首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Presence of a mitochondrial-type 70-kDa heat shock protein in Trichomonas vaginalis suggests a very early mitochondrial endosymbiosis in eukaryotes
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Presence of a mitochondrial-type 70-kDa heat shock protein in Trichomonas vaginalis suggests a very early mitochondrial endosymbiosis in eukaryotes

机译:线粒体型70 kDa热休克蛋白的存在 阴道毛滴虫建议很早 线粒体内共生真核生物

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摘要

Molecular phylogenetic analyses, based mainly on ribosomal RNA, show that three amitochondriate protist lineages, diplomonads, microsporidia, and trichomonads, emerge consistently at the base of the eukaryotic tree before groups having mitochondria. This suggests that these groups could have diverged before the mitochondrial endosymbiosis. Nevertheless, since all these organisms live in anaerobic environments, the absence of mitochondria might be due to secondary loss, as demonstrated for the later emerging eukaryote Entamoeba histolytica. We have now isolated from Trichomonas vaginalis a gene encoding a chaperone protein (HSP70) that in other lineages is addressed to the mitochondrial compartment. The phylogenetic reconstruction unambiguously located this HSP70 within a large set of mitochondrial sequences, itself a sister-group of α-purple bacteria. In addition, the T. vaginalis protein exhibits the GDAWV sequence signature, so far exclusively found in mitochondrial HSP70 and in proteobacterial dnaK. Thus mitochondrial endosymbiosis could have occurred earlier than previously assumed. The trichomonad double membrane-bounded organelles, the hydrogenosomes, could have evolved from mitochondria.
机译:分子系统发育分析主要基于核糖体RNA,显示三个线粒体原生生物谱系,双线虫,微孢子虫和滴虫,在具有线粒体的群体之前始终出现在真核树的底部。这表明这些群体在线粒体内共生之前可能已经分化。然而,由于所有这些生物都生活在厌氧环境中,因此线粒体的缺乏可能是由于继发性损失,正如后来出现的真核生物组织变形虫所证明的那样。现在,我们从阴道毛滴虫中分离出了一种编码伴侣蛋白(HSP70)的基因,该蛋白在其他谱系中都指向线粒体区室。系统发育重建明确地将该HSP70定位在大量线粒体序列中,该线粒体本身就是α紫色细菌的姐妹组。此外,阴道隐丝线虫蛋白还具有GDAWV序列特征,迄今为止仅在线粒体HSP70和蛋白细菌dnaK中发现。因此线粒体内共生可能有 发生时间早于先前的假设。滴虫双 膜结合的细胞器,氢核小体,可能已经进化 来自线粒体。

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