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肿瘤坏死因子-α诱导的基质纤连蛋白破坏和内皮完整性降低与纤连蛋白的蛋白水解无关。

TNF-alpha-induced matrix Fn disruption and decreased endothelial integrity are independent of Fn proteolysis.

作者信息

Curtis T M, Rotundo R F, Vincent P A, McKeown-Longo P J, Saba T M

机构信息

Department of Physiology and Cell Biology, Albany Medical College, Albany, New York 12208, USA.

出版信息

Am J Physiol. 1998 Jul;275(1):L126-38. doi: 10.1152/ajplung.1998.275.1.L126.

Abstract

Exposure of confluent pulmonary arterial endothelial monolayers to tumor necrosis factor (TNF)-alpha causes both a reorganization and/or disruption of fibronectin (Fn) in the extracellular matrix and an increase in transendothelial protein permeability. However, the factors initiating this response to TNF-alpha have not been defined. Because TNF-alpha can induce proteinase expression in endothelial cells, we determined whether proteinases cause both the alteration of the Fn matrix and the permeability increase as is often speculated. Incubation of calf pulmonary arterial endothelial monolayers with TNF-alpha (200 U/ml) for 18 h caused a disruption of the Fn matrix and an increase in transendothelial protein permeability. A reduced colocalization of cell-surface alpha5beta1-Fn integrins with the Fn fibers in focal contacts was also observed. TNF-alpha treatment of endothelial monolayers with matrices prelabeled with 125I-human Fn (hFn) did not cause the release of Fn fragments or alter the content of Fn antigen in the medium as analyzed by SDS-PAGE coupled with autoradiography. Both the content and fragmentation pattern of Fn within the cell layer and the insoluble Fn matrix also appeared unchanged after TNF-alpha exposure as confirmed by Western immunoblot. Fn-substrate zymography revealed that TNF-alpha increased the expression of two proteinases within the conditioned medium in which activity could be blocked by aprotinin but not by EDTA, 1,10-phenanthroline, leupeptin, or pepstatin. However, inhibition of the Fn proteolytic activity of these two serine proteinases did not prevent either the TNF-alpha-induced disruption of the Fn matrix or the increase in permeability. Thus the reorganization and/or disruption of the Fn matrix and the temporally associated increase in endothelial permeability caused by TNF-alpha appear not to be due to proteolytic degradation of Fn within the extracellular matrix. In contrast, decreased alpha5beta1-Fn integrin interaction with Fn fibers in the matrix may be important in the response to TNF-alpha exposure.

摘要

将融合的肺动脉内皮单层细胞暴露于肿瘤坏死因子(TNF)-α会导致细胞外基质中纤连蛋白(Fn)的重组和/或破坏,并增加跨内皮蛋白通透性。然而,引发这种对TNF-α反应的因素尚未明确。由于TNF-α可诱导内皮细胞中蛋白酶的表达,我们确定蛋白酶是否如通常推测的那样导致Fn基质的改变和通透性增加。用TNF-α(200 U/ml)孵育小牛肺动脉内皮单层细胞18小时,导致Fn基质破坏和跨内皮蛋白通透性增加。还观察到在粘着斑中细胞表面α5β1-Fn整合素与Fn纤维的共定位减少。用125I-人Fn(hFn)预标记基质的内皮单层细胞经TNF-α处理后,通过SDS-PAGE结合放射自显影分析,未导致Fn片段释放或改变培养基中Fn抗原的含量。Western免疫印迹证实,TNF-α暴露后,细胞层内和不溶性Fn基质中Fn的含量和片段化模式也未改变。Fn底物酶谱分析显示,TNF-α增加了条件培养基中两种蛋白酶的表达,其活性可被抑肽酶阻断,但不能被EDTA、1,10-菲咯啉、亮抑酶肽或胃蛋白酶抑制剂阻断。然而,抑制这两种丝氨酸蛋白酶的Fn蛋白水解活性并不能阻止TNF-α诱导的Fn基质破坏或通透性增加。因此,TNF-α引起的Fn基质的重组和/或破坏以及与之相关的内皮通透性的暂时增加似乎不是由于细胞外基质中Fn的蛋白水解降解。相反,基质中α5β1-Fn整合素与Fn纤维的相互作用减少可能在对TNF-α暴露的反应中起重要作用。

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