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PAXillin 酪氨酸磷酸化在 LPS 诱导的线粒体裂变、ROS 生成和肺内皮屏障丧失中起关键作用。

Essential role for paxillin tyrosine phosphorylation in LPS-induced mitochondrial fission, ROS generation and lung endothelial barrier loss.

机构信息

Department of Pharmacology, University of Illinois at Chicago, COMRB Room # 3137, 909, South Wolcott Avenue, Chicago, IL, 60612, USA.

The Affiliated Hospital of Medical School, Medical School of Ningbo University, 247 Renmin Road, Ningbo, China.

出版信息

Sci Rep. 2021 Sep 2;11(1):17546. doi: 10.1038/s41598-021-97006-y.

Abstract

We have shown that both reactive oxygen species (ROS) and paxillin tyrosine phosphorylation regulate LPS-induced human lung endothelial permeability. Mitochondrial ROS (mtROS) is known to increase endothelial cell (EC) permeability which requires dynamic change in mitochondrial morphology, events that are likely to be regulated by paxillin. Here, we investigated the role of paxillin and its tyrosine phosphorylation in regulating LPS-induced mitochondrial dynamics, mtROS production and human lung microvascular EC (HLMVEC) dysfunction. LPS, in a time-dependent manner, induced higher levels of ROS generation in the mitochondria compared to cytoplasm or nucleus. Down-regulation of paxillin expression with siRNA or ecto-expression of paxillin Y31F or Y118F mutant plasmids attenuated LPS-induced mtROS in HLMVECs. Pre-treatment with MitoTEMPO, a scavenger of mtROS, attenuated LPS-induced mtROS, endothelial permeability and VE-cadherin phosphorylation. Further, LPS-induced mitochondrial fission in HLMVECs was attenuated by both a paxillin siRNA, and paxillin Y31F/Y118F mutant. LPS stimulated phosphorylation of dynamin-related protein (DRP1) at S616, which was also attenuated by paxillin siRNA, and paxillinY31/Y118 mutants. Inhibition of DRP1 phosphorylation by P110 attenuated LPS-induced mtROS and endothelial permeability. LPS challenge of HLMVECs enhanced interaction between paxillin, ERK, and DRP1, and inhibition of ERK1/2 activation with PD98059 blocked mitochondrial fission. Taken together, these results suggest a key role for paxillin tyrosine phosphorylation in LPS-induced mitochondrial fission, mtROS generation and EC barrier dysfunction.

摘要

我们已经表明,活性氧(ROS)和桩蛋白酪氨酸磷酸化都调节 LPS 诱导的人肺内皮通透性。已知线粒体 ROS(mtROS)会增加内皮细胞(EC)的通透性,这需要线粒体形态的动态变化,这些事件可能受到桩蛋白的调节。在这里,我们研究了桩蛋白及其酪氨酸磷酸化在调节 LPS 诱导的线粒体动力学、mtROS 产生和人肺微血管内皮细胞(HLMVEC)功能障碍中的作用。LPS 以时间依赖性方式在与细胞质或核相比时,诱导线粒体中产生更高水平的 ROS。用 siRNA 下调桩蛋白表达或表达桩蛋白 Y31F 或 Y118F 突变质粒可减弱 LPS 诱导的 HLMVEC 中的 mtROS。MitoTEMPO 预处理,一种 mtROS 清除剂,可减弱 LPS 诱导的 mtROS、内皮通透性和 VE-钙粘蛋白磷酸化。此外,LPS 诱导的 HLMVEC 中线粒体裂变也被桩蛋白 siRNA 和桩蛋白 Y31F/Y118F 突变体减弱。LPS 刺激 dynamin 相关蛋白(DRP1)在 S616 处的磷酸化,这也被桩蛋白 siRNA 和桩蛋白 Y31/Y118 突变体减弱。通过 P110 抑制 DRP1 磷酸化可减弱 LPS 诱导的 mtROS 和内皮通透性。LPS 对 HLMVEC 的刺激增强了桩蛋白、ERK 和 DRP1 之间的相互作用,用 PD98059 抑制 ERK1/2 激活可阻断线粒体裂变。总之,这些结果表明,桩蛋白酪氨酸磷酸化在 LPS 诱导的线粒体裂变、mtROS 产生和 EC 屏障功能障碍中起关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/049c/8413352/848ad4a0017c/41598_2021_97006_Fig1_HTML.jpg

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