Wu X R, Sun T T
Ronald O. Perelman Department of Dermatology, New York University School of Medicine, NY 10016.
J Cell Sci. 1993 Sep;106 ( Pt 1):31-43. doi: 10.1242/jcs.106.1.31.
Despite the fact that bladder epithelium has many interesting biological features and is a frequent site of carcinoma formation, relatively little is known about its biochemical differentiation. We have shown recently that a 47 kDa glycoprotein, uroplakin III (UPIII), in conjunction with uroplakins I (27 kDa) and II (15 kDa), forms the asymmetric unit membrane (AUM)--a highly specialized biomembrane characteristic of the apical surface of bladder epithelium. Deglycosylation and cDNA sequencing revealed that UPIII contains up to 20 kDa of N-linked sugars attached to a core protein of 28.9 kDa. The presence of an N-terminal signal peptide sequence and a single transmembrane domain located near the C terminus, plus the N-terminal location of all the potential N-glycosylation sites, points to a type I (N-exo/C-cyto) configuration. Thus the mass of the extracellular domain (20 kDa plus up to 20 kDa of sugar) of UPIII greatly exceeds that of its intracellular domain (5 kDa). Such an asymmetrical mass distribution, a feature shared by the other two major uroplakins, provides a molecular explanation as to why the luminal leaflet of AUM is almost twice as thick as the cytoplasmic one. The fact that of the three major proteins of AUM only UPIII has a significant cytoplasmic domain suggests that this molecule may play an important role in AUM-cytoskeleton interaction in terminally differentiated urothelial cells.
尽管膀胱上皮具有许多有趣的生物学特性,且是癌形成的常见部位,但对其生化分化的了解相对较少。我们最近发现,一种47 kDa的糖蛋白,即uroplakin III(UPIII),与uroplakins I(27 kDa)和II(15 kDa)一起,形成了不对称单位膜(AUM)——一种膀胱上皮顶端表面特有的高度专业化生物膜。去糖基化和cDNA测序显示,UPIII含有多达20 kDa的N-连接糖,连接在一个28.9 kDa的核心蛋白上。N端信号肽序列的存在以及位于C端附近的单个跨膜结构域,加上所有潜在N-糖基化位点的N端位置,表明其为I型(N-外/C-胞质)构型。因此,UPIII的细胞外结构域(20 kDa加上多达20 kDa的糖)的质量大大超过其细胞内结构域(5 kDa)的质量。这种不对称的质量分布是其他两种主要uroplakins共有的特征,这为AUM的腔面膜几乎是细胞质膜两倍厚提供了分子解释。AUM的三种主要蛋白质中只有UPIII具有显著的细胞质结构域,这一事实表明该分子可能在终末分化的尿路上皮细胞的AUM-细胞骨架相互作用中发挥重要作用。