Department of Developmental Biology and Cancer Research, Hebrew University of Jerusalem, Jerusalem, Israel.
Racah Institute of Physics, Hebrew University of Jerusalem, Jerusalem, Israel.
Elife. 2021 Dec 24;10:e63253. doi: 10.7554/eLife.63253.
Tight junctions (TJs) between blood-brain barrier (BBB) endothelial cells construct a robust physical barrier, whose damage underlies BBB dysfunctions related to several neurodegenerative diseases. What makes these highly specialized BBB-TJs extremely restrictive remains unknown. Here, we use super-resolution microscopy (dSTORM) to uncover new structural and functional properties of BBB TJs. Focusing on three major components, Nano-scale resolution revealed sparse (occludin) vs. clustered (ZO1/claudin-5) molecular architecture. In mouse development, permeable TJs become first restrictive to large molecules, and only later to small molecules, with claudin-5 proteins arrangement compacting during this maturation process. Mechanistically, we reveal that ZO1 clustering is independent of claudin-5 in vivo. In contrast to accepted knowledge, we found that in the developmental context, total levels of claudin-5 inversely correlate with TJ functionality. Our super-resolution studies provide a unique perspective of BBB TJs and open new directions for understanding TJ functionality in biological barriers, ultimately enabling restoration in disease or modulation for drug delivery.
紧密连接(TJ)将血脑屏障(BBB)内皮细胞连接在一起,构成了一个坚固的物理屏障,其损伤是与几种神经退行性疾病相关的 BBB 功能障碍的基础。使这些高度特化的 BBB-TJ 具有极强的限制作用的原因尚不清楚。在这里,我们使用超分辨率显微镜(dSTORM)揭示了 BBB TJ 的新结构和功能特性。聚焦于三个主要成分,纳米级分辨率揭示了稀疏(occludin)与聚集(ZO1/ Claudin-5)的分子结构。在小鼠发育过程中,可渗透的 TJ 首先对大分子变得具有选择性,然后才对小分子具有选择性,在此成熟过程中,Claudin-5 蛋白的排列变得更加紧凑。从机制上讲,我们揭示了 ZO1 的聚集在体内与 Claudin-5 无关。与公认的知识相反,我们发现,在发育环境中,Claudin-5 的总水平与 TJ 功能呈负相关。我们的超分辨率研究为 BBB TJ 提供了独特的视角,并为理解生物屏障中 TJ 功能开辟了新的方向,最终能够在疾病中恢复或在药物输送中进行调节。