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首页> 外文期刊>Journal of Muscle Research and Cell Motility >After the revolution: how is Cryo-EM contributing to muscle research?
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After the revolution: how is Cryo-EM contributing to muscle research?

机译:革命后:如何促成肌肉研究?

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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.
机译:电子显微镜(EM)的技术自赫ux和汉森的日子以来对肌肉研究至关重要。直接观察SARCARERE中的蛋白质如何安排和可视化激活后发生的变化,大大提高了我们对功能的理解。在20世纪80年代,生物的标本制备技术远离传统的固定和染色。开发了称为冷冻电子显微镜(Cryo-EM)的技术,涉及在液体乙烷中快速冷冻蛋白质,其将它们保持在近天然状态。在过去的5年内,使用Cryo-em可以实现可实现的分辨率的一步变化。这种“解决方案革命”可归因于检测器技术的进步,显微镜自动化和最大似然图像处理。在本文中,我们看看Cryo-Em如何为这一后革命时代的肌肉研究领域做出贡献,侧重于最近公布的SARComeric蛋白的高分辨率结构。

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