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首页> 外文期刊>Endocrinology >Regulation of MT1-MMP and MMP-2 by leptin in cardiac fibroblasts involves Rho/ROCK-dependent actin cytoskeletal reorganization and leads to enhanced cell migration.
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Regulation of MT1-MMP and MMP-2 by leptin in cardiac fibroblasts involves Rho/ROCK-dependent actin cytoskeletal reorganization and leads to enhanced cell migration.

机译:瘦素在心脏成纤维细胞中对MT1-MMP和MMP-2的调节涉及Rho / ROCK依赖性肌动蛋白细胞骨架重组,并导致增强的细胞迁移。

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摘要

Altered leptin action has been implicated in the pathophysiology of heart failure in obesity, a hallmark of which is extracellular matrix remodeling. Here, we characterize the direct influence of leptin on matrix metalloproteinase (MMP) activity in primary adult rat cardiac fibroblasts and focus on elucidating the molecular mechanisms responsible. Leptin increased expression and cell surface localization of membrane type 1 (MT1)-MMP, measured by cell surface biotinylation assay and antibody-based colorimetric detection of an exofacial epitope in intact cells. Coimmunoprecipitation analysis showed that leptin also induced the formation of a cluster of differentiation 44/MT1-MMP complex. Qualitative analysis using rhodamine-conjugated phalloidin immunofluorescence indicated that leptin stimulated actin cytoskeletal reorganization and enhanced stress fiber formation. Hence, we analyzed activation of Ras homolog gene family (Rho), member A GTPase activity and found a rapid increase in response to leptin that corresponded with increased phosphorylation of cofilin. Quantitative analysis of cytoskeleton reorganization upon separation of globular and filamentous actin by differential centrifugation confirmed the significant increase in filamentous to globular actin ratio in response to leptin, which was prevented by pharmacological inhibition of Rho (C3 transferase) or its downstream effector kinase Rho-associated coiled-coil-forming protein kinase (ROCK) (Y-27632). Inhibition of Rho or ROCK also attenuated leptin-stimulated increases in cell surface MT1-MMP content. Pro-MMP-2 is a known MT1-MMP substrate, and we observed that enhanced cell surface MT1-MMP in response to leptin resulted in enhanced extracellular activation of pro-MMP-2 measured by gelatin zymography, which was again attenuated by inhibition of Rho or ROCK. Using wound scratch assays, we observed enhanced cell migration, but not proliferation, measured by 5-bromo2'-deoxy-uridine incorporation, in response to leptin, again via a Rho-dependent signaling mechanism. Our results suggest that leptin regulates myocardial matrix remodeling by regulating the cell surface localization of MT1-MMP in adult cardiac fibroblasts via Rho/ROCK-dependent actin cytoskeleton reorganization. Subsequent pro-MMP-2 activation then contributes to stimulation of cell migration.
机译:瘦素的作用改变与肥胖症心力衰竭的病理生理有关,其特征是细胞外基质重塑。在这里,我们表征了瘦素对成年大鼠心脏成纤维细胞中基质金属蛋白酶(MMP)活性的直接影响,并着重于阐明负责的分子机制。通过细胞表面生物素化检测和完整细胞中颜面抗原决定簇的基于抗体的比色检测,可检测到瘦蛋白增加了1型膜(MT1)-MMP膜的表达和细胞表面定位。免疫共沉淀分析表明,瘦素还诱导分化簇44 / MT1-MMP复合物的形成。使用若丹明缀合的鬼笔环肽免疫荧光的定性分析表明,瘦素刺激肌动蛋白细胞骨架重组并增强了应力纤维的形成。因此,我们分析了Ras同源基因家族(Rho)的激活,成员A GTPase的活性,发现对瘦素的响应迅速增加,与cofilin的磷酸化增加相对应。定量离心分离球状和丝状肌动蛋白后对细胞骨架重组的定量分析证实,对瘦素的反应,丝状/球状肌动蛋白比例显着增加,这通过药理学上的抑制Rho(C3转移酶)或其下游效应子激酶Rho相关来阻止卷曲螺旋蛋白激酶(ROCK)(Y-27632)。 Rho或ROCK的抑制作用也减弱了瘦素刺激的细胞表面MT1-MMP含量的增加。 Pro-MMP-2是已知的MT1-MMP底物,我们观察到对瘦素的反应使细胞表面MT1-MMP增强,从而通过明胶酶谱法检测到pro-MMP-2的细胞外激活增强,该抑制又通过抑制MMP-2而减弱。 Rho或ROCK。使用伤口刮擦试验,我们观察到通过响应于瘦蛋白的5-溴2'-脱氧尿苷掺入,再次通过Rho依赖性信号传导机制,增强了细胞迁移,但未观察到增殖。我们的研究结果表明,瘦素通过Rho / ROCK依赖性肌动蛋白细胞骨架重组,通过调节成年成纤维细胞中MT1-MMP的细胞表面定位来调节心肌基质重塑。随后的前MMP-2激活会刺激细胞迁移。

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