首页> 外文期刊>Journal of Cell Science >Ubiquitylation-independent ER-associated degradation of an AE1 mutant associated with dominant hereditary spherocytosis in cattle.
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Ubiquitylation-independent ER-associated degradation of an AE1 mutant associated with dominant hereditary spherocytosis in cattle.

机译:牛的泛素化不依赖于ER相关的AE1突变体与显性遗传性球囊细胞增多相关的降解。

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摘要

Various mutations in the AE1 (anion exchanger 1, band 3) gene cause dominant hereditary spherocytosis, a common congenital hemolytic anemia associated with deficiencies of AE1 of different degrees and loss of mutant protein from red blood cell membranes. To determine the mechanisms underlying decreases in AE1 protein levels, we employed K562 and HEK293 cell lines and Xenopus oocytes together with bovine wild-type AE1 and an R664X nonsense mutant responsible for dominant hereditary spherocytosis to analyze protein expression, turnover, and intracellular localization. R664X-mutant protein underwent rapid degradation and caused specifically increased turnover and impaired trafficking to the plasma membrane of the wild-type protein through hetero-oligomer formation in K562 cells. Consistent with those observations, co-expression of mutant and wild-type AE1 reduced anion transport by the wild-type protein in oocytes. Transfection studies in K562 and HEK293 cells revealed that the major pathway mediating degradation of both R664X and wild-type AE1 employed endoplasmic reticulum (ER)-associated degradation through the proteasomal pathway. Proteasomal degradation of R664X protein appeared to be independent of both ubiquitylation and N-glycosylation, and aggresome formation was not observed following proteasome inhibition. These findings indicate that AE1 R664X protein, which is associated with dominant hereditary spherocytosis, has a dominant-negative effect on the expression of wild-type AE1.
机译:AE1(阴离子交换剂1,带3)基因中的各种突变引起显性遗传性球细胞增多,这是一种常见的先天性溶血性贫血,与不同程度的AE1缺乏有关,并且突变蛋白从红细胞膜中丢失。为了确定AE1蛋白水平降低的潜在机制,我们使用K562和HEK293细胞系和非洲爪蟾卵母细胞以及牛野生型AE1和负责显性遗传球菌病的R664X无意义突变体来分析蛋白表达,周转率和细胞内定位。 R664X突变蛋白经历了快速降解,并通过K562细胞中的异源寡聚体形成,特别引起了营业额的增加,并损害了野生型蛋白向质膜的运输。与这些观察结果一致,突变体和野生型AE1的共表达减少了卵母细胞中野生型蛋白的阴离子转运。在K562和HEK293细胞中的转染研究表明,介导R664X和野生型AE1降解的主要途径是通过蛋白酶体途径利用内质网(ER)相关的降解。 R664X蛋白的蛋白酶体降解似乎与泛素化和N-糖基化无关,并且在蛋白酶体抑制后未观察到聚集体形成。这些发现表明,与优势遗传性球菌病相关的AE1 R664X蛋白对野生型AE1的表达具有显性负效应。

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