After the revolution: how is Cryo-EM contributing to muscle research?

被引:0
作者
Marston Bradshaw
Danielle M. Paul
机构
[1] University of Bristol,Department of Physiology & Pharmacology
来源
Journal of Muscle Research and Cell Motility | 2019年 / 40卷
关键词
Cryo-EM; Actin; Thin filament; Myosin; 3D reconstruction;
D O I
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学科分类号
摘要
The technique of electron microscopy (EM) has been fundamental to muscle research since the days of Huxley and Hanson. Direct observation of how proteins in the sarcomere are arranged and visualising the changes that occur upon activation have greatly increased our understanding of function. In the 1980s specimen preparation techniques for biological EM moved away from traditional fixing and staining. The technique known as cryo-electron microscopy (Cryo-EM) was developed, which involves rapidly freezing proteins in liquid ethane which maintains them in a near native state. Within the last 5 years there has been a step change in the achievable resolution using Cryo-EM. This ‘resolution revolution’ can be attributed to advances in detector technology, microscope automation and maximum likelihood image processing. In this article we look at how Cryo-EM has contributed to the field of muscle research in this post revolution era, focussing on recently published high resolution structures of sarcomeric proteins.
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页码:93 / 98
页数:5
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  • [1] Al-Amoudi A(2004)Cryo-electron microscopy of vitreous sections EMBO J 23 3583-3588
  • [2] Chang JJ(2005)Cutting artefacts and cutting process in vitreous sections for cryo-electron microscopy J Struct Biol 150 109-121
  • [3] Leforestier A(2012)Structure of the rigor actin-tropomyosin-myosin complex Cell 150 327-338
  • [4] McDowall A(2019)Mechanism of actin polymerization revealed by cryo-EM structures of actin filaments with three different bound nucleotides Proc Natl Acad Sci USA 116 4265-4274
  • [5] Salamin LM(2017)Cryo-electron microscopy wins chemistry nobel Nature 550 167-228
  • [6] Norlen LP(1988)Cryo-electron microscopy of vitrified specimens Q Rev Biophys 21 129-234
  • [7] Richter K(2000)A robust algorithm for the reconstruction of helical filaments using single-particle methods Ultramicroscopy 85 225-137
  • [8] Blanc NS(1982)Correspondence analysis of aligned images of biological particles J Mol Biol 161 134-532
  • [9] Studer D(1953)The structural basis of the cross-striations in muscle Nature 172 530-176
  • [10] Dubochet J(2017)Helical reconstruction in RELION J Struct Biol 198 163-1444