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首页> 外文期刊>Journal of Cell Science >The a2 mating-type-locus gene lga2 of Ustilago maydis interferes with mitochondrial dynamics and fusion, partially in dependence on a Dnm1-like fission component.
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The a2 mating-type-locus gene lga2 of Ustilago maydis interferes with mitochondrial dynamics and fusion, partially in dependence on a Dnm1-like fission component.

机译:Ustilago的a2交配型基因座基因lga2可能会干扰线粒体的动力学和融合,部分取决于Dnm1样裂变成分。

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The a2 mating-type-locus gene lga2 of the basidiomycete Ustilago maydis encodes a mitochondrial protein that interferes with mitochondrial morphology and integrity, and that plays a role in uniparental inheritance of mitochondrial DNA. To address the mode of action of Lga2, we investigated its Dnm1 (a dynamin-related protein)-dependent effects. Here, we demonstrate that Dnm1 functions as a mitochondrial fission component in U. maydis and mediates Lga2-induced mitochondrial fragmentation. Mitochondrial fusion occurred very inefficiently in matings of U. maydis wild-type strains, but was strongly stimulated in the absence of dnm1 and highest in either wild-type or Deltadnm1 combinations when the a2 partner was deleted in lga2. This indicates that Dnm1 plays a central role in opposing mitochondrial fusion in response to endogenous lga2 expression and that Lga2 additionally inhibits fusion in a dnm1-independent manner. Our results further show that Lga2 does not stimulate increased turnover of the putative fusion protein Fzo1 and causes mitochondrial branching, loss of mitochondrial DNA and fitness reduction independently of dnm1. We conclude that Lga2 acts upstream of Dnm1, but controls mitochondrial integrity independently of Dnm1-mediated fission. In addition, we demonstrate a role of dnm1 in fungal virulence.
机译:担子菌Ustilago的a2交配型基因座基因lga2编码线粒体蛋白,该蛋白干扰线粒体的形态和完整性,并在线粒体DNA的单亲遗传中起作用。为了解决Lga2的作用方式,我们研究了其Dnm1(与动力相关的蛋白质)依赖性作用。在这里,我们证明Dnm1充当U. maydis中的线粒体裂变成分,并介导Lga2诱导的线粒体断裂。线粒体融合在U. maydis野生型菌株的交配中效率非常低,但是在不存在dnm1的情况下受到强烈刺激,当在lga2中缺失a2伴侣时,野生型或Deltadnm1组合中的线粒体融合最高。这表明Dnm1在响应内源性lga2表达的反线粒体融合中起着核心作用,而Lga2另外以dnm1独立的方式抑制融合。我们的结果进一步表明,Lga2不会刺激假定的融合蛋白Fzo1的周转率增加,并且会导致线粒体分支,线粒体DNA的丢失和dnm1的独立性降低。我们得出的结论是,Lga2在Dnm1上游起作用,但独立于Dnm1介导的裂变控制线粒体完整性。此外,我们证明了dnm1在真菌毒力中的作用。

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