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Anatomical distributional defects in mutant genes associated with dominant intermediate Charcot-Marie-Tooth disease type C in an adenovirus-mediated mouse model

机译:腺病毒介导的小鼠模型中与C型显性中间性Charcot-Marie-Tooth病相关的突变基因的解剖分布缺陷

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摘要

Dominant intermediate Charcot-Marie-Tooth disease type C (DI-CMTC) is a dominantly inherited neu-ropathy that has been classified primarily based on motor conduction velocity tests but is now known to involve axonal and demyelination features. DI-CMTC is linked to tyrosyl-tRNA synthetase (YARS)-as-sociated neuropathies, which are caused by E196K and G41R missense mutations and a single de novo deletion (153-156delVKQV). It is well-established that these YARS mutations induce neuronal dysfunction, morphological symptoms involving axonal degeneration, and impaired motor performance. The present study is the first to describe a novel mouse model of YARS-mutation-induced neuropathy involving a neu-ron-specific promoter with a deleted mitochondrial targeting sequence that inhibits the expression of YARS protein in the mitochondria. An adenovirus vector system and in vivo techniques were utilized to express YARS fusion proteins with a Flag-tag in the spinal cord, peripheral axons, and dorsal root ganglia. Follow-ing transfection of YARS-expressing viruses, the distributions of wild-type (WT) YARS and E196K mutant proteins were compared in all expressed regions; G41R was not expressed. The proportion of Flag/green flu-orescent protein (GFP) double-positive signaling in the E196K mutant-type mice did not significantly differ from that of WT mice in dorsal root ganglion neurons. All adenovirus genes, and even the empty vector without the YARS gene, exhibited GFP-positive signaling in the ventral horn of the spinal cord because GFP in an adenovirus vector is driven by a cytomegalovirus promoter. The present study demonstrated that ana-tomical differences in tissue can lead to dissimilar expressions of YARS genes. Thus, use of this novel animal model will provide data regarding distributional defects between mutant and WT genes in neurons, the DI-CMTC phenotype, and potential treatment approaches for this disease.
机译:主要的中型Charcot-Marie-Tooth疾病C型(DI-CMTC)是一种主要遗传的神经病变,主要根据运动传导速度测试进行分类,但现在已知具有轴突和脱髓鞘的特征。 DI-CMTC与酪氨酸-tRNA合成酶(YARS)相关的神经病相关,这是由E196K和G41R错义突变和单个从头缺失(153-156delVKQV)引起的。公认的是,这些YARS突变会引起神经元功能障碍,涉及轴突变性的形态学症状以及运动功能受损。本研究是第一个描述YARS突变诱导的神经病的新型小鼠模型,该模型涉及具有抑制线粒体YARS蛋白表达的线粒体靶向序列的神经元特异性启动子。利用腺病毒载体系统和体内技术表达在脊髓,外周轴突和背根神经节中带有Flag标签的YARS融合蛋白。在转染表达YARS的病毒后,比较了所有表达区中野生型(WT)YARS和E196K突变蛋白的分布。没有表达G41R。 E196K突变型小鼠中Flag /绿色荧光蛋白(GFP)双阳性信号的比例与背根神经节神经元中的WT小鼠没有显着差异。由于腺病毒载体中的GFP由巨细胞病毒启动子驱动,因此所有腺病毒基因,甚至是没有YARS基因的空载体,在脊髓腹角均显示GFP阳性信号。本研究表明,组织上的解剖学差异可导致YARS基因的表达不同。因此,使用这种新颖的动物模型将提供有关神经元中突变基因和WT基因之间的分布缺陷,DI-CMTC表型以及对该疾病潜在治疗方法的数据。

著录项

  • 来源
    《中国神经再生研究(英文版)》 |2017年第3期|486-492|共7页
  • 作者单位

    Department of Biomedical Science,Graduate School,Kyung Hee University,Dongdaemun-gu,Seoul,Korea;

    Department of Biomedical Science,Graduate School,Kyung Hee University,Dongdaemun-gu,Seoul,Korea;

    Department of Biomedical Science,Graduate School,Kyung Hee University,Dongdaemun-gu,Seoul,Korea;

    Department of Medicine,Graduate School,Kyung Hee University,Dongdaemun-gu,Seoul,Korea;

    Department of Applied Chemistry,College of Applied Science,Kyung Hee University,Yongin-si,Gyeonggi-do,Korea;

    Department of Anatomy and Cell Biology,College of Medicine,Dong-A University,Seo-gu,Busan,Korea;

    Department of Reproductive Endocrinology and Infertility,Department of Obstetrics and Gynecology,Cheil General Hospital,Dankook University College of Medicine,Jung-gu,Seoul,Korea;

    Department of Biomedical Science,Graduate School,Kyung Hee University,Dongdaemun-gu,Seoul,Korea;

    Department of Medicine,Graduate School,Kyung Hee University,Dongdaemun-gu,Seoul,Korea;

    Department of Anatomy and Neurobiology,College of Medicine,Kyung Hee University,Dongdaemun-gu,Seoul,Korea;

    Department of Biomedical Science,Graduate School,Kyung Hee University,Dongdaemun-gu,Seoul,Korea;

    Department of Medicine,Graduate School,Kyung Hee University,Dongdaemun-gu,Seoul,Korea;

    Department of Anatomy and Neurobiology,College of Medicine,Kyung Hee University,Dongdaemun-gu,Seoul,Korea;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
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  • 正文语种 eng
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