首页> 美国卫生研究院文献>American Journal of Human Genetics >Bi-allelic Mutations in the Mitochondrial Ribosomal Protein MRPS2 Cause Sensorineural Hearing Loss Hypoglycemia and Multiple OXPHOS Complex Deficiencies
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Bi-allelic Mutations in the Mitochondrial Ribosomal Protein MRPS2 Cause Sensorineural Hearing Loss Hypoglycemia and Multiple OXPHOS Complex Deficiencies

机译:线粒体核糖体蛋白MRPS2中的双等位基因突变导致感觉神经性听力丧失低血糖症和多种OXPHOS复合体缺乏症

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摘要

Biogenesis of the mitochondrial oxidative phosphorylation system, which produces the bulk of ATP for almost all eukaryotic cells, depends on the translation of 13 mtDNA-encoded polypeptides by mitochondria-specific ribosomes in the mitochondrial matrix. These mitoribosomes are dual-origin ribonucleoprotein complexes, which contain mtDNA-encoded rRNAs and tRNAs and ∼80 nucleus-encoded proteins. An increasing number of gene mutations that impair mitoribosomal function and result in multiple OXPHOS deficiencies are being linked to human mitochondrial diseases. Using exome sequencing in two unrelated subjects presenting with sensorineural hearing impairment, mild developmental delay, hypoglycemia, and a combined OXPHOS deficiency, we identified mutations in the gene encoding the mitochondrial ribosomal protein S2, which has not previously been implicated in disease. Characterization of subjects’ fibroblasts revealed a decrease in the steady-state amounts of mutant MRPS2, and this decrease was shown by complexome profiling to prevent the assembly of the small mitoribosomal subunit. In turn, mitochondrial translation was inhibited, resulting in a combined OXPHOS deficiency detectable in subjects’ muscle and liver biopsies as well as in cultured skin fibroblasts. Reintroduction of wild-type MRPS2 restored mitochondrial translation and OXPHOS assembly. The combination of lactic acidemia, hypoglycemia, and sensorineural hearing loss, especially in the presence of a combined OXPHOS deficiency, should raise suspicion for a ribosomal-subunit-related mitochondrial defect, and clinical recognition could allow for a targeted diagnostic approach. The identification of MRPS2 as an additional gene related to mitochondrial disease further expands the genetic and phenotypic spectra of OXPHOS deficiencies caused by impaired mitochondrial translation.
机译:线粒体氧化磷酸化系统的生物发生,几乎为所有真核细胞产生大量的ATP,取决于线粒体基质中线粒体特异性核糖体对13种mtDNA编码多肽的翻译。这些线粒体是双重来源的核糖核蛋白复合物,其中包含mtDNA编码的rRNA和tRNA,以及约80个核编码的蛋白。越来越多的基因突变会损害线粒体功能并导致多种OXPHOS缺陷,这与人类线粒体疾病有关。在两个不相关的受试者中使用外显子组测序,这些受试者表现出感觉神经性听力障碍,轻度发育迟缓,低血糖症和合并的OXPHOS缺乏症,我们鉴定了编码线粒体核糖体蛋白S2的基因中的突变,该基因以前未涉及疾病。受试者的成纤维细胞的特征表明,突变体MRPS2的稳态量有所减少,而这种减少程度则通过复合体谱分析表明,可以防止小的线粒体亚基的组装。反过来,线粒体翻译受到抑制,导致在受试者的肌肉和肝脏活检以及培养的皮肤成纤维细胞中检测到综合的OXPHOS缺乏症。重新引入野生型MRPS2可恢复线粒体翻译和OXPHOS装配。乳酸血症,低血糖症和感觉神经性听力丧失的结合,尤其是在合并OXPHOS缺乏症的情况下,应该引起对与核糖体亚基相关的线粒体缺陷的怀疑,并且临床认可可以采取针对性的诊断方法。 MRPS2作为与线粒体疾病相关的另一个基因的鉴定进一步扩大了由线粒体翻译受损引起的OXPHOS缺陷的遗传和表型谱。

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