Vascular Biology Center, Medical College of Georgia at Augusta University, Augusta, Georgia.
Center for Lung Vascular Pathobiology, University of Arizona, Phoenix, Arizona.
Sci Rep. 2016 Dec 15;6:39018. doi: 10.1038/srep39018.
The goal of this study was to investigate the role of MLC phosphatase (MLCP) in a LPS model of acute lung injury (ALI). We demonstrate that ectopic expression of a constitutively-active (C/A) MLCP regulatory subunit (MYPT1) attenuates the ability of LPS to increase endothelial (EC) permeability. Down-regulation of MYPT1 exacerbates LPS-induced expression of ICAM1 suggesting an anti-inflammatory role of MLCP. To determine whether MLCP contributes to LPS-induced ALI in vivo, we utilized a nanoparticle DNA delivery method to specifically target lung EC. Expression of a C/A MYPT1 reduced LPS-induced lung inflammation and vascular permeability. Further, increased expression of the CS1β (MLCP catalytic subunit) also reduced LPS-induced lung inflammation, whereas the inactive CS1β mutant increased vascular leak. We next examined the role of the cytoskeletal targets of MLCP, the ERM proteins (Ezrin/Radixin/Moesin), in mediating barrier dysfunction. LPS-induced increase in EC permeability was accompanied by PKC-mediated increase in ERM phosphorylation, which was more prominent in CS1β-depleted cells. Depletion of Moesin and Ezrin, but not Radixin attenuated LPS-induced increases in permeability. Further, delivery of a Moesin phospho-null mutant into murine lung endothelium attenuated LPS-induced lung inflammation and vascular leak suggesting that MLCP opposes LPS-induced ALI by mediating the dephosphorylation of Moesin and Ezrin.
本研究旨在探讨肌球蛋白轻链磷酸酶(MLCP)在脂多糖(LPS)诱导的急性肺损伤(ALI)模型中的作用。我们证明,组成型激活(C/A)MLCP 调节亚基(MYPT1)的异位表达可减弱 LPS 增加内皮细胞(EC)通透性的能力。MYPT1 的下调加剧了 LPS 诱导的 ICAM1 表达,提示 MLCP 具有抗炎作用。为了确定 MLCP 是否有助于 LPS 诱导的体内 ALI,我们利用纳米颗粒 DNA 传递方法特异性靶向肺 EC。C/A MYPT1 的表达减少了 LPS 诱导的肺炎症和血管通透性。此外,CS1β(MLCP 催化亚基)的表达增加也减少了 LPS 诱导的肺炎症,而无活性的 CS1β 突变体增加了血管渗漏。接下来,我们研究了 MLCP 的细胞骨架靶标 ERM 蛋白(Ezrin/Radixin/Moesin)在介导屏障功能障碍中的作用。LPS 诱导的 EC 通透性增加伴随着 PKC 介导的 ERM 磷酸化增加,在 CS1β 耗竭的细胞中更为明显。Moesin 和 Ezrin 的耗竭,但不是 Radixin,减弱了 LPS 诱导的通透性增加。此外,将 Moesin 磷酸化无效突变体递送至小鼠肺内皮细胞中,可减轻 LPS 诱导的肺炎症和血管渗漏,表明 MLCP 通过介导 Moesin 和 Ezrin 的去磷酸化来拮抗 LPS 诱导的 ALI。