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Fe-S cluster assembly in the supergroup Excavata

机译:FE-S集群组装在超级组Eccavata中

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摘要

The majority of established model organisms belong to the supergroup Opisthokonta, which includes yeasts and animals. While enlightening, this focus has neglected protists, organisms that represent the bulk of eukaryotic diversity and are often regarded as primitive eukaryotes. One of these is the "supergroup" Excavata, which comprises unicellular flagellates of diverse lifestyles and contains species of medical importance, such as Trichomonas, Giardia, Naegleria, Trypanosoma and Leishmania. Excavata exhibits a continuum in mitochondrial forms, ranging from classical aerobic, cristae-bearing mitochondria to mitochondria-related organelles, such as hydrogenosomes and mitosomes, to the extreme case of a complete absence of the organelle. All forms of mitochondria house a machinery for the assembly of Fe-S clusters, ancient cofactors required in various biochemical activities needed to sustain every extant cell. In this review, we survey what is known about the Fe-S cluster assembly in the supergroup Excavata. We aim to bring attention to the diversity found in this group, reflected in gene losses and gains that have shaped the Fe-S cluster biogenesis pathways.
机译:大多数已建立的模式生物属于超类群Opisthokonta,包括酵母和动物。这种关注虽然很有启发性,但却忽略了原生生物,它们代表了真核生物多样性的大部分,通常被视为原始真核生物。其中一个是“超群”Excavata,它由多种生活方式的单细胞鞭毛虫组成,包含具有医学重要性的物种,如毛滴虫、贾第虫、奈氏体、锥虫和利什曼原虫。Excavata展示了线粒体形式的连续性,从经典的有氧、带有嵴的线粒体到与线粒体相关的细胞器,如氢化酶体和有丝分裂体,再到细胞器完全缺失的极端情况。所有形式的线粒体都有一个组装铁硫簇的机器,铁硫簇是维持现存细胞所需的各种生化活动中所需的古老辅助因子。在这篇综述中,我们调查了关于超群Excavata中Fe-S团簇组装的已知情况。我们的目的是让人们注意到在这一群体中发现的多样性,这种多样性反映在形成铁硫簇生物发生途径的基因丢失和增加中。

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