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Molecular Biomechanics: The Molecular Basis of How Forces Regulate Cellular Function

机译:分子生物力学:力如何调节细胞功能的分子基础

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Recent advances have led to the emergence of molecular biomechanics as an essential element of modern biology. These efforts focus on theoretical and experimental studies of the mechanics of proteins and nucleic acids, and the understanding of the molecular mechanisms of stress transmission, mechanosensing and mechanotransduction in living cells. In particular, single-molecule biomechanics studies of proteins and DNA, and mechanochemical coupling in biomolecular motors have demonstrated the critical importance of molecular mechanics as a new frontier in bioengineering and life sciences. To stimulate a more systematic study of the basic issues in molecular biomechanics, and attract a broader range of researchers to enter this emerging field, here we discuss its significance and relevance, describe the important issues to be addressed and the most critical questions to be answered, summarize both experimental and theoretical/computational challenges, and identify some short-term and long-term goals for the field. The needs to train young researchers in molecular biomechanics with a broader knowledge base, and to bridge and integrate molecular, subcellular and cellular level studies of biomechanics are articulated.
机译:最近的进展导致分子生物力学作为现代生物学的基本要素的出现。这些努力集中于蛋白质和核酸的力学机理的理论和实验研究,以及对活细胞中应力传递,机械传感和机械转导的分子机制的理解。特别是,蛋白质和DNA的单分子生物力学研究以及生物分子马达中的机械化学偶联已证明分子力学作为生物工程和生命科学领域的一个新领域至关重要。为了激发对分子生物力学基本问题的更系统的研究,并吸引更广泛的研究人员进入这一新兴领域,在这里我们讨论其重要性和相关性,描述要解决的重要问题和需要回答的最关键的问题,总结实验和理论/计算方面的挑战,并确定该领域的一些短期和长期目标。阐明了需要培训年轻的研究人员以更广泛的知识基础进行分子生物力学,以及桥接和整合生物力学的分子,亚细胞和细胞水平研究。

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