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首页> 外文期刊>Eukaryotic cell >Two Dictyostelium Orthologs of the Prokaryotic Cell Division Protein FtsZ Localize to Mitochondria and Are Required for the Maintenance of Normal Mitochondrial Morphology
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Two Dictyostelium Orthologs of the Prokaryotic Cell Division Protein FtsZ Localize to Mitochondria and Are Required for the Maintenance of Normal Mitochondrial Morphology

机译:原核细胞分裂蛋白FtsZ的两个双歧杆菌直系同源基因定位于线粒体,是维持正常线粒体形态所必需的

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In bacteria, the protein FtsZ is the principal component of a ring that constricts the cell at division. Though all mitochondria probably arose through a single, ancient bacterial endosymbiosis, the mitochondria of only certain protists appear to have retained FtsZ, and the protein is absent from the mitochondria of fungi, animals, and higher plants. We have investigated the role that FtsZ plays in mitochondrial division in the genetically tractable protist Dictyostelium discoideum, which has two nuclearly encoded FtsZs, FszA and FszB, that are targeted to the inside of mitochondria. In most wild-type amoebae, the mitochondria are spherical or rod-shaped, but in fsz-null mutants they become elongated into tubules, indicating that a decrease in mitochondrial division has occurred. In support of this role in organelle division, antibodies to FszA and FszA-green fluorescent protein (GFP) show belts and puncta at multiple places along the mitochondria, which may define future or recent sites of division. FszB-GFP, in contrast, locates to an electron-dense, submitochondrial body usually located at one end of the organelle, but how it functions during division is unclear. This is the first demonstration of two differentially localized FtsZs within the one organelle, and it points to a divergence in the roles of these two proteins.
机译:在细菌中,蛋白质FtsZ是环的主要成分,该环在分裂时会收缩细胞。尽管所有线粒体可能都是通过单一的古老细菌内共生而产生的,但只有某些原生生物的线粒体似乎保留了FtsZ,真菌,动物和高等植物的线粒体中不存在该蛋白质。我们已经研究了FtsZ在遗传易处理的原生质Dictyostelium discoideum 中的线粒体分裂中所起的作用,其中Dictyostelium discoideum 具有两个核编码的FtsZ,FszA和FszB,它们靶向线粒体内部。在大多数野生型变形虫中,线粒体为球形或杆状,但在 fsz -null突变体中,它们拉长为细管,表明线粒体分裂已减少。为了支持这种在细胞器分裂中的作用,针对FszA和FszA-绿色荧光蛋白(GFP)的抗体在沿线粒体的多个位置显示带状和点状,这可能定义了未来或最近的分裂位点。相比之下,FszB-GFP位于通常位于细胞器一端的电子致密线粒体,但尚不清楚其在分裂过程中如何发挥作用。这是一个细胞器中两个差异定位的FtsZ的首次展示,它表明这两种蛋白质的作用存在差异。

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