Gao Xiao-Pei, Zhu Xiangdong, Fu Jian, Liu Qinghui, Frey Randall S, Malik Asrar B
Department of Pharmacology and Center of Lung and Vascular Biology, University of Illinois College of Medicine, Chicago, Illinois 60612, USA.
J Biol Chem. 2007 Mar 2;282(9):6116-25. doi: 10.1074/jbc.M610248200. Epub 2006 Dec 29.
We examined the role of class IA phosphoinositide 3-kinase (PI3K) in the regulation of activation of NADPH oxidase in PMNs and the mechanism of PMN-dependent lung inflammation and microvessel injury induced by the pro-inflammatory cytokine TNF-alpha. TNF-alpha stimulation of PMNs resulted in superoxide production that was dependent on CD11b/CD18-mediated PMN adhesion. Additionally, TNF-alpha induced the association of CD11b/CD18 with the NADPH oxidase subunit Nox2 (gp91(phox)) and phosphorylation of p47(phox), indicating the CD11b/CD18 dependence of NADPH oxidase activation. Transduction of wild-type PMNs with Deltap85 protein, a dominant-negative form of the class IA PI3K regulatory subunit, p85alpha, fused to HIV-TAT (TAT-Deltap85) prevented (i) CD11b/CD18-dependent PMN adhesion, (ii) interaction of CD11b/CD18 with Nox2 and phosphorylation of p47(phox), and (iii) PMN oxidant production. Furthermore, studies in mice showed that i.v. infusion of TAT-Deltap85 significantly reduced the recruitment of PMNs in lungs and increase in lung microvascular permeability induced by TNF-alpha. We conclude that class IA PI3K serves as a nodal point regulating CD11b/CD18-integrin-dependent PMN adhesion and activation of NADPH oxidase, and leads to oxidant production at sites of PMN adhesion, and the resultant lung microvascular injury in mice.
我们研究了IA类磷酸肌醇3激酶(PI3K)在调节中性粒细胞(PMN)中NADPH氧化酶激活的作用,以及促炎细胞因子肿瘤坏死因子-α(TNF-α)诱导的PMN依赖性肺部炎症和微血管损伤的机制。TNF-α刺激PMN导致超氧化物生成,这依赖于CD11b/CD18介导的PMN黏附。此外,TNF-α诱导CD11b/CD18与NADPH氧化酶亚基Nox2(gp91(phox))结合以及p47(phox)磷酸化,表明NADPH氧化酶激活依赖于CD11b/CD18。用与HIV-TAT融合的IA类PI3K调节亚基p85α的显性负性形式Deltap85蛋白转导野生型PMN可阻止:(i)CD11b/CD18依赖性PMN黏附;(ii)CD11b/CD18与Nox2的相互作用及p47(phox)磷酸化;(iii)PMN氧化剂生成。此外,小鼠研究表明,静脉注射TAT-Deltap85可显著减少TNF-α诱导的PMN在肺中的募集以及肺微血管通透性增加。我们得出结论,IA类PI3K作为一个节点,调节CD11b/CD18整合素依赖性PMN黏附和NADPH氧化酶激活,导致PMN黏附部位氧化剂生成,并引起小鼠肺微血管损伤。