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Ultrastructural changes in muscle cells of patientsudwith collagen VI-related myopathies

机译:患者肌细胞超微结构的变化与胶原蛋白VI相关的肌病

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摘要

Collagen VI is an extracellular matrix protein expressed in several tissues including skeletal muscle. Mutations in COL6A genes cause Bethlem Myopathy (BM), Ullrich Congenital Muscular Dystrophy (UCMD) and Myosclerosis Myopathy (MM). Collagen VI deficiency causes increased opening of the mitochondrial permeability transition pore (mPTP), leading to ultrastructural and functional alterations of mitochondria, amplified by impairment of autophagy. Here we report for the first time ultrastructural studies on muscle biopsies from BM and UCMD patients, showing swollen mitochondria with hypodense matrix, disorganized cristae and paracrystalline inclusions, associated with dilated sarcoplasmic reticulum and apoptotic changes. These data were supported by scanning electron microscopy analysis on BM and UCMD cultured cells, showing alterations of the mitochondrial network. Morphometric analysis also revealed a reduced short axis and depicted swelling in about 3% of mitochondria.udThese data demonstrate that mitochondrial defects underlie the pathogenetic mechanism in muscle tissue of patients affected by collagen VI myopathies
机译:胶原VI是一种在包括骨骼肌在内的多种组织中表达的细胞外基质蛋白。 COL6A基因的突变会导致伯勒姆肌病(BM),乌尔里希先天性肌营养不良症(UCMD)和肌硬化性肌病(MM)。胶原蛋白VI缺乏会导致线粒体通透性过渡孔(mPTP)的开放增加,从而导致线粒体的超微结构和功能改变,并通过自噬受损而加剧。在这里,我们首次报道了来自BM和UCMD患者的肌肉活组织检查的超微结构研究,显示线粒体肿胀并伴有低密度基质,cr裂和顺晶体包裹体,伴有肌浆网扩张和凋亡改变。这些数据通过对BM和UCMD培养的细胞进行扫描电子显微镜分析得到支持,显示了线粒体网络的变化。形态计量学分析还显示,短轴减少,线粒体约占3%肿胀。 ud这些数据表明,线粒体缺陷是胶原VI肌病患者肌肉组织的致病机制的基础。

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