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肌联蛋白弹性的单分子测量。

Single molecule measurements of titin elasticity.

作者信息

Wang K, Forbes J G, Jin A J

机构信息

Laboratory of Physical Biology, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Room 408, Building 6, Bethesda, MD 20892, USA.

出版信息

Prog Biophys Mol Biol. 2001;77(1):1-44. doi: 10.1016/s0079-6107(01)00009-8.

Abstract

Titin, with a massive single chain of 3--4MDa and multiple modular motifs, spans the half-sarcomere of skeletal and cardiac muscles and serves important, multifaceted functions. In recent years, titin has become a favored subject of single molecule observations by atomic force microscopy (AFM) and laser optical trap (LOT). Here we review these single titin molecule extension studies with an emphasis on understanding their relevance to titin elasticity in muscle function. Some fundamental aspects of the methods for single titin molecule investigations, including the application of dynamic force, the elasticity models for filamentous titin motifs, the technical foundations and calibrations of AFM and LOT, and titin sample preparations are provided. A chronological review of major publications on recent single titin extension observations is presented. This is followed by summary evaluations of titin domain folding/unfolding results and of elastic properties of filamentous titin motifs. Implications of these single titin measurements for muscle physiology/pathology are discussed and forthcoming advances in single titin studies are anticipated.

摘要

肌联蛋白是一条巨大的单链,分子量为3 - 4兆道尔顿,具有多个模块化基序,横跨骨骼肌和心肌的半个肌小节,并发挥着重要的多方面功能。近年来,肌联蛋白已成为原子力显微镜(AFM)和激光光镊(LOT)进行单分子观测的热门对象。在此,我们回顾这些单肌联蛋白分子拉伸研究,重点是理解它们与肌肉功能中肌联蛋白弹性的相关性。文中介绍了单肌联蛋白分子研究方法的一些基本方面,包括动态力的应用、丝状肌联蛋白基序的弹性模型、AFM和LOT的技术基础与校准,以及肌联蛋白样品制备。按时间顺序对近期单肌联蛋白拉伸观测的主要出版物进行了综述。随后对肌联蛋白结构域折叠/去折叠结果以及丝状肌联蛋白基序的弹性特性进行了总结评估。讨论了这些单肌联蛋白测量对肌肉生理学/病理学的意义,并展望了单肌联蛋白研究的未来进展。

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