer thought of as a passive property of the membrane; rather, it is considered as an ac- tive, regulated state that serves various purposes in the cell such as between cells and organelle d... Membrane curvature is no longer thought of as a passive property of the membrane; rather, it is considered as an ac- tive, regulated state that serves various purposes in the cell such as between cells and organelle definition. While transport is usually mediated by tiny membrane bubbles known as vesicles or membrane tubules, such communication requires complex interplay between the lipid bilayers and cytosolic proteins such as members of the Bin/Amphiphysin/Rvs (BAR) superfam- ily of proteins. With rapid developments in novel experimental techniques, membrane remodeling has become a rapidly emerging new field in recent years. Molecular dynamics (MD) simulations are important tools for obtaining atomistic information regarding the structural and dynamic aspects of biological systems and for understanding the physics-related aspects. The availability of more sophisticated experimental data poses challenges to the theoretical community for devel- oping novel theoretical and computational techniques that can be used to better interpret the experimental results to obtain further functional insights. In this review, we summarize the general mechanisms underlying membrane remodeling con- trolled or mediated by proteins. While studies combining experiments and molecular dynamics simulations recall existing mechanistic models, concurrently, they extend the role of different BAR domain proteins during membrane remodeling pro- cesses. We review these recent findings, focusing on how multiscale molecular dynamics simulations aid in understanding the physical basis of BAR domain proteins, as a representative of membrane-remodeling proteins. 展开更多
关键词 membrane curvature membrane remodeling protein molecular dynamics COARSE-GRAINING
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压水堆材料与结构中的关键力学问题 被引量:1
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作者 王彪 张纯禹 +2 位作者 马显锋 赖侃 文豪华 《中国科学:物理学、力学、天文学》 CSCD 北大核心 2019年第11期2-19,共18页
积极发展核电是保持我国能源安全的重大战略.核材料在高温、辐照和化学腐蚀环境下的力学性能及其退化决定着关键核结构和核设备的性能及寿命,进而决定了整个反应堆及核电厂的经济性与安全性.由于尚未完全掌握核材料和核结构在复杂环境... 积极发展核电是保持我国能源安全的重大战略.核材料在高温、辐照和化学腐蚀环境下的力学性能及其退化决定着关键核结构和核设备的性能及寿命,进而决定了整个反应堆及核电厂的经济性与安全性.由于尚未完全掌握核材料和核结构在复杂环境下的力学行为特性,目前仍难以定量地回答涉及反应堆设计、建造、运行、维护以及退役等阶段的诸多问题.为对其中的关键力学问题进行梳理,本文首先从原理上介绍了辐照效应,然后以主流的压水堆为研究对象,按承受辐照作用和化学作用从强到弱的顺序,依次介绍核燃料、反应堆堆内构件以及反应堆安全壳等关键核结构在设计和性能分析方面的研究现状以及面临的挑战.为便于应用和参考,对燃料材料的本构模型、结构材料的应力腐蚀模型、流固耦合问题的数值求解方法以及核电设备强度评估准则等典型结果进行了归纳和总结.最后对压水堆实施全生命周期管理亟需突破的难题进行了总结.在数值模拟方面需要突破的瓶颈是核材料力学行为的多尺度模拟方法,在实验研究方面需要突破的瓶颈是新型、高效的辐照实验技术. 展开更多
关键词 压水堆 核材料 核结构 辐照效应 力学性能
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