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Phosphorylation of Claudin-5 and Occludin by Rho Kinase in Brain Endothelial Cells

机译:Rho激酶在脑内皮细胞中对Claudin-5和Occludin的磷酸化作用

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摘要

Critical to the proper maintenance of blood-brain-barrier (BBB) integrity are the endothelial tight junctions (TJs). Posttranslational modifications of essential endothelial TJ proteins, occludin and claudin-5, contribute and possibly disrupt BBB integrity. Our previous work has shown that Rho kinase (RhoK) activation mediates occludin and claudin-5 phosphorylation resulting in diminished barrier tightness and enhanced monocyte migration across BBB in the setting of human immunodeficiency virus-1 encephalitis (HIVE). To determine whether RhoK can directly phosphorylate TJ proteins, we examined phosphorylation of cytoplasmic domains of recombinant claudin-5 and occludin by RhoK. We found that RhoK predominately phosphorylated two sites on occludin (T382 and S507) and one site on claudin-5 (T207). Specific anti-phosphopeptide antibodies were developed for these sites, allowing the detection of phosphorylated occludin at T382 and S507, and claudin-5 at T207 from full-length recombinant occludin and claudin-5 transiently expressed in COS-7 cells and mouse brain microvascular endothelial cells. Finally, these phosphospecific antibodies demonstrated enhanced staining of brain endothelial cells in the mouse model for HIVE and human HIVE brains featuring mononuclear cell infiltration across disrupted BBB. Our results demonstrated the direct phosphorylation of occludin and claudin-5 by RhoK at specific sites, which was increased in encephalitic brain tissue. These antibodies could be useful reagents for monitoring BBB dysfunction >in vivo.
机译:妥善维持血脑屏障(BBB)完整性的关键是内皮紧密连接(TJ)。基本内皮TJ蛋白,occludin和claudin-5的翻译后修饰有助于甚至可能破坏BBB的完整性。我们以前的工作表明,在人类免疫缺陷病毒1型脑炎(HIVE)的情况下,Rho激酶(RhoK)的激活介导了occludin和claudin-5的磷酸化,从而导致屏障紧密性降低和单核细胞跨BBB迁移的增强。为了确定RhoK是否可以直接磷酸化TJ蛋白,我们检查了RhoK对重组claudin-5和occludin胞质域的磷酸化作用。我们发现,RhoK主要将occludin的两个位点(T382和S507)和claudin-5的一个位点(T207)磷酸化。针对这些位点开发了特异性抗磷酸肽抗体,从而可以检测瞬时在COS-7细胞和小鼠脑微血管内皮中瞬时表达的全长重组occludin和claudin-5的T382和S507处的磷酸化occludin和T207处的claudin-5。细胞。最终,这些磷酸特异性抗体在小鼠和人类HIVE脑的小鼠模型中证明了脑内皮细胞的染色增强,其特征是单核细胞浸润穿过破坏的BBB。我们的结果表明,RhoK在特定位点将occludin和claudin-5直接磷酸化,在脑性脑组织中增加。这些抗体可用于>体内监测血脑屏障功能障碍。

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