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乌尔里希先天性肌营养不良症中肌腱细胞外基质的改变

Tendon Extracellular Matrix Alterations in Ullrich Congenital Muscular Dystrophy.

作者信息

Sardone Francesca, Traina Francesco, Bondi Alice, Merlini Luciano, Santi Spartaco, Maraldi Nadir Mario, Faldini Cesare, Sabatelli Patrizia

机构信息

Department of Biomedical Sciences, University of PadovaPadova, Italy; National Research Council of Italy, Institute of Molecular GeneticsBologna, Italy.

Rizzoli Orthopaedic Institute, University of Bologna Bologna, Italy.

出版信息

Front Aging Neurosci. 2016 Jun 8;8:131. doi: 10.3389/fnagi.2016.00131. eCollection 2016.

Abstract

Collagen VI (COLVI) is a non-fibrillar collagen expressed in skeletal muscle and most connective tissues. Mutations in COLVI genes cause two major clinical forms, Bethlem myopathy and Ullrich congenital muscular dystrophy (UCMD). In addition to congenital muscle weakness, patients affected by COLVI myopathies show axial and proximal joint contractures and distal joint hypermobility, which suggest the involvement of the tendon function. We examined a peroneal tendon biopsy and tenocyte culture of a 15-year-old patient affected by UCMD with compound heterozygous COL6A2 mutations. In patient's tendon biopsy, we found striking morphological alterations of tendon fibrils, consisting in irregular profiles and reduced mean diameter. The organization of the pericellular matrix of tenocytes, the primary site of collagen fibril assembly, was severely affected, as determined by immunoelectron microscopy, which showed an abnormal accumulation of COLVI and altered distribution of collagen I (COLI) and fibronectin (FBN). In patient's tenocyte culture, COLVI web formation and cell surface association were severely impaired; large aggregates of COLVI, which matched with COLI labeling, were frequently detected in the extracellular matrix. In addition, metalloproteinase MMP-2, an extracellular matrix-regulating enzyme, was increased in the conditioned medium of patient's tenocytes, as determined by gelatin zymography and western blot. Altogether, these data indicate that COLVI deficiency may influence the organization of UCMD tendon matrix, resulting in dysfunctional fibrillogenesis. The alterations of tendon matrix may contribute to the complex pathogenesis of COLVI related myopathies.

摘要

胶原蛋白VI(COLVI)是一种在骨骼肌和大多数结缔组织中表达的非纤维状胶原蛋白。COLVI基因的突变会导致两种主要临床形式,即Bethlem肌病和乌尔里希先天性肌营养不良(UCMD)。除先天性肌无力外,受COLVI肌病影响的患者还表现出轴向和近端关节挛缩以及远端关节活动过度,这提示肌腱功能受到了影响。我们检查了一名患有复合杂合性COL6A2突变的15岁UCMD患者的腓骨肌腱活检样本和腱细胞培养物。在患者的肌腱活检中,我们发现肌腱纤维有明显的形态学改变,表现为轮廓不规则和平均直径减小。通过免疫电子显微镜确定,腱细胞的细胞周基质(胶原蛋白纤维组装的主要部位)的组织结构受到严重影响,显示出COLVI异常积聚以及胶原蛋白I(COLI)和纤连蛋白(FBN)分布改变。在患者的腱细胞培养物中,COLVI网络形成和细胞表面结合严重受损;在细胞外基质中经常检测到与COLI标记匹配的大量COLVI聚集体。此外,通过明胶酶谱法和蛋白质印迹法确定,细胞外基质调节酶金属蛋白酶MMP-2在患者腱细胞的条件培养基中增加。总之,这些数据表明COLVI缺乏可能会影响UCMD肌腱基质的组织结构,导致纤维形成功能障碍。肌腱基质的改变可能有助于COLVI相关肌病的复杂发病机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea3a/4896961/17e5f8e39bc2/fnagi-08-00131-g0001.jpg

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