Sewduth Raj N, Kovacic Héléna, Jaspard-Vinassa Béatrice, Jecko Vincent, Wavasseur Thomas, Fritsch Nicolas, Pernot Mathieu, Jeaningros Sylvie, Roux Etienne, Dufourcq Pascale, Couffinhal Thierry, Duplàa Cécile
Univ. Bordeaux, INSERM, UMR1034, Biology of Cardiovascular Diseases, F-33600 Pessac, France.
Laboratorium voor Endotheliale Moleculaire Biologie (Vesalius Research Center), 3000 Leuven, Belgium.
Sci Signal. 2017 Jan 31;10(464):eaag3209. doi: 10.1126/scisignal.aag3209.
Endothelial cells serve as a barrier between blood and tissues. Maintenance of the endothelial cell barrier depends on the integrity of intercellular junctions, which is regulated by a polarity complex that includes the ζ isoform of atypical protein kinase C (PKCζ) and partitioning defective 3 (PAR3). We revealed that the E3 ubiquitin ligase PDZ domain-containing ring finger 3 (PDZRN3) regulated endothelial intercellular junction integrity. Endothelial cell-specific overexpression of Pdzrn3 led to early embryonic lethality with severe hemorrhaging and altered organization of endothelial intercellular junctions. Conversely, endothelial-specific loss of Pdzrn3 prevented vascular leakage in a mouse model of transient ischemic stroke, an effect that was mimicked by pharmacological inhibition of PKCζ. PDZRN3 regulated Wnt signaling and associated with a complex containing PAR3, PKCζ, and the multi-PDZ domain protein MUPP1 (Discs Lost-multi-PDZ domain protein 1) and targeted MUPP1 for proteasomal degradation in transfected cells. Transient ischemic stroke increased the ubiquitination of MUPP1, and deficiency of MUPP1 in endothelial cells was associated with decreased localization of PKCζ and PAR3 at intercellular junctions. In endothelial cells, Pdzrn3 overexpression increased permeability through a PKCζ-dependent pathway. In contrast, Pdzrn3 depletion enhanced PKCζ accumulation at cell-cell contacts and reinforced the cortical actin cytoskeleton under stress conditions. These findings reveal how PDZRN3 regulates vascular permeability through a PKCζ-containing complex.
内皮细胞充当血液与组织之间的屏障。内皮细胞屏障的维持取决于细胞间连接的完整性,而细胞间连接的完整性由一个极性复合体调节,该复合体包括非典型蛋白激酶C(PKCζ)的ζ亚型和分隔缺陷蛋白3(PAR3)。我们发现E3泛素连接酶含PDZ结构域的环指蛋白3(PDZRN3)调节内皮细胞间连接的完整性。内皮细胞特异性过表达Pdzrn3会导致早期胚胎致死,并伴有严重出血以及内皮细胞间连接的组织结构改变。相反,在短暂性脑缺血发作的小鼠模型中,内皮细胞特异性缺失Pdzrn3可防止血管渗漏,PKCζ的药理学抑制可模拟这种效应。PDZRN3调节Wnt信号通路,并与一个包含PAR3、PKCζ和多PDZ结构域蛋白MUPP1(失盘多PDZ结构域蛋白1)的复合体相关联,并在转染细胞中将MUPP1靶向蛋白酶体降解。短暂性脑缺血发作会增加MUPP1的泛素化,内皮细胞中MUPP1的缺乏与PKCζ和PAR3在细胞间连接处的定位减少有关。在内皮细胞中,Pdzrn3过表达通过PKCζ依赖的途径增加通透性。相反,Pdzrn3缺失会增强PKCζ在细胞-细胞接触处的积累,并在应激条件下加强皮质肌动蛋白细胞骨架。这些发现揭示了PDZRN3如何通过一个含PKCζ的复合体调节血管通透性。