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胶原蛋白VI缺乏会损害乌利希先天性肌营养不良症中肌腱成纤维细胞的机械反应。

Collagen VI Deficiency Impairs Tendon Fibroblasts Mechanoresponse in Ullrich Congenital Muscular Dystrophy.

作者信息

Cenni Vittoria, Sabatelli Patrizia, Di Martino Alberto, Merlini Luciano, Antoniel Manuela, Squarzoni Stefano, Neri Simona, Santi Spartaco, Metti Samuele, Bonaldo Paolo, Faldini Cesare

机构信息

CNR-Institute of Molecular Genetics, via di Barbiano 1/10, 40136 Bologna, Italy.

IRCCS Istituto Ortopedico Rizzoli, 40136 Bologna, Italy.

出版信息

Cells. 2024 Feb 22;13(5):378. doi: 10.3390/cells13050378.

Abstract

The pericellular matrix (PCM) is a specialized extracellular matrix that surrounds cells. Interactions with the PCM enable the cells to sense and respond to mechanical signals, triggering a proper adaptive response. Collagen VI is a component of muscle and tendon PCM. Mutations in collagen VI genes cause a distinctive group of inherited skeletal muscle diseases, and Ullrich congenital muscular dystrophy (UCMD) is the most severe form. In addition to muscle weakness, UCMD patients show structural and functional changes of the tendon PCM. In this study, we investigated whether PCM alterations due to collagen VI mutations affect the response of tendon fibroblasts to mechanical stimulation. By taking advantage of human tendon cultures obtained from unaffected donors and from UCMD patients, we analyzed the morphological and functional properties of cellular mechanosensors. We found that the length of the primary cilia of UCMD cells was longer than that of controls. Unlike controls, in UCMD cells, both cilia prevalence and length were not recovered after mechanical stimulation. Accordingly, under the same experimental conditions, the activation of the Hedgehog signaling pathway, which is related to cilia activity, was impaired in UCMD cells. Finally, UCMD tendon cells exposed to mechanical stimuli showed altered focal adhesions, as well as impaired activation of Akt, ERK1/2, p38MAPK, and mechanoresponsive genes downstream of YAP. By exploring the response to mechanical stimulation, for the first time, our findings uncover novel unreported mechanistic aspects of the physiopathology of UCMD-derived tendon fibroblasts and point at a role for collagen VI in the modulation of mechanotransduction in tendons.

摘要

细胞周围基质(PCM)是一种围绕细胞的特殊细胞外基质。与PCM的相互作用使细胞能够感知并响应机械信号,从而触发适当的适应性反应。胶原蛋白VI是肌肉和肌腱PCM的一个组成部分。胶原蛋白VI基因的突变会导致一组独特的遗传性骨骼肌疾病,而乌尔里希先天性肌营养不良(UCMD)是最严重的形式。除了肌肉无力外,UCMD患者的肌腱PCM还表现出结构和功能上的变化。在本研究中,我们调查了由于胶原蛋白VI突变导致的PCM改变是否会影响肌腱成纤维细胞对机械刺激的反应。通过利用从未受影响的供体和UCMD患者获得的人肌腱培养物,我们分析了细胞机械传感器的形态和功能特性。我们发现,UCMD细胞的初级纤毛长度比对照组更长。与对照组不同的是,在UCMD细胞中,机械刺激后纤毛的发生率和长度均未恢复。因此,在相同的实验条件下,与纤毛活动相关的刺猬信号通路在UCMD细胞中的激活受到损害。最后,暴露于机械刺激的UCMD肌腱细胞表现出粘着斑改变,以及YAP下游的Akt、ERK1/2、p38MAPK和机械反应基因的激活受损。通过探索对机械刺激的反应,我们的研究首次揭示了UCMD来源的肌腱成纤维细胞生理病理学中尚未报道的新机制,并指出了胶原蛋白VI在肌腱机械转导调节中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f56e/10930931/8d44394796dd/cells-13-00378-g001.jpg

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