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Cryo-EM studies of the structure and dynamics of vacuolar-type ATPases

机译:液泡型ATP酶的结构和动力学的低温EM研究

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摘要

Electron cryomicroscopy (cryo-EM) has significantly advanced our understanding of molecular structure in biology. Recent innovations in both hardware and software have made cryo-EM a viable alternative for targets that are not amenable to x-ray crystallography or nuclear magnetic resonance (NMR) spectroscopy. Cryo-EM has even become the method of choice in some situations where x-ray crystallography and NMR spectroscopy are possible but where cryo-EM can determine structures at higher resolution or with less time or effort. Rotary adenosine triphosphatases (ATPases) are crucial to the maintenance of cellular homeostasis. These enzymes couple the synthesis or hydrolysis of adenosine triphosphate to the use or production of a transmembrane electrochemical ion gradient, respectively. However, the membrane-embedded nature and conformational heterogeneity of intact rotary ATPases have prevented their high-resolution structural analysis to date. Recent application of cryo-EM methods to the different types of rotary ATPase has led to sudden advances in understanding the structure and function of these enzymes, revealing significant conformational heterogeneity and characteristic transmembrane α helices that are highly tilted with respect to the membrane. In this Review, we will discuss what has been learned recently about rotary ATPase structure and function, with a particular focus on the vacuolar-type ATPases.
机译:电子低温显微镜(cryo-EM)大大提高了我们对生物学分子结构的理解。硬件和软件方面的最新创新使cryo-EM成为不适合X射线晶体学或核磁共振(NMR)光谱学的目标的可行替代方案。在可能进行X射线晶体学和NMR光谱分析的某些情况下,Cryo-EM甚至已成为选择的方法,而cryo-EM可以在更高分辨率下或更少的时间或精力下确定结构。旋转腺苷三磷酸酶(ATPase)对于维持细胞稳态至关重要。这些酶分别使三磷酸腺苷的合成或水解与跨膜电化学离子梯度的使用或产生结合。然而,完整的旋转ATPases的膜包埋性质和构象异质性至今仍阻止了它们的高分辨率结构分析。对不同类型的旋转ATPase的最近的cryo-EM方法应用已导致在理解这些酶的结构和功能方面的突飞猛进,揭示了显着的构象异质性和相对于膜高度倾斜的特征性跨膜α螺旋。在本综述中,我们将讨论最近了解到的有关旋转ATPase结构和功能的知识,特别是液泡型ATPase。

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