首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Mechanotransduction of Extracellular Signal-Regulated Kinases 1 and 2 Mitogen-Activated Protein Kinase Activity in Smooth Muscle Is Dependent on the Extracellular Matrix and Regulated by Matrix Metalloproteinases
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Mechanotransduction of Extracellular Signal-Regulated Kinases 1 and 2 Mitogen-Activated Protein Kinase Activity in Smooth Muscle Is Dependent on the Extracellular Matrix and Regulated by Matrix Metalloproteinases

机译:平滑肌中细胞外信号调节激酶1和2的丝裂素活化蛋白激酶活性的机械转导取决于细胞外基质并受基质金属蛋白酶的调节

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摘要

Excessive wall stretch of distensible hollow organs in cardiovascular and urinary systems can activate matrix metalloproteinases (MMPs), thereby releasing matrix neoepitopes and growth factor ligands, leading to ERK1/2 activation. However, the role of MMPs in mechanotransduction of ERK1/2 signaling in the bladder is unknown. We examined bladders undergoing sustained distension over time, which provides a novel platform for smooth muscle mechanotransduction studies. Bladder distension ex vivo caused increased proliferation and MMP activity. Conditioned medium from distended compared with undistended bladders induced proliferation in bladder smooth muscle cells (BSMCs). When conditioned medium from distended bladders was used to proteolyze collagen type I matrices, matrices augmented BSMC proliferation, which was inhibited if bladders were distended in presence of broad-spectrum MMP inhibitors. Distension of ex vivo bladders also induced ERK1/2 phosphorylation in situ, which was dependent on MMP activity in the intact bladder. Similarly, stretching BSMCs in vitro induced increases in ERK1/2 activation and ERK1/2-dependent proliferation under discrete mechanical conditions, and distension conditioned medium itself induced MMP-dependent ERK1/2 activation in BSMCs. Overall, stretch-induced proliferation and ERK1/2 signaling in bladder tissue and BSMCs likely depend on secreted MMP activity. Identification of intermediaries between MMPs and ERK1/2 may elaborate novel mechanisms underlying mechanotransduction in bladder smooth muscle.
机译:心血管和泌尿系统中可扩张中空器官的壁过度伸展会激活基质金属蛋白酶(MMP),从而释放基质新表位和生长因子配体,从而导致ERK1 / 2激活。然而,MMPs在膀胱ERK1 / 2信号的机械转导中的作用尚不清楚。我们检查了随着时间的推移经历持续膨胀的膀胱,这为平滑肌机械转导研究提供了一个新颖的平台。离体膀胱扩张引起增殖和MMP活性增加。与未扩张的膀胱相比,来自扩张的条件培养基会诱导膀胱平滑肌细胞(BSMC)增殖。当使用来自扩张的膀胱的条件培养基来蛋白水解I型胶原蛋白基质时,基质会增强BSMC增殖,如果在广谱MMP抑制剂存在的情况下扩张了膀胱,则BSMC增殖会受到抑制。离体膀胱的膨胀还诱导原位ERK1 / 2磷酸化,这取决于完整膀胱中的MMP活性。同样,在不连续的机械条件下,体外拉伸BSMC诱导ERK1 / 2活化和ERK1 / 2依赖性增殖的增加,而扩张条件培养基本身在BSMC中诱导MMP依赖性ERK1 / 2活化。总体而言,在膀胱组织和BSMC中拉伸诱导的增殖和ERK1 / 2信号传导可能取决于分泌的MMP活性。 MMPs与ERK1 / 2之间的中介的鉴定可能阐明了膀胱平滑肌机械转导的新机制。

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