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耳聋肌张力蛋白 1 的表达水平变化影响线粒体形态。

Alterations in expression levels of deafness dystonia protein 1 affect mitochondrial morphology.

机构信息

Interfaculty Institute of Biochemistry, University of Tübingen, 72076 Tübingen, Germany.

出版信息

Hum Mol Genet. 2012 Jan 15;21(2):287-99. doi: 10.1093/hmg/ddr458. Epub 2011 Oct 7.

DOI:10.1093/hmg/ddr458
PMID:21984432
Abstract

Deafness-Dystonia-Optic Neuropathy (DDON) Syndrome is a rare X-linked progressive neurodegenerative disorder resulting from mutations in the TIMM8A gene encoding for the deafness dystonia protein 1 (DDP1). Despite important progress in identifying and characterizing novel mutations in this gene, little is known about the underlying pathomechanisms. Deficiencies in the biogenesis of hTim23 and consecutive alterations in biogenesis of inner membrane and matrix proteins have been proposed to serve as one possible mechanistic explanation. To shed new light on the role of DDP1 in the biogenesis of mammalian mitochondria, we investigated the effects of reduced or elevated DDP1 levels on mitochondrial dynamics and function. Our results show a reduction in the import of β-barrel proteins into mitochondria from cells overexpressing DDP1. This effect was not observed when the DDON-related mutant form DDP1-C66W was overexpressed. Live cell microscopy of primary fibroblasts derived from DDON patients and of DDP1 downregulated HeLa cells displayed alterations of mitochondrial morphology with notable extensions in the length of mitochondrial tubules, whereas overexpression of DDP1 induced the formation of hollow spherical mitochondria. Of note, knockdown of the TIMM8A gene by RNA interference did not show an influence on the oxygen respiration rate and the mitochondrial membrane potential. Taken together, these results suggest that alterations in the levels of DDP1 can affect the morphology of mitochondria and thus shed new light on the pathogenic mechanisms of DDON.

摘要

耳聋-肌张力障碍-视神经病变(DDON)综合征是一种罕见的 X 连锁进行性神经退行性疾病,由编码耳聋肌张力蛋白 1(DDP1)的 TIMM8A 基因突变引起。尽管在鉴定和描述该基因中的新突变方面取得了重要进展,但对潜在的发病机制知之甚少。人们提出,hTim23 的生物发生缺陷以及内膜和基质蛋白生物发生的连续改变可能是一种可能的机制解释。为了深入了解 DDP1 在哺乳动物线粒体生物发生中的作用,我们研究了降低或升高 DDP1 水平对线粒体动力学和功能的影响。我们的结果表明,从过表达 DDP1 的细胞中,β-桶蛋白向线粒体的导入减少。当过表达与 DDON 相关的突变形式 DDP1-C66W 时,没有观察到这种效应。源自 DDON 患者的原代成纤维细胞和 DDP1 下调的 HeLa 细胞的活细胞显微镜显示线粒体形态发生改变,线粒体小管的长度明显延长,而 DDP1 的过表达诱导形成空心球形线粒体。值得注意的是,RNA 干扰敲低 TIMM8A 基因对耗氧量和线粒体膜电位没有影响。总之,这些结果表明,DDP1 水平的改变可能会影响线粒体的形态,从而为 DDON 的发病机制提供新的见解。

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