ATP水解
ATP酶
型三磷酸腺脢
化学
费斯特共振能量转移
内质网
动力学(音乐)
生物物理学
离子
离子运输机
分子动力学
农奴
膜
化学物理
荧光
物理
生物化学
计算化学
生物
酶
有机化学
量子力学
声学
作者
Mateusz Dyla,Sara Basse Hansen,Poul Nissen,Magnus Kjærgaard
摘要
Abstract P-type ATPases transport ions across biological membranes against concentration gradients and are essential for all cells. They use the energy from ATP hydrolysis to propel large intramolecular movements, which drive vectorial transport of ions. Tight coordination of the motions of the pump is required to couple the two spatially distant processes of ion binding and ATP hydrolysis. Here, we review our current understanding of the structural dynamics of P-type ATPases, focusing primarily on Ca2+ pumps. We integrate different types of information that report on structural dynamics, primarily time-resolved fluorescence experiments including single-molecule Förster resonance energy transfer and molecular dynamics simulations, and interpret them in the framework provided by the numerous crystal structures of sarco/endoplasmic reticulum Ca2+-ATPase. We discuss the challenges in characterizing the dynamics of membrane pumps, and the likely impact of new technologies on the field.
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