Institute of Cellular Biology and Pathology "Nicolae Simionescu" of the Romanian Academy, 8, B.P. Hasdeu Street, 050568 Bucharest, Romania.
Cell Signal. 2022 Sep;97:110399. doi: 10.1016/j.cellsig.2022.110399. Epub 2022 Jul 9.
The caveolae-mediated transport across polarized epithelial cell barriers has been largely deciphered in the last decades and is considered the second essential intracellular transfer mechanism, after the clathrin-dependent endocytosis. The basic cell biology knowledge was supplemented recently, with the molecular mechanisms beyond caveolae generation implying the key contribution of the lipid-binding proteins (the structural protein Caveolin and the adapter protein Cavin), along with the bulb coat stabilizing molecules PACSIN-2 and Eps15 homology domain protein-2. The current attention is focused also on caveolae architecture (such as the bulb coat, the neck, the membrane funnel inside the bulb, and the associated receptors), and their specific tasks during the intracellular transport of various cargoes. Here, we resume the present understanding of the assembly, detachment, and internalization of caveolae from the plasma membrane lipid raft domains, and give an updated view on transcytosis and endocytosis, the two itineraries of cargoes transport via caveolae. The review adds novel data on the signalling molecules regulating caveolae intracellular routes and on the transport dysregulation in diseases. The therapeutic possibilities offered by exploitation of Caveolin-1 expression and caveolae trafficking, and the urgent issues to be uncovered conclude the review.
过去几十年来,人们已经在很大程度上揭示了穴样内陷介导的跨极性上皮细胞屏障运输,这被认为是继网格蛋白依赖的内吞作用之后的第二种重要的细胞内转移机制。最近,随着涉及穴样内陷形成的分子机制的补充,即脂质结合蛋白(结构性蛋白窖蛋白和衔接蛋白 CAVIN)以及球帽稳定分子 PACSIN-2 和 Eps15 同源结构域蛋白-2 的关键贡献,基本的细胞生物学知识得到了补充。目前的研究重点还集中在穴样内陷的结构(如球帽、颈部、球帽内的膜漏斗和相关受体)及其在各种货物的细胞内运输过程中的特定任务。在这里,我们总结了目前对从质膜脂筏域组装、脱离和内化穴样内陷的理解,并对转胞吞作用和内吞作用这两种货物通过穴样内陷运输的途径进行了更新。该综述增加了关于调节穴样内陷细胞内途径的信号分子以及疾病中运输失调的新数据。该综述还总结了利用窖蛋白-1 表达和穴样内陷运输的治疗可能性以及需要揭示的紧迫问题。