杂化和复合n -聚糖对内源性氯共转运体Slc12a2细胞表面靶向的影响

Q3 Biochemistry, Genetics and Molecular Biology International Journal of Cell Biology Pub Date : 2015-01-01 Epub Date: 2015-08-17 DOI:10.1155/2015/505294
Richa Singh, Mohammed Mashari Almutairi, Romario Pacheco-Andrade, Mohamed Y Mahmoud Almiahuob, Mauricio Di Fulvio
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引用次数: 21

摘要

Na(+)K(+)2Cl(-)共转运蛋白-1 (Slc12a2, NKCC1)分布广泛,参与细胞体积/离子调节。功能性NKCC1位于所研究的所有细胞的质膜中,特别是在大多数极化细胞的基底外膜中。尽管NKCC1的质膜分选机制尚不清楚,但假设n -糖基化是必要的。在这里,我们表征了NKCC1在COS7细胞中的表达、n -糖基化和分布。我们发现约25%的NKCC1是复合n -糖基化的,而其余的则对应于核心/高甘露糖和杂交型n -糖基化形式。此外,约10%的NKCC1到达质膜,主要是核心/高甘露糖型,而约90%的NKCC1分布在明确的细胞内区室中。此外,tunicamycin抑制n -聚糖生物合成的第一步会降低位于NKCC1的总膜和质膜,导致几乎无法检测到的共转运功能。此外,用苦马豆素或kifunenine抑制n -聚糖成熟增加了核心/杂交型NKCC1的表达,但消除了质膜复合物n -糖基化NKCC1和运输功能。综上所述,这些结果表明:(1)NKCC1是独立于其n -聚糖性质被传递到COS7细胞的质膜上的,(2)大多数NKCC1在质膜上是核心/杂交型n -糖基化的,(3)最小比例的复合n -糖基化的NKCC1具有功能活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Impact of Hybrid and Complex N-Glycans on Cell Surface Targeting of the Endogenous Chloride Cotransporter Slc12a2.

The Na(+)K(+)2Cl(-) cotransporter-1 (Slc12a2, NKCC1) is widely distributed and involved in cell volume/ion regulation. Functional NKCC1 locates in the plasma membrane of all cells studied, particularly in the basolateral membrane of most polarized cells. Although the mechanisms involved in plasma membrane sorting of NKCC1 are poorly understood, it is assumed that N-glycosylation is necessary. Here, we characterize expression, N-glycosylation, and distribution of NKCC1 in COS7 cells. We show that ~25% of NKCC1 is complex N-glycosylated whereas the rest of it corresponds to core/high-mannose and hybrid-type N-glycosylated forms. Further, ~10% of NKCC1 reaches the plasma membrane, mostly as core/high-mannose type, whereas ~90% of NKCC1 is distributed in defined intracellular compartments. In addition, inhibition of the first step of N-glycan biosynthesis with tunicamycin decreases total and plasma membrane located NKCC1 resulting in almost undetectable cotransport function. Moreover, inhibition of N-glycan maturation with swainsonine or kifunensine increased core/hybrid-type NKCC1 expression but eliminated plasma membrane complex N-glycosylated NKCC1 and transport function. Together, these results suggest that (i) NKCC1 is delivered to the plasma membrane of COS7 cells independently of its N-glycan nature, (ii) most of NKCC1 in the plasma membrane is core/hybrid-type N-glycosylated, and (iii) the minimal proportion of complex N-glycosylated NKCC1 is functionally active.

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来源期刊
International Journal of Cell Biology
International Journal of Cell Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
3.30
自引率
0.00%
发文量
4
审稿时长
20 weeks
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