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基因敲除关节软骨中纤维连接蛋白-α5β1 整合素相互作用可加重小鼠骨关节炎。

Genetic abrogation of the fibronectin-α5β1 integrin interaction in articular cartilage aggravates osteoarthritis in mice.

机构信息

Department of Biochemistry and Molecular Biology and Estructura de Reserca Interdisciplinar en Biotecnologia i Biomedicina, Universitat de València, Burjassot, Spain.

Departamento de Infectómica y Patogénesis Molecular, Centro de investigación y de Estudios Avanzados del Instituto Politécnico Nacional (CINVESTAV-IPN), México D.F., México.

出版信息

PLoS One. 2018 Jun 5;13(6):e0198559. doi: 10.1371/journal.pone.0198559. eCollection 2018.

Abstract

The balance between synthesis and degradation of the cartilage extracellular matrix is severely altered in osteoarthritis, where degradation predominates. One reason for this imbalance is believed to be due to the ligation of the α5β1 integrin, the classic fibronectin (FN) receptor, with soluble FN fragments instead of insoluble FN fibrils, which induces matrix metalloproteinase (MMP) expression. Our objective was to determine whether the lack of α5β1-FN binding influences cartilage morphogenesis in vivo and whether non-ligated α5β1 protects or aggravates the course of osteoarthritis in mice. We engineered mice (Col2a-Cre;Fn1RGE/fl), whose chondrocytes express an α5β1 binding-deficient FN, by substituting the aspartic acid of the RGD cell-binding motif with a glutamic acid (FN-RGE). At an age of 5 months the knee joints were stressed either by forced exercise (moderate mechanical load) or by partially resecting the meniscus followed by forced exercise (high mechanical load). Sections of femoral articular knees were analysed by Safranin-O staining and by immunofluorescence to determine tissue morphology, extracellular matrix proteins and matrix metalloproteinase expression. The articular cartilage from untrained control and Col2a-Cre;Fn1RGE/fl mice was normal, while the exposure to high mechanical load induced osteoarthritis characterized by proteoglycan and collagen type II loss. In the Col2a-Cre;Fn1RGE/fl articular cartilage osteoarthritis progressed significantly faster than in wild type mice. Mechanistically, we observed increased expression of MMP-13 and MMP-3 metalloproteinases in FN-RGE expressing articular cartilage, which severely affected matrix remodelling. Our results underscore the critical role of FN-α5β1 adhesion as ECM sensor in circumstances of articular cartilage regeneration.

摘要

软骨细胞外基质的合成与降解平衡在骨关节炎中严重失调,降解占主导地位。这种失衡的一个原因被认为是由于α5β1 整联蛋白与可溶性纤维连接蛋白(FN)片段的交联,而不是不溶性 FN 纤维,这诱导了基质金属蛋白酶(MMP)的表达。我们的目的是确定缺乏α5β1-FN 结合是否会影响体内软骨形态发生,以及非交联的α5β1 是否会保护或加重小鼠骨关节炎的病程。我们通过用谷氨酸取代 RGD 细胞结合基序中的天冬氨酸,构建了软骨细胞表达α5β1 结合缺陷 FN 的小鼠(Col2a-Cre;Fn1RGE/fl)。在 5 个月大时,膝关节受到强制运动(中度机械负荷)或部分切除半月板后强制运动(高机械负荷)的压力。通过番红 O 染色和免疫荧光分析股骨关节膝关节的切片,以确定组织形态、细胞外基质蛋白和基质金属蛋白酶的表达。未经训练的对照和 Col2a-Cre;Fn1RGE/fl 小鼠的关节软骨正常,而高机械负荷的暴露会导致特征为蛋白聚糖和 II 型胶原丢失的骨关节炎。在 Col2a-Cre;Fn1RGE/fl 关节软骨中,骨关节炎的进展明显快于野生型小鼠。从机制上讲,我们观察到在表达 FN-RGE 的关节软骨中 MMP-13 和 MMP-3 金属蛋白酶的表达增加,这严重影响了基质重塑。我们的结果强调了 FN-α5β1 粘附作为细胞外基质传感器在关节软骨再生情况下的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f857/5988303/f15eb3392562/pone.0198559.g003.jpg

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