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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >ATP synthases from archaea: The beauty of a molecular motor
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ATP synthases from archaea: The beauty of a molecular motor

机译:来自古细菌的ATP合成酶:分子马达的美丽

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摘要

Archaea live under different environmental conditions, such as high salinity, extreme pHs and cold or hot temperatures. How energy is conserved under such harsh environmental conditions is a major question in cellular bioenergetics of archaea. The key enzymes in energy conservation are the archaeal A1AO ATP synthases, a class of ATP synthases distinct from the F1FO ATP synthase ATP synthase found in bacteria, mitochondria and chloroplasts and the V1VO ATPases of eukaryotes. A1AO ATP synthases have distinct structural features such as a collar-like structure, an extended central stalk, and two peripheral stalks possibly stabilizing the A1AO ATP synthase during rotation in ATP synthesis/hydrolysis at high temperatures as well as to provide the storage of transient elastic energy during ion-pumping and ATP synthesis/-hydrolysis. High resolution structures of individual subunits and subcomplexes have been obtained in recent years that shed new light on the function and mechanism of this unique class of ATP synthases. An outstanding feature of archaeal A1AO ATP synthases is their diversity in size of rotor subunits and the coupling ion used for ATP synthesis with H+, Na+ or even H+ and Na+ using enzymes. The evolution of the H+ binding site to a Na+ binding site and its implications for the energy metabolism and physiology of the cell are discussed.
机译:古细菌生活在不同的环境条件下,例如高盐度,极端的pH值以及冷热温度。在如此恶劣的环境条件下如何保存能量是古细菌细胞生物能学中的一个主要问题。节能的关键酶是古细菌A1AO ATP合酶,与细菌,线粒体和叶绿体中的F1FO ATP合酶ATP合酶和真核生物的V1VO ATPase不同的一类ATP合酶。 A1AO ATP合酶具有独特的结构特征,例如领状结构,扩展的中心茎杆和两个外围茎杆,可能在高温下ATP合成/水解过程中的旋转过程中稳定A1AO ATP合酶,并提供瞬态弹性的存储离子泵和ATP合成/水解过程中的能量。近年来,获得了单个亚基和亚复合物的高分辨率结构,为这种独特的ATP合酶类的功能和机理提供了新的思路。古细菌A1AO ATP合成酶的一个突出特点是其转子亚基大小的多样性以及用于使用酶与H +,Na +甚至H +和Na +进行ATP合成的偶联离子。讨论了H +结合位点向Na +结合位点的演变及其对细胞能量代谢和生理的影响。

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