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脂多糖加缺氧及复氧通过使连接蛋白40去磷酸化,协同降低微血管内皮细胞之间的电偶联。

Lipopolysaccharide plus hypoxia and reoxygenation synergistically reduce electrical coupling between microvascular endothelial cells by dephosphorylating connexin40.

作者信息

Bolon Michael L, Peng Tianqing, Kidder Gerald M, Tyml Karel

机构信息

Critical Illness Research, Lawson Health Research Institute, London, Ontario, Canada.

出版信息

J Cell Physiol. 2008 Nov;217(2):350-9. doi: 10.1002/jcp.21505.

Abstract

We showed that lipopolysaccharide (LPS) or hypoxia and reoxygenation (H/R) decreases electrical coupling between microvascular endothelial cells by targeting the gap junction protein connexin40 (Cx40), tyrosine kinase-, ERK1/2-, and PKA-dependently. Since LPS can compromise microvascular blood flow, resulting in micro-regional H/R, the concurrent LPS + H/R could reduce coupling to a much greater extent than LPS or H/R alone. We examined this possibility in a model of cultured microvascular endothelial cells (mouse skeletal muscle origin) in terms of electrical coupling and the phosphorylation status of Cx40. To assess coupling, we measured the spread of electrical current injected into the cell monolayer and computed the intercellular resistance as an inversed measure of coupling. In wild type cells, but not in Cx40 null cells, concurrent LPS + H/R synergistically increased resistance by approximately 270%, well above the level observed for LPS or H/R alone. Cx37 and Cx43 protein expression did not differ between Cx40 null and wild type cells. LPS + H/R increased resistance PKA- and PKC-dependently. By immunoprecipitating Cx40, we found that LPS + H/R reduced serine phosphorylation to a much greater degree than that observed for LPS or H/R alone. Further, PKA-specific, but not PKC-specific serine phosphorylation of Cx40 was also significantly reduced following LPS + H/R. This reduction was prevented by tyrosine kinase and MEK1/2 inhibition, by PKA activation, and mimicked in control cells by PKA inhibition. We conclude that LPS + H/R initiates tyrosine kinase- and ERK1/2-sensitive signaling that synergistically reduces inter-endothelial electrical coupling by dephosphorylating PKA-specific serine residues of Cx40.

摘要

我们发现,脂多糖(LPS)或缺氧复氧(H/R)通过靶向缝隙连接蛋白连接蛋白40(Cx40),以酪氨酸激酶、细胞外信号调节激酶1/2(ERK1/2)和蛋白激酶A(PKA)依赖的方式降低微血管内皮细胞之间的电偶联。由于LPS会损害微血管血流,导致微区域的H/R,因此同时存在的LPS + H/R比单独的LPS或H/R能更大程度地降低偶联。我们在培养的微血管内皮细胞(源自小鼠骨骼肌)模型中,从电偶联和Cx40的磷酸化状态方面研究了这种可能性。为了评估偶联,我们测量了注入细胞单层的电流扩散,并计算细胞间电阻作为偶联的反向指标。在野生型细胞中,但在Cx40基因敲除细胞中未观察到,同时存在的LPS + H/R协同增加电阻约270%,远高于单独LPS或H/R所观察到的水平。Cx37和Cx43蛋白表达在Cx40基因敲除细胞和野生型细胞之间没有差异。LPS + H/R以PKA和蛋白激酶C(PKC)依赖的方式增加电阻。通过免疫沉淀Cx40,我们发现LPS + H/R比单独的LPS或H/R更能显著降低丝氨酸磷酸化。此外,LPS + H/R后,Cx40的PKA特异性而非PKC特异性丝氨酸磷酸化也显著降低。这种降低可通过酪氨酸激酶和丝裂原活化蛋白激酶激酶1/2(MEK1/2)抑制、PKA激活来阻止,并且在对照细胞中通过PKA抑制来模拟。我们得出结论,LPS + H/R启动酪氨酸激酶和ERK1/2敏感的信号传导,通过使Cx40的PKA特异性丝氨酸残基去磷酸化,协同降低内皮细胞间的电偶联。

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