遗传性周围神经病变的遗传学研究

IF 0.4 Q4 CLINICAL NEUROLOGY
Y. Higuchi
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引用次数: 0

摘要

近20年来,我科一直从事遗传性神经病变的遗传研究,重点是沙科-玛丽-图斯病和其他遗传性周围神经病变。CMT疾病是一种无法治愈的疾病,其特征是进行性肌肉无力、萎缩和感觉障碍,主要影响周围神经。在我们的机构,我们收集了全国CMT患者的血液样本,并进行了全面的基因检测,以阐明其潜在的原因。利用下一代测序技术(NGS),通过对以前未发现的病例的全外显子组分析,我们成功地发现了CMT疾病的两个新的致病基因,膜金属内肽酶(MME)和细胞色素c氧化酶组装因子7。这些发现与NGS的综合分析相结合,显著提高了本病的诊断率。值得注意的是,MME基因已被报道为常染色体隐性CMT病最常见的致病基因,引起了全球的关注和后续的研究努力。对每个病人进行准确的基因诊断是了解遗传性疾病的关键的第一步。确定CMT疾病的新原因有助于完全阐明所涉及的分子机制,进一步促进有效治疗方法的发展,包括基因治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic research of inherited peripheral neuropathies
Our department has been conducting genetic research on hereditary neuropathies, with a focus on the Charcot–Marie–Tooth (CMT) disease and other inherited peripheral neuropathies for the past 20 years. The CMT disease is an untreatable disease characterized by progressive muscle weakness, atrophy, and sensory impairment, primarily affecting the peripheral nerves.In our institution, we collected blood samples from patients with the CMT disease, nationwide, and performed comprehensive genetic testing to elucidate its underlying causes.Using next‐generation sequencing (NGS), we successfully discovered two novel causative genes of the CMT disease, membrane metalloendopeptidase (MME), and cytochrome c oxidase assembly factor 7, via whole exome analysis of previously unidentified cases. These findings, combined with the comprehensive analysis enabled by NGS, have significantly improved the diagnostic rate of this disease.Notably, the MME gene has been reported as the most frequent causative gene for autosomal recessive CMT disease, attracting global attention and subsequent research efforts. Accurate genetic diagnosis for each patient serves as a crucial first step toward understanding hereditary diseases. The identification of new causes of the CMT disease can assist in elucidating the molecular mechanisms involved completely, further contributing to the development of effective treatment approaches, including gene therapies.
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CiteScore
0.80
自引率
0.00%
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76
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