Potter Beth A, Hughey Rebecca P, Weisz Ora A
Laboratory of Epithelial Cell Biology, Renal-Electrolyte Division, Univ. of Pittsburgh School of Medicine, 978 Scaife Hall, 3550 Terrace St., Pittsburgh, PA 15261, USA.
Am J Physiol Cell Physiol. 2006 Jan;290(1):C1-C10. doi: 10.1152/ajpcell.00333.2005.
The maintenance of proper epithelial function requires efficient sorting of newly synthesized and recycling proteins to the apical and basolateral surfaces of differentiated cells. Whereas basolateral protein sorting signals are generally confined to their cytoplasmic regions, apical targeting signals have been identified that localize to luminal, transmembrane, and cytoplasmic aspects of proteins. In the past few years, both N- and O-linked glycans have been identified as apical sorting determinants. Glycan structures are extraordinarily diverse and have tremendous information potential. Moreover, because the oligosaccharides added to a given protein can change depending on cell type and developmental stage, the potential exists for altering sorting pathways by modulation of the expression pattern of enzymes involved in glycan synthesis. In this review, we discuss the evidence for glycan-mediated apical sorting along the biosynthetic pathway and present possible mechanisms by which these common and heterogeneous posttranslational modifications might function as specific sorting signals.
维持上皮细胞的正常功能需要将新合成的和循环利用的蛋白质有效地分选到分化细胞的顶端和基底外侧表面。基底外侧蛋白质分选信号通常局限于其细胞质区域,而顶端靶向信号已被确定定位于蛋白质的腔面、跨膜和细胞质部分。在过去几年中,N-连接和O-连接聚糖都已被确定为顶端分选决定因素。聚糖结构极其多样,具有巨大的信息潜力。此外,由于添加到特定蛋白质上的寡糖会根据细胞类型和发育阶段而变化,因此存在通过调节参与聚糖合成的酶的表达模式来改变分选途径的可能性。在这篇综述中,我们讨论了沿着生物合成途径聚糖介导的顶端分选的证据,并提出了这些常见且异质的翻译后修饰可能作为特定分选信号发挥作用的可能机制。