...
首页> 外文期刊>Human Molecular Genetics >Different in vivo impacts of dynamin 2 mutations implicated in Charcot-Marie-Tooth neuropathy or centronuclear myopathy
【24h】

Different in vivo impacts of dynamin 2 mutations implicated in Charcot-Marie-Tooth neuropathy or centronuclear myopathy

机译:发动机2突变的体内影响不同于Charcot-Marie-tooth神经病变或Centronuclear肌病

获取原文
获取原文并翻译 | 示例

摘要

Dynamin 2 (DNM2) is a ubiquitously expressed GTPase implicated in many cellular functions such as membrane trafficking and cytoskeleton regulation. Dominant mutations in DNM2 result in tissue-specific diseases affecting peripheral nerves (Charcot-Marie-Tooth neuropathy, CMT) or skeletal muscles (centronuclear myopathy, CNM). However, the reason for this tissue specificity is unknown, and it remains unclear if these diseases share a common pathomechanism. To compare the disease pathophysiological mechanisms in skeletal muscle, we exogenously expressed wild-type DNM2 (WT-DNM2), the DNM2-CMT mutation K562E or DNM2-CNM mutations R465W and S619L causing adult and neonatal forms, respectively, by intramuscular adeno-associated virus (AAV) injections. All muscles expressing exogenous WT-DNM2 and CNM or CMT mutations exhibited reduced muscle force. However, only expression of CNM mutations and WT-DNM2 correlated with CNM-like histopathological hallmarks of nuclei centralization and reduced fiber size. The extent of alterations correlated with clinical severity in patients. Ultrastructural and immunofluorescence analyses highlighted defects of the triads, mitochondria and costameres as major causes of the CNM phenotype. Despite the reduction in force upon expression of the DNM2-CMT mutation, muscle histology and ultrastructure were almost normal. However, the neuromuscular junction was affected in all DNM2-injected muscles, with the DNM2-CMT mutation inducing the most severe alterations, potentially explaining the reduction in force observed with this mutant. In conclusion, expression of WT and CNM mutants recreate a CNM-like phenotype, suggesting CNM mutations are gain-of-function. Histological, ultrastructural and molecular analyses pointed to key pathways uncovering the different pathomechanisms involved in centronuclear myopathy or Charcot-Marie-Tooth neuropathy linked to DNM2 mutations.
机译:发电机2(DNM2)是一种普遍表达的GTP酶,其具有诸如膜运输和细胞骨架调节的许多细胞功能。 DNM2中的显性突变导致影响周围神经的组织特异性疾病(Charcot-Marie-tooth神经病变,CMT)或骨骼肌(Centronuclecleclecathathy,CNM)。然而,这种组织特异性的原因是未知的,并且如果这些疾病共享共同的土地机制,则仍然尚不清楚。为了比较骨骼肌中的疾病病理生理机制,我们通过肌内腺相关性分别表达野生型DNM2(WT-DNM2),DNM2-CMT突变K562E或DNM2-CNM突变R465W和S619L分别引起成人和新生儿形式病毒(AAV)注射。表达外源性WT-DNM2和CNM或CMT突变的所有肌肉表现出肌肉减少。然而,只有CNM突变的表达和WT-DNM2与核集中化的CNM样组织病理学标志和降低的纤维尺寸相关。改变程度与患者临床严重程度相关。超微结构和免疫荧光分析了三联,线粒体和Costameres的缺陷作为CNM表型的主要原因。尽管在表达DNM2-CMT突变后,肌肉组织学和超微结构几乎是正常的。然而,在所有DNM2注射的肌肉中受到神经肌肉结的影响,DNM2-CMT突变诱导最严重的变化,可能解释用该突变体观察到的力减少。总之,WT和CNM突变体的表达重新创建CNM样表型,表明CNM突变是函数的。组织学,超微结构和分子分析指向揭示涉及与DNM2突变有关的Centron核病虫病或Charcot-Marie-Tooth神经病变中涉及的不同的公废途径。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号