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N-糖基化在人类SLC26A2和A3阴离子转运膜糖蛋白表达中的作用

Role of N-glycosylation in the expression of human SLC26A2 and A3 anion transport membrane glycoproteins .

作者信息

Rapp Chloe L, Li Jing, Badior Katherine E, Williams David B, Casey Joseph R, Reithmeier Reinhart A F

机构信息

a Department of Biochemistry, University of Toronto, Toronto, ON M5S 1A8, Canada.

b Department of Biochemistry, University of Alberta, Edmonton, AB T6G 2H7, Canada.

出版信息

Biochem Cell Biol. 2019 Jun;97(3):290-306. doi: 10.1139/bcb-2018-0139. Epub 2018 Nov 21.

Abstract

The human solute carrier 26 (SLC26) gene family of anion transporters consists of 10 members (-, being a pseudogene) that encode membrane glycoproteins with 14 transmembrane segments and a C-terminal cytoplasmic sulfate transporter anti-sigma antagonist domain. Thus far, mutations in eight members of the family (-, , and ) have been linked to diseases in humans. Our goal is to characterize the role of N-glycosylation and the effect of mutations in SLC26A2 and A3 proteins on their functional expression in transfected HEK-293 cells. We found that certain mutants were retained in the endoplamic reticulum via an interaction with the lectin chaperone calnexin. Some could escape protein quality control and traffic to the cell surface upon removal of the N-glycosylation sites. Furthermore, we found that loss of N-glycosylation reduced expression of SLC26A2 at the cell surface. Loss of N-glycosylation had no effect on the stability of SLC26A3, yet resulted in a profound decrease in transport activity. Thus, N-glycosylation plays three roles in the functional expression of SLC26 proteins: (1) to retain misfolded proteins in the endoplamic reticulum, (2) to stabilize the protein at the cell surface, and (3) to maintain the transport protein in a functional state.

摘要

人类阴离子转运体溶质载体26(SLC26)基因家族由10个成员组成(其中 为假基因),这些成员编码具有14个跨膜区段和一个C端胞质硫酸盐转运体抗σ拮抗剂结构域的膜糖蛋白。到目前为止,该家族8个成员( 、 和 )中的突变已与人类疾病相关联。我们的目标是确定N-糖基化的作用以及SLC26A2和A3蛋白中的突变对其在转染的HEK-293细胞中功能表达的影响。我们发现某些突变体通过与凝集素伴侣钙连蛋白相互作用而滞留在内质网中。一些突变体在去除N-糖基化位点后可以逃避蛋白质质量控制并转运到细胞表面。此外,我们发现N-糖基化的缺失会降低SLC26A2在细胞表面的表达。N-糖基化的缺失对SLC26A3的稳定性没有影响,但会导致转运活性显著降低。因此,N-糖基化在SLC26蛋白的功能表达中起三个作用:(1)将错误折叠的蛋白滞留在内质网中,(2)在细胞表面稳定蛋白,(3)使转运蛋白保持功能状态。

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