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IARS1 缺陷小鼠的分子和病理学分析:IARS 疾病模型。

Molecular and Pathological Analyses of IARS1-Deficient Mice: An IARS Disorder Model.

机构信息

Laboratory of Laboratory Animal Science and Medicine, School of Veterinary Medicine, Kitasato University, 35-1 Higashi-23, Towada 034-8628, Japan.

Department of Laboratory Animal Medicine, Research Institute, National Center for Global Health and Medicine, Tokyo 162-8655, Japan.

出版信息

Int J Mol Sci. 2023 Apr 9;24(8):6955. doi: 10.3390/ijms24086955.

Abstract

Most mitochondrial diseases are hereditary and highly heterogeneous. Cattle born with the V79L mutation in the isoleucyl-tRNA synthetase 1 (IARS1) protein exhibit weak calf syndrome. Recent human genomic studies about pediatric mitochondrial diseases also identified mutations in the IARS1 gene. Although severe prenatal-onset growth retardation and infantile hepatopathy have been reported in such patients, the relationship between IARS mutations and the symptoms is unknown. In this study, we generated hypomorphic IARS1 mutant mice to develop an animal model of IARS mutation-related disorders. We found that compared to wild-type mice, IARS mutant mice showed a significant increase in hepatic triglyceride and serum ornithine carbamoyltransferase levels, indicating that IARS1 mice suffer from mitochondrial hepatopathy. In addition, siRNA knockdown of the IARS1 gene decreased mitochondrial membrane potential and increased reactive oxygen species in the hepatocarcinoma-derived cell line HepG2. Furthermore, proteomic analysis revealed decreased levels of the mitochondrial function-associated protein NME4 (mitochondrial nucleoside diphosphate kinase). Concisely, our mutant mice model can be used to study IARS mutation-related disorders.

摘要

大多数线粒体疾病是遗传性的,高度异质性。出生时携带异亮氨酰-tRNA 合成酶 1(IARS1)蛋白 V79L 突变的牛表现出微弱的小牛综合征。最近关于儿科线粒体疾病的人类基因组研究也发现了 IARS1 基因的突变。尽管此类患者已报告存在严重的产前生长迟缓和婴儿肝病史,但 IARS 突变与症状之间的关系尚不清楚。在这项研究中,我们生成了低功能 IARS1 突变体小鼠,以开发与 IARS 突变相关疾病的动物模型。我们发现,与野生型小鼠相比,IARS 突变型小鼠的肝甘油三酯和血清鸟氨酸氨甲酰转移酶水平显著升高,表明 IARS1 小鼠患有线粒体性肝玻此外,IARS1 基因的 siRNA 敲低降低了肝癌衍生细胞系 HepG2 中的线粒体膜电位并增加了活性氧。此外,蛋白质组学分析显示与线粒体功能相关的蛋白 NME4(线粒体核苷二磷酸激酶)水平降低。总之,我们的突变小鼠模型可用于研究与 IARS 突变相关的疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea4c/10138339/735a30ff225d/ijms-24-06955-g001.jpg

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