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Polymorphism, Heteroplasmy, Mitochondrial Fusion and Diabetes

机译:多态性,异质性,线粒体融合和糖尿病

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Mitochondrial DNA (mtDNA) is highly susceptible to mutations that result in polymorphisms and diseases including diabetes. We analyzed heteroplasmy, polymorphisms related to diabetes, and complementation by fusogenic proteins. Cytoplast fusion and microinjection allow, defects in mutated mtDNA inside a heteroplasmic cell to be complemented by fusing two mitochondria via human fusogenic proteins. We characterized three hfzos as well as two OPA1s that prevent apoptosis. Two coiled coil domains and GTPase domains in these fusogenic proteins regulate membrane fusion. The hfzo genes were expressed mainly in the brain and in muscle that are postmitotic, but not in the pancreas. Under the in.uence of polymorphisms of mtDNA and nDNA, the vicious circle of reactive oxygen species and mutations in cell can be alleviated by mitochondrial fusion.
机译:线粒体DNA(mtDNA)对导致多态性和包括糖尿病在内的多种疾病的突变高度敏感。我们分析了异质性,与糖尿病相关的多态性以及融合蛋白的互补作用。细胞质融合和显微注射允许通过人类融合蛋白融合两个线粒体来弥补异质细胞内部突变mtDNA的缺陷。我们表征了三个hfzos以及两个防止凋亡的OPA1。这些融合蛋白中的两个卷曲螺旋结构域和GTPase结构域调节膜融合。 hfzo基因主要在有丝分裂后的大脑和肌肉中表达,但在胰腺中不表达。在线粒体DNA和nDNA多态性的影响下,线粒体融合可以减轻活性氧的恶性循环和细胞中的突变。

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