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一个 MRPL24 基因的纯合突变导致了一种复杂的运动障碍,并影响了线粒体核糖体的组装。

A homozygous MRPL24 mutation causes a complex movement disorder and affects the mitoribosome assembly.

机构信息

Unit of Muscular and Neurodegenerative Disorders, Laboratory of Molecular Medicine, Bambino Gesù Children's Hospital, IRCCS, Rome, Italy.

Molecular Medicine & Neurogenetics, IRCCS Fondazione Stella Maris, Pisa, Italy.

出版信息

Neurobiol Dis. 2020 Jul;141:104880. doi: 10.1016/j.nbd.2020.104880. Epub 2020 Apr 25.

DOI:10.1016/j.nbd.2020.104880
PMID:32344152
Abstract

Mitochondrial ribosomal protein large 24 (MRPL24) is 1 of the 82 protein components of mitochondrial ribosomes, playing an essential role in the mitochondrial translation process. We report here on a baby girl with cerebellar atrophy, choreoathetosis of limbs and face, intellectual disability and a combined defect of complexes I and IV in muscle biopsy, caused by a homozygous missense mutation identified in MRPL24. The variant predicts a Leu91Pro substitution at an evolutionarily conserved site. Using human mutant cells and the zebrafish model, we demonstrated the pathological role of the identified variant. In fact, in fibroblasts we observed a significant reduction of MRPL24 protein and of mitochondrial respiratory chain complex I and IV subunits, as well a markedly reduced synthesis of the mtDNA-encoded peptides. In zebrafish we demonstrated that the orthologue gene is expressed in metabolically active tissues, and that gene knockdown induced locomotion impairment, structural defects and low ATP production. The motor phenotype was complemented by human WT but not mutant cRNA. Moreover, sucrose density gradient fractionation showed perturbed assembly of large subunit mitoribosomal proteins, suggesting that the mutation leads to a conformational change in MRPL24, which is expected to cause an aberrant interaction of the protein with other components of the 39S mitoribosomal subunit.

摘要

线粒体核糖体蛋白大亚基 24(MRPL24)是线粒体核糖体的 82 种蛋白成分之一,在线粒体翻译过程中发挥着重要作用。我们在此报告了一名小脑萎缩、四肢和面部舞蹈手足徐动症、智力障碍的女婴,其肌肉活检显示复合体 I 和 IV 联合缺陷,这是由 MRPL24 中的纯合错义突变引起的。该变体预测在进化上保守的位点发生 Leu91Pro 取代。使用人类突变细胞和斑马鱼模型,我们证明了所鉴定变体的病理作用。事实上,在成纤维细胞中,我们观察到 MRPL24 蛋白和线粒体呼吸链复合物 I 和 IV 亚基的显著减少,以及 mtDNA 编码肽的合成明显减少。在斑马鱼中,我们证明了同源基因在代谢活跃的组织中表达,并且基因敲低诱导运动障碍、结构缺陷和低 ATP 产生。运动表型通过人类 WT 而不是突变 cRNA 得到补充。此外,蔗糖密度梯度分级分离显示大亚基线粒体核糖体蛋白的组装受到干扰,这表明该突变导致 MRPL24 的构象变化,预计会导致该蛋白与 39S 线粒体核糖体亚基的其他成分异常相互作用。

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