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基底外侧分选信号在将顶端蛋白重新定向到基底外侧细胞表面的能力上存在差异。

Basolateral sorting signals differ in their ability to redirect apical proteins to the basolateral cell surface.

作者信息

Renold A, Cescato R, Beuret N, Vogel L K, Wahlberg J M, Brown J L, Fiedler K, Spiess M

机构信息

Biozentrum, University of Basel, CH-4056 Basel, Switzerland.

出版信息

J Biol Chem. 2000 Mar 31;275(13):9290-5. doi: 10.1074/jbc.275.13.9290.

DOI:10.1074/jbc.275.13.9290
PMID:10734069
Abstract

Polarized sorting of membrane proteins in epithelial cells is mediated by cytoplasmic basolateral signals or by apical signals in the transmembrane or exoplasmic domains. Basolateral signals were generally found to be dominant over apical determinants. We have generated chimeric proteins with the cytoplasmic domain of either the asialoglycoprotein receptor H1 or the transferrin receptor, two basolateral proteins, fused to the transmembrane and exoplasmic segments of aminopeptidase N, an apical protein, and analyzed them in Madin-Darby canine kidney cells. Whereas both cytoplasmic sequences induced endocytosis of the chimeras, only that of the transferrin receptor mediated basolateral expression in steady state. The H1 fusion protein, although still largely sorted to the basolateral side in biosynthetic surface transport, was subsequently resorted to the apical cell surface. We tested whether the difference in sorting between trimeric wild-type H1 and the dimeric aminopeptidase chimera was caused by the number of sorting signals presented in the oligomers. Consistent with this hypothesis, the H1 signal was fully functional in a tetrameric fusion protein with the transmembrane and exoplasmic domains of influenza neuraminidase. The results suggest that basolateral signals per se need not be dominant over apical determinants for steady-state polarity and emphasize an important contribution of the valence of signals in polarized sorting.

摘要

上皮细胞中膜蛋白的极化分选是由细胞质基底外侧信号或跨膜或外质结构域中的顶端信号介导的。通常发现基底外侧信号比顶端决定因素占主导地位。我们构建了嵌合蛋白,将两种基底外侧蛋白——去唾液酸糖蛋白受体H1或转铁蛋白受体的细胞质结构域,与顶端蛋白氨肽酶N的跨膜和外质片段融合,并在犬肾细胞(Madin-Darby canine kidney cells)中对其进行分析。虽然两种细胞质序列都诱导了嵌合体的内吞作用,但只有转铁蛋白受体的细胞质序列在稳态下介导基底外侧表达。H1融合蛋白虽然在生物合成性表面转运中仍大部分分选至基底外侧,但随后又重新分选至顶端细胞表面。我们测试了三聚体野生型H1和二聚体氨肽酶嵌合体之间分选差异是否由寡聚体中呈现的分选信号数量引起。与该假设一致,H1信号在具有流感病毒神经氨酸酶跨膜和外质结构域的四聚体融合蛋白中完全发挥功能。结果表明,对于稳态极性而言,基底外侧信号本身不一定比顶端决定因素占主导地位,并强调了信号价态在极化分选中的重要作用。

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