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16纳米尿血小板颗粒的冷冻电镜研究揭示的尿路上皮通透性屏障功能的结构基础

Structural basis of urothelial permeability barrier function as revealed by Cryo-EM studies of the 16 nm uroplakin particle.

作者信息

Min Guangwei, Zhou Ge, Schapira Matthieu, Sun Tung-Tien, Kong Xiang-Peng

机构信息

Structural Biology Program, Skirball Institute of Biomolecular Medicine, New York University School of Medicine, New York, NY 10016, USA.

出版信息

J Cell Sci. 2003 Oct 15;116(Pt 20):4087-94. doi: 10.1242/jcs.00811.

Abstract

The apical surface of terminally differentiated mammalian urothelial umbrella cells is covered by numerous plaques consisting of two-dimensional (2D) crystals of hexagonally packed 16 nm uroplakin particles, and functions as a remarkable permeability barrier. To determine the structural basis of this barrier function, we generated, by electron cryo microscopy, a projection map of the isolated mouse urothelial plaques at 7 A and a 3D structure at 10 A resolution. Our results indicate that each 16 nm particle has a central 6 nm lipid-filled 'hole' surrounded by 6 inverted U-shaped subunits, each consisting of an inner and an outer subdomain connected via a distal joint. The transmembrane portion of each subdomain can fit about 5 helices. This finding, coupled with our STEM and EM data, suggests that uroplakin pairs Ia/II and Ib/III are associated with the inner and outer subdomains, respectively. Since the inner subdomains interconnect to form a ring, which can potentially segregate the lipids of the central hole from those outside, the 2D crystalline uroplakin network may impose an organized state and a severely restricted freedom of movement on the lipid components, thus reducing membrane fluidity and contributing to the barrier function of urothelial plaques. Our finding that distinct uroplakin substructures are in contact with the cytoplasmic and exoplasmic leaflets of the plaque suggests that the two leaflets may have different lipid composition and contribute asymmetrically to the barrier function. We propose that the crystalline lattice structure of uroplakin, through its interactions with specialized lipids, plays a major role in the remarkable permeability barrier function of urothelial apical surface. Our results also have implications for the transmembrane signal transduction in urothelial cells as induced by the binding of uropathogenic E. coli to its uroplakin receptor.

摘要

终末分化的哺乳动物尿路上皮伞细胞的顶端表面覆盖着许多斑块,这些斑块由呈六边形排列的16纳米尿路上皮蛋白颗粒的二维(2D)晶体组成,并作为一个显著的渗透屏障发挥作用。为了确定这种屏障功能的结构基础,我们通过电子冷冻显微镜生成了分离的小鼠尿路上皮斑块在7埃分辨率下的投影图以及在10埃分辨率下的三维结构。我们的结果表明,每个16纳米的颗粒都有一个中心6纳米的充满脂质的“孔”,周围环绕着6个倒置的U形亚基,每个亚基由通过远端关节连接的一个内部亚结构域和一个外部亚结构域组成。每个亚结构域的跨膜部分大约可以容纳5个螺旋。这一发现,再结合我们的扫描透射电子显微镜(STEM)和电子显微镜(EM)数据,表明尿路上皮蛋白对Ia/II和Ib/III分别与内部和外部亚结构域相关联。由于内部亚结构域相互连接形成一个环,这可能会将中心孔的脂质与外部的脂质分隔开,二维晶体尿路上皮蛋白网络可能会使脂质成分呈现出一种有序状态,并严重限制其运动自由度,从而降低膜流动性并有助于尿路上皮斑块的屏障功能。我们发现不同的尿路上皮蛋白亚结构与斑块的细胞质小叶和细胞外小叶接触,这表明这两个小叶可能具有不同的脂质组成,并对屏障功能做出不对称贡献。我们提出,尿路上皮蛋白的晶格结构通过与特殊脂质的相互作用,在尿路上皮顶端表面显著的渗透屏障功能中起主要作用。我们的结果对于尿路致病性大肠杆菌与其尿路上皮蛋白受体结合所诱导的尿路上皮细胞跨膜信号转导也具有启示意义。

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