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砷作为生物能量底物。

Arsenics as bioenergetic substrates.

作者信息

van Lis Robert, Nitschke Wolfgang, Duval Simon, Schoepp-Cothenet Barbara

机构信息

Laboratoire de Bioénergétique et Ingénierie des Protéines UMR 7281 CNRS/AMU, FR3479, F-13402 Marseille Cedex 20, France.

出版信息

Biochim Biophys Acta. 2013 Feb;1827(2):176-88. doi: 10.1016/j.bbabio.2012.08.007. Epub 2012 Sep 7.

Abstract

Although at low concentrations, arsenic commonly occurs naturally as a local geological constituent. Whereas both arsenate and arsenite are strongly toxic to life, a number of prokaryotes use these compounds as electron acceptors or donors, respectively, for bioenergetic purposes via respiratory arsenate reductase, arsenite oxidase and alternative arsenite oxidase. The recent burst in discovered arsenite oxidizing and arsenate respiring microbes suggests the arsenic bioenergetic metabolisms to be anything but exotic. The first goal of the present review is to bring to light the widespread distribution and diversity of these metabolizing pathways. The second goal is to present an evolutionary analysis of these diverse energetic pathways. Taking into account not only the available data on the arsenic metabolizing enzymes and their phylogenetical relatives but also the palaeogeochemical records, we propose a crucial role of arsenite oxidation via arsenite oxidase in primordial life. This article is part of a Special Issue entitled: The evolutionary aspects of bioenergetic systems.

摘要

尽管在低浓度下,砷通常作为一种局部地质成分自然存在。砷酸盐和亚砷酸盐对生命都具有很强的毒性,但一些原核生物分别通过呼吸型砷酸盐还原酶、亚砷酸盐氧化酶和替代亚砷酸盐氧化酶,将这些化合物用作生物能量代谢的电子受体或供体。最近发现的亚砷酸盐氧化和砷酸盐呼吸微生物数量的激增表明,砷生物能量代谢绝非罕见。本综述的首要目标是揭示这些代谢途径的广泛分布和多样性。第二个目标是对这些多样的能量代谢途径进行进化分析。不仅考虑到关于砷代谢酶及其系统发育相关物的现有数据,还考虑到古地球化学记录,我们提出通过亚砷酸盐氧化酶进行的亚砷酸盐氧化在原始生命中起着关键作用。本文是名为“生物能量系统的进化方面”的特刊的一部分。

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