Liu Xuwen, Su Enming J, Dreffs Alyssa, Gillies John P, Merlino Madeline, Gao Lu, Peregoff Julian S, Lin Cheng-Mao, Ross Margaret Elizabeth, DeSantis Morgan E, Lawrence Daniel A, Antonetti David A
Department of Ophthalmology and Visual Science, University of Michigan School of Medicine, Ann Arbor, MI.
Department of Internal Medicine, University of Michigan School of Medicine, Ann Arbor, MI.
bioRxiv. 2025 Jun 15:2025.06.12.659326. doi: 10.1101/2025.06.12.659326.
Previous studies of the tight junction protein occludin (OCLN) suggest that multiple phosphorylation sites on the carboxy-terminal domain contribute a regulatory role in vascular barrier properties. However, gene deletion studies failed to identify a clear functional role for OCLN, despite multiple phenotypic alterations. Importantly, previous studies targeting exon 3 allowed expression of a splice variant starting at exon 4, (isoform 4) that expresses the full carboxy-terminal tail. Here we show that the OCLN carboxy-terminus forms a complex with the light intermediate chain (LIC) of dynein to link tight junction cargo to the minus end directed motor protein. Mutational analysis revealed S471 phosphorylation is required for binding to the LIC while S490 phosphorylation is required for trafficking. Expressing S490A mutant prevented endothelial cell proliferation and collateral angiogenesis. gene deletion targeting exon 5, preventing full length and isoform 4 expression, resulted in embryonic lethality. In summary, OCLN links tight junction cargo to the dynein motor, regulating trafficking in a phosphorylation dependent manner and contributing to both VEGF-induced vascular permeability and collateral angiogenesis.
以往对紧密连接蛋白闭合蛋白(OCLN)的研究表明,其羧基末端结构域上的多个磷酸化位点在血管屏障特性中发挥调节作用。然而,基因敲除研究未能明确OCLN的功能作用,尽管出现了多种表型改变。重要的是,以往针对外显子3的研究允许从外显子4开始表达一种剪接变体(异构体4),该变体表达完整的羧基末端尾巴。在此,我们表明OCLN羧基末端与动力蛋白的轻中间链(LIC)形成复合物,将紧密连接货物连接至负端定向运动蛋白。突变分析显示,与LIC结合需要S471磷酸化,而运输需要S490磷酸化。表达S490A突变体可阻止内皮细胞增殖和侧支血管生成。靶向外显子5的基因敲除可阻止全长和异构体4的表达,导致胚胎致死。总之,OCLN将紧密连接货物与动力蛋白连接起来,以磷酸化依赖的方式调节运输,并促进VEGF诱导的血管通透性和侧支血管生成。