Oda Toshiyuki, Yanagisawa Haruaki, Kikkawa Masahide, Kita Yoshihiro
University of Yamanashi.
Graduate School of Medicine, University of Tokyo.
Res Sq. 2023 Jul 12:rs.3.rs-3080731. doi: 10.21203/rs.3.rs-3080731/v1.
The urothelium, a distinct epithelial tissue lining the urinary tract, serves as an essential component in preserving urinary tract integrity and thwarting infections. The asymmetric unit membrane (AUM), primarily composed of the uroplakin complex, constitutes a critical permeability barrier in fulfilling this role. However, the molecular architectures of both the AUM and the uroplakin complex have remained enigmatic due to the paucity of high-resolution structural data. In this investigation, we employed cryo-electron microscopy to elucidate the three-dimensional structure of the uroplakin complex embedded within the porcine AUM at a resolution of 3.5 Å. Our findings unveiled that the uroplakin complexes are situated within hexagonally arranged crystalline lipid membrane domains, rich in hexosylceramides. Moreover, our research rectifies a misconception in a previous model by confirming the existence of a domain initially believed to be absent, and pinpointing the accurate location of a crucial Escherichia coli binding site implicated in urinary tract infections. These discoveries offer valuable insights into the molecular underpinnings governing the permeability barrier function of the urothelium and the orchestrated lipid phase formation within the plasma membrane.
尿路上皮是一种衬于尿路的独特上皮组织,是维持尿路完整性和抵御感染的重要组成部分。不对称单位膜(AUM)主要由尿血小板蛋白复合物组成,是实现这一功能的关键渗透屏障。然而,由于缺乏高分辨率结构数据,AUM和尿血小板蛋白复合物的分子结构一直成谜。在本研究中,我们采用冷冻电子显微镜以3.5 Å的分辨率阐明了嵌入猪AUM中的尿血小板蛋白复合物的三维结构。我们的研究结果表明,尿血小板蛋白复合物位于富含己糖神经酰胺的六边形排列的结晶脂质膜结构域内。此外,我们的研究纠正了先前模型中的一个误解,确认了一个最初认为不存在的结构域的存在,并确定了与尿路感染相关的关键大肠杆菌结合位点的准确位置。这些发现为尿路上皮渗透屏障功能的分子基础以及质膜内精心编排的脂质相形成提供了有价值的见解。