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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Biochemical and evolutionary aspects of anaerobically functioning mitochondria
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Biochemical and evolutionary aspects of anaerobically functioning mitochondria

机译:厌氧功能线粒体的生化和进化方面

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Mitochondria are usually considered to be the powerhouses of the cell and to be responsible for the aerobic production of ATP. However, many eukaryotic organisms are known to possess anaerobically functioning mitochondria, which differ significantly from classical aerobically functioning mitochondria. Recently, functional and phylogenetic studies on some enzymes involved clearly indicated an unexpected evolutionary relationship between these anaerobically functioning mitochondria and the classical aerobic type. Mitochondria evolved by an endosymbiotic event between an anaerobically functioning archaebacterial host and an aerobic alpha-proteobacterium. However, true anaerobically functioning mitochondria, such as found in parasitic helminths, and some lower marine organisms, most likely did not originate directly from the pluripotent ancestral mitochondrion, but arose later in evolution from the aerobic type of mitochondria after these were already adapted to an aerobic way of life by losing their anaerobic capacities. This review will focus on some biochemical and evolutionary aspects of these fermentative mitochondria, with special attention to fumarate reductase, the synthesis of the rhodoquinone involved, and the enzymes involved in acetate production (acetate : succinate CoA-transferase and succinyl CoA-synthetase). [References: 46]
机译:线粒体通常被认为是细胞的动力源,并负责ATP的有氧产生。然而,已知许多真核生物具有厌氧功能的线粒体,这与经典的需氧功能的线粒体有很大不同。最近,对涉及的某些酶的功能和系统发育研究清楚地表明,这些厌氧功能的线粒体与经典有氧类型之间存在出乎意料的进化关系。线粒体通过厌氧功能的古细菌宿主与需氧α-变形杆菌之间的共生共生事件而进化。但是,真正的无氧功能线粒体(例如在寄生虫中的线虫和一些低等海洋生物中发现)极有可能不是直接由多能祖先线粒体产生的,而是后来在有氧类型的线粒体中进化而来的,它们已经适应了有氧生活方式失去了厌氧能力。这篇综述将侧重于这些发酵线粒体的一些生化和进化方面,特别关注富马酸酯还原酶,所涉及的铑醌的合成以及参与乙酸生产的酶(乙酸:琥珀酸CoA转移酶和琥珀酰CoA合成酶)。 [参考:46]

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