论文标题
ATP合酶:进化,能量和膜相互作用
ATP synthase: evolution, energetics, and membrane interactions
论文作者
论文摘要
生命的“通用能量货币” ATP的合成是生物系统中最普遍的化学反应,并且负责从神经脉冲传播到DNA合成几乎所有细胞过程。 ATP合成酶,执行这项无尽任务的酶家族几乎与他们负责制造的富含能量的分子一样无处不在。 F型ATP合酶(F-ATPase)在生命的每个领域都发现,并且据信早于15亿年前的这些血统的差异。因此,这些酶促进了在各种栖息地中生物的存活,从深海热通风口到人类肠道。在这篇综述中,我们概述了F型ATPases的结构和功能的当前知识,并强调了在整个分类单元中表征的几种改编。我们强调了在酶特定的脂质环境中研究这些特征的重要性:正如有机体及其物理环境之间的相互作用塑造了其进化轨迹一样,ATPases也受到它们居住的膜的影响。我们认为,对膜蛋白(包括ATP合酶)的结构,功能和演变的全面理解需要这种综合方法。
The synthesis of ATP, life's 'universal energy currency', is the most prevalent chemical reaction in biological systems, and is responsible for fueling nearly all cellular processes, from nerve impulse propagation to DNA synthesis. ATP synthases, the family of enzymes that carry out this endless task, are nearly as ubiquitous as the energy-laden molecule they are responsible for making. The F-type ATP synthase (F-ATPase) is found in every domain of life, and is believed to predate the divergence of these lineages over 1.5 billion years ago. These enzymes have therefore facilitated the survival of organisms in a wide range of habitats, ranging from the deep-sea thermal vents to the human intestine. In this review, we present an overview of the current knowledge of the structure and function of F-type ATPases, highlighting several adaptations that have been characterized across taxa. We emphasize the importance of studying these features within the context of the enzyme's particular lipid environment: Just as the interactions between an organism and its physical environment shape its evolutionary trajectory, ATPases are impacted by the membranes within which they reside. We argue that a comprehensive understanding of the structure, function, and evolution of membrane proteins -- including ATP synthase -- requires such an integrative approach.