Guiraud Simon, Migeon Tiffany, Ferry Arnaud, Chen Zhiyong, Ouchelouche Souhila, Verpont Marie-Christine, Sado Yoshikazu, Allamand Valérie, Ronco Pierre, Plaisier Emmanuelle
Mixed Research Unit S1155, INSERM, Paris, France; University Pierre and Marie Curie Paris 06, Sorbonne University, Paris, France; Medical Research Council Functional Genomics Unit, Department of Physiology, Anatomy, and Genetics, University of Oxford, Oxford, United Kingdom.
Mixed Research Unit S1155, INSERM, Paris, France; University Pierre and Marie Curie Paris 06, Sorbonne University, Paris, France.
Am J Pathol. 2017 Mar;187(3):505-516. doi: 10.1016/j.ajpath.2016.10.020. Epub 2017 Jan 3.
Collagen IV is a major component of basement membranes (BMs). The α1(IV) chain, encoded by the COL4A1 gene, is expressed ubiquitously and associates with the α2(IV) chain to form the α1α1α2(IV) heterotrimer. Several COL4A1 mutations affecting a conformational domain containing integrin-binding sites are responsible for the systemic syndrome of hereditary angiopathy, nephropathy, aneurysms, and cramps (HANAC). To analyze the pathophysiology of HANAC, Col4a1 mutant mice bearing the p.Gly498Val mutation were generated. Analysis of the skeletal muscles of Col4a1 mutant animals showed morphologic characteristics of a muscular dystrophy phenotype with myofiber atrophy, centronucleation, focal inflammatory infiltrates, and fibrosis. Abnormal ultrastructural aspects of muscle BMs was associated with reduced extracellular secretion of the mutant α1α1α2(IV) trimer. In addition to muscular dystrophic features, endothelial cell defects of the muscle capillaries were observed, with intracytoplasmic accumulation of the mutant α1α1α2(IV) molecules, endoplasmic reticulum cisternae dilation, and up-regulation of endoplasmic reticulum stress markers. Induction of the unfolded protein response in Col4a1 mutant muscle tissue resulted in an excess of apoptosis in endothelial cells. HANAC mutant animals also presented with a muscular functional impairment and increased serum creatine kinase levels reflecting altered muscle fiber sarcolemma. This extensive description of the muscular phenotype of the Col4a1 HANAC murine model suggests a potential contribution of primary endothelial cell defects, together with muscle BM alterations, to the development of COL4A1-related myopathy.
IV型胶原蛋白是基底膜(BMs)的主要成分。由COL4A1基因编码的α1(IV)链在全身广泛表达,并与α2(IV)链结合形成α1α1α2(IV)异源三聚体。几种影响含有整合素结合位点的构象域的COL4A1突变是遗传性血管病、肾病、动脉瘤和痉挛综合征(HANAC)的病因。为了分析HANAC的病理生理学,构建了携带p.Gly498Val突变的Col4a1突变小鼠。对Col4a1突变动物骨骼肌的分析显示出肌营养不良表型的形态学特征,包括肌纤维萎缩、中央核化、局灶性炎性浸润和纤维化。肌肉基底膜的超微结构异常与突变型α1α1α2(IV)三聚体的细胞外分泌减少有关。除了肌营养不良特征外,还观察到肌肉毛细血管的内皮细胞缺陷,伴有突变型α1α1α2(IV)分子的胞质内积累、内质网池扩张和内质网应激标志物上调。Col4a1突变肌肉组织中未折叠蛋白反应的诱导导致内皮细胞过度凋亡。HANAC突变动物还表现出肌肉功能受损和血清肌酸激酶水平升高,反映了肌纤维肌膜的改变。对Col4a1 HANAC小鼠模型肌肉表型的广泛描述表明,原发性内皮细胞缺陷以及肌肉基底膜改变可能对COL4A1相关肌病的发展有潜在影响。