首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Matrix Metalloproteinase-2-deficient Fibroblasts Exhibit an Alteration in the Fibrotic Response to Connective Tissue Growth Factor/CCN2 because of an Increase in the Levels of Endogenous Fibronectin
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Matrix Metalloproteinase-2-deficient Fibroblasts Exhibit an Alteration in the Fibrotic Response to Connective Tissue Growth Factor/CCN2 because of an Increase in the Levels of Endogenous Fibronectin

机译:基质金属蛋白酶2缺陷成纤维细胞表现出改变 对结缔组织生长因子/ CCN2的纤维化反应 内源性水平增加 纤连蛋白

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摘要

Matrix metalloproteinase-2 (MMP-2) is an important extracellular matrix remodeling enzyme, and it has been involved in different fibrotic disorders. The connective tissue growth factor (CTGF/CCN2), which is increased in these pathologies, induces the production of extracellular matrix proteins. To understand the fibrotic process observed in diverse pathologies, we analyzed the fibroblast response to CTGF when MMP-2 activity is inhibited. CTGF increased fibronectin (FN) amount, MMP-2 mRNA expression, and gelatinase activity in 3T3 cells. When MMP-2 activity was inhibited either by the metalloproteinase inhibitor GM-6001 or in MMP-2-deficient fibroblasts, an increase in the basal amount of FN together with a decrease of its levels in response to CTGF was observed. This paradoxical effect could be explained by the fact that the excess of FN could block the access to other ligands, such as CTGF, to integrins. This effect was emulated in fibroblasts by adding exogenous FN or RGDS peptides or using anti-integrin αV subunit-blocking antibodies. Additionally, in MMP-2-deficient cells CTGF did not induce the formation of stress fibers, focal adhesion sites, and ERK phosphorylation. Anti-integrin αV subunit-blocking antibodies inhibited ERK phosphorylation in control cells. Finally, in MMP-2-deficient cells, FN mRNA expression was not affected by CTGF, but degradation of 125I-FN was increased. These results suggest that expression, regulation, and activity of MMP-2 can play an important role in the initial steps of fibrosis and shows that FN levels can regulate the cellular response to CTGF.
机译:基质金属蛋白酶2(MMP-2)是一种重要的细胞外基质重塑酶,它已参与了各种纤维化疾病。在这些病理中增加的结缔组织生长因子(CTGF / CCN2)诱导细胞外基质蛋白的产生。为了了解在各种病理中观察到的纤维化过程,我们分析了MMP-2活性被抑制时成纤维细胞对CTGF的反应。 CTGF增加了3T3细胞中的纤连蛋白(FN)含量,MMP-2 mRNA表达和明胶酶活性。当金属蛋白酶抑制剂GM-6001或MMP-2缺陷型成纤维细胞抑制MMP-2活性时,观察到FN的基础量增加,同时其对CTGF的响应水平也降低。这种矛盾的作用可以由以下事实解释:FN的过量会阻碍整联蛋白与其他配体(如CTGF)的接触。通过添加外源FN或RGDS肽或使用抗整合素αV亚基阻断抗体,可以在成纤维细胞中模拟这种效果。另外,在缺乏MMP-2的细胞中,CTGF不会诱导应激纤维,粘着部位和ERK磷酸化的形成。抗整合素αV亚基阻断抗体 抑制了对照细胞中的ERK磷酸化。最后,在MMP-2不足的情况下 细胞,FN mRNA表达不受CTGF影响,但可降解 125 I-FN增加。这些结果表明, MMP-2的调控和活性在初始阶段起着重要作用 纤维化的步骤,并表明FN水平可以调节细胞反应 到CTGF。

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