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Mechanical Signaling on the Single Protein Level Studied Using Steered Molecular Dynamics

机译:操纵分子动力学研究单一蛋白质水平的机械信号传递

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摘要

Efficient communication between the cell and its external environment is of the utmost importance to the function of multicellular organisms. While signaling events can be generally characterized as information exchange by means of controlled energy conversion, research efforts have hitherto mainly been concerned with mechanisms involving chemical and electrical energy transfer. Here, we review recent computational efforts addressing the function of mechanical force in signal transduction. Specifically, we focus on the role of steered molecular dynamics (SMD) simulations in providing details at the atomic level on a group of protein domains, which play a fundamental role in signal exchange by responding properly to mechanical strain. We start by giving a brief introduction to the SMD technique and general properties of mechanically stable protein folds, followed by specific examples illustrating three general regimes of signal transfer utilizing mechanical energy: purely mechanical, mechanical to chemical, and chemical to mechanical. Whenever possible the physiological importance of the example at hand is stressed to highlight the diversity of the processes in which mechanical signaling plays a key role. We also provide an overview of future challenges and perspectives for this rapidly developing field.
机译:细胞与其外部环境之间的有效通讯对于多细胞生物的功能至关重要。尽管信号事件通常可以通过控制能量转换来表征为信息交换,但迄今为止,研究工作主要涉及涉及化学和电能传输的机制。在这里,我们回顾了解决机械力在信号转导中作用的最新计算成果。具体来说,我们专注于操纵分子动力学(SMD)模拟在提供一组蛋白质域原子级详细信息方面的作用,这些蛋白质域通过适当响应机械应变在信号交换中起着基本作用。我们首先简要介绍SMD技术和机械稳定的蛋白质折叠的一般特性,然后通过具体示例说明利用机械能进行信号传递的三种一般方式:纯机械,机械到化学以及化学到机械。只要有可能,就强调本例的生理重要性,以突出其中机械信号发挥关键作用的过程的多样性。我们还概述了这个快速发展领域的未来挑战和前景。

著录项

  • 来源
    《Cell Biochemistry and Biophysics 》 |2009年第3期| 141-152| 共12页
  • 作者单位

    Bioinformatics Program Department of Bioengineering University of Illinois at Chicago Chicago IL 60607 USA;

    Bioinformatics Program Department of Bioengineering University of Illinois at Chicago Chicago IL 60607 USA;

    Bioinformatics Program Department of Bioengineering University of Illinois at Chicago Chicago IL 60607 USA;

    Bioinformatics Program Department of Bioengineering University of Illinois at Chicago Chicago IL 60607 USA;

    Bioinformatics Program Department of Bioengineering University of Illinois at Chicago Chicago IL 60607 USA;

    Bioinformatics Program Department of Bioengineering University of Illinois at Chicago Chicago IL 60607 USA;

    Bioinformatics Program Department of Bioengineering University of Illinois at Chicago Chicago IL 60607 USA;

    Bioinformatics Program Department of Bioengineering University of Illinois at Chicago Chicago IL 60607 USA;

    Bioinformatics Program Department of Bioengineering University of Illinois at Chicago Chicago IL 60607 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Steered molecular dynamics SMD; Force signaling; Titin; Solvent effect; Signal transduction; Mechanical proteins;

    机译:分子动力学SMD;力信号;Titin;溶剂效应;信号转导;机械蛋白;

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