Wang Chen-Chi, Sato Kota, Otsuka Yayoi, Otsu Wataru, Inaba Mutsumi
Laboratory of Molecular Medicine, Department of Veterinary Clinical Sciences, Graduate School of Veterinary Medicine, Hokkaido University, Sapporo, Japan.
J Vet Med Sci. 2012 Jan;74(1):17-25. doi: 10.1292/jvms.11-0345. Epub 2011 Aug 29.
To explore the roles of the conserved YXXΦ-type motif in the erythroid-specific N-terminal stretch of anion exchanger 1 (AE1), cell surface expression and internalization of various mutants derived from murine erythroid AE1 tagged with an N-terminal enhanced green fluorescent protein and an extracellular FLAG (EGFP-mAE1Flag) were explored in K562 and HEK293 cells. EGFP-mAE1Flag showed rapid internalization, in association with the internalizations of transferrin and the endogenous AE1 chaperone-like protein glycophorin A in K562 cells. Disruption of the conserved Y72VEL sequence markedly reduced the internalization and increased the relative abundance of cell-surface AE1, whereas substitution of the N-terminal region from bovine AE1 that lacks the relevant motif for the corresponding region had less of an effect on internalization. Deletion or substitution mutations of the Y7EDQL sequence in the bovine N-terminal stretch resulted in the decreased internalization of the AE1 proteins. Cell surface biotinylation and deglycosylation studies showed that approximately 30% of the cell-surface EGFP-mAE1Flag and several other mutants was sorted to the plasma membrane without N-glycan maturation in the Golgi apparatus. These findings indicate that the conserved YXXΦ sequence or a noncanonical YXXXΦ sequence in the N-terminal region facilitates the endocytic recycling of erythroid AE1 through a clathrin-mediated pathway.
为了探究阴离子交换蛋白1(AE1)红系特异性N端延伸中保守的YXXΦ基序的作用,我们在K562和HEK293细胞中研究了用N端增强型绿色荧光蛋白和细胞外FLAG标记的源自小鼠红系AE1的各种突变体的细胞表面表达和内化情况。在K562细胞中,EGFP-mAE1Flag显示出快速内化,这与转铁蛋白和内源性AE1伴侣样蛋白血型糖蛋白A的内化相关。保守的Y72VEL序列的破坏显著降低了内化并增加了细胞表面AE1的相对丰度,而用缺乏相关基序的牛AE1的N端区域替换相应区域对内化的影响较小。牛N端延伸中Y7EDQL序列的缺失或替换突变导致AE1蛋白的内化减少。细胞表面生物素化和去糖基化研究表明,约30%的细胞表面EGFP-mAE1Flag和其他几种突变体在高尔基体中未经N-聚糖成熟就被分选到质膜。这些发现表明,N端区域中保守的YXXΦ序列或非经典的YXXXΦ序列通过网格蛋白介导的途径促进红系AE1的内吞再循环。