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新型线粒体蛋白DNAJC11中的剪接突变导致与嵴紊乱相关的运动神经元病变以及小鼠的淋巴样异常。

A splicing mutation in the novel mitochondrial protein DNAJC11 causes motor neuron pathology associated with cristae disorganization, and lymphoid abnormalities in mice.

作者信息

Ioakeimidis Fotis, Ott Christine, Kozjak-Pavlovic Vera, Violitzi Foteini, Rinotas Vagelis, Makrinou Eleni, Eliopoulos Elias, Fasseas Costas, Kollias George, Douni Eleni

机构信息

Department of Biotechnology, Agricultural University of Athens, Athens, Greece; Division of Immunology, Biomedical Sciences Research Center "Alexander Fleming", Vari, Greece.

Department of Microbiology, Biocenter, University of Würzburg, Würzburg, Germany.

出版信息

PLoS One. 2014 Aug 11;9(8):e104237. doi: 10.1371/journal.pone.0104237. eCollection 2014.

Abstract

Mitochondrial structure and function is emerging as a major contributor to neuromuscular disease, highlighting the need for the complete elucidation of the underlying molecular and pathophysiological mechanisms. Following a forward genetics approach with N-ethyl-N-nitrosourea (ENU)-mediated random mutagenesis, we identified a novel mouse model of autosomal recessive neuromuscular disease caused by a splice-site hypomorphic mutation in a novel gene of unknown function, DnaJC11. Recent findings have demonstrated that DNAJC11 protein co-immunoprecipitates with proteins of the mitochondrial contact site (MICOS) complex involved in the formation of mitochondrial cristae and cristae junctions. Homozygous mutant mice developed locomotion defects, muscle weakness, spasticity, limb tremor, leucopenia, thymic and splenic hypoplasia, general wasting and early lethality. Neuropathological analysis showed severe vacuolation of the motor neurons in the spinal cord, originating from dilatations of the endoplasmic reticulum and notably from mitochondria that had lost their proper inner membrane organization. The causal role of the identified mutation in DnaJC11 was verified in rescue experiments by overexpressing the human ortholog. The full length 63 kDa isoform of human DNAJC11 was shown to localize in the periphery of the mitochondrial outer membrane whereas putative additional isoforms displayed differential submitochondrial localization. Moreover, we showed that DNAJC11 is assembled in a high molecular weight complex, similarly to mitofilin and that downregulation of mitofilin or SAM50 affected the levels of DNAJC11 in HeLa cells. Our findings provide the first mouse mutant for a putative MICOS protein and establish a link between DNAJC11 and neuromuscular diseases.

摘要

线粒体的结构和功能正逐渐成为神经肌肉疾病的一个主要促成因素,这凸显了全面阐明其潜在分子和病理生理机制的必要性。通过采用N-乙基-N-亚硝基脲(ENU)介导的随机诱变的正向遗传学方法,我们鉴定出一种常染色体隐性神经肌肉疾病的新型小鼠模型,该疾病由一个功能未知的新基因DnaJC11中的剪接位点低表达突变引起。最近的研究结果表明,DNAJC11蛋白与参与线粒体嵴和嵴连接形成的线粒体接触位点(MICOS)复合体的蛋白进行共免疫沉淀。纯合突变小鼠出现运动缺陷、肌肉无力、痉挛、肢体震颤、白细胞减少、胸腺和脾脏发育不全、全身消瘦及早期死亡。神经病理学分析显示脊髓运动神经元严重空泡化,这源于内质网扩张,尤其是源于失去正常内膜组织的线粒体。通过过表达人类直系同源基因进行的拯救实验验证了DnaJC11中已鉴定突变的因果作用。人类DNAJC11的全长63 kDa异构体定位于线粒体外膜周边,而推测的其他异构体则表现出不同的亚线粒体定位。此外,我们发现DNAJC11与线粒体融合蛋白(mitofilin)一样组装成高分子量复合体,并且在HeLa细胞中下调线粒体融合蛋白或SAM50会影响DNAJC11的水平。我们的研究结果为一种推测的MICOS蛋白提供了首个小鼠突变体,并建立了DNAJC11与神经肌肉疾病之间的联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17db/4128653/8c6670a6c69f/pone.0104237.g002.jpg

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