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肾脏阴离子交换蛋白 1 的高尔基滞留型远端肾小管酸中毒突变体在肾细胞中的降解机制。

Degradation mechanism of a Golgi-retained distal renal tubular acidosis mutant of the kidney anion exchanger 1 in renal cells.

机构信息

Department of Physiology, University of Alberta, Edmonton, Alberta, Canada; and.

Department of Physiology, McGill University, Montreal, Quebec, Canada.

出版信息

Am J Physiol Cell Physiol. 2014 Aug 1;307(3):C296-307. doi: 10.1152/ajpcell.00310.2013. Epub 2014 Jun 11.

Abstract

Distal renal tubular acidosis (dRTA) can be caused by mutations in the SLC4A1 gene encoding the anion exchanger 1 (AE1). Both recessive and dominant mutations result in mistrafficking of proteins, preventing them from reaching the basolateral membrane of renal epithelial cells, where their function is needed. In this study, we show that two dRTA mutants are prematurely degraded. Therefore, we investigated the degradation pathway of the kidney AE1 G701D mutant that is retained in the Golgi. Little is known about degradation of nonnative membrane proteins from the Golgi compartments in mammalian cells. We show that the kidney AE1 G701D mutant is polyubiquitylated and degraded by the lysosome and the proteosome. This mutant reaches the plasma membrane, where it is endocytosed and degraded by the lysosome via a mechanism dependent on the peripheral quality control machinery. Furthermore, we show that the function of the mutant is rescued at the cell surface upon inhibition of the lysosome and incubation with a chemical chaperone. We conclude that modulating the peripheral quality control machinery may provide a novel therapeutic option for treatment of patients with dRTA due to a Golgi-retained mutant.

摘要

远端肾小管性酸中毒(dRTA)可由编码阴离子交换器 1(AE1)的 SLC4A1 基因突变引起。隐性和显性突变导致蛋白错误运输,阻止其到达肾上皮细胞的基底外侧膜,而其功能在此处发挥作用。在这项研究中,我们表明两种 dRTA 突变体被过早降解。因此,我们研究了在高尔基体内保留的肾脏 AE1 G701D 突变体的降解途径。关于哺乳动物细胞中从高尔基体隔间中非天然膜蛋白的降解知之甚少。我们表明,肾脏 AE1 G701D 突变体被多泛素化并通过溶酶体和蛋白酶体降解。该突变体到达质膜,在质膜中通过依赖于外围质量控制机制的内吞作用和溶酶体降解。此外,我们表明,通过抑制溶酶体和用化学伴侣孵育,突变体的功能在细胞表面得到恢复。我们得出结论,调节外围质量控制机制可能为治疗由于高尔基体保留的突变体引起的 dRTA 患者提供一种新的治疗选择。

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