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Trafficking-deficient hERG K+ channels linked to long QT syndrome are regulated by a microtubule-dependent quality control compartment in the ER

机译:与长期QT综合征相关的贩运缺陷型hERG K +通道由ER中的微管依赖性质量控制区调节

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摘要

The human ether-a-go-go related gene (hERG) encodes the voltage-gated K+ channel that underlies the rapidly activating delayed-rectifier current in cardiac myocytes. hERG is synthesized in the endoplasmic reticulum (ER) as an “immature” N-linked glycoprotein and is terminally glycosylated in the Golgi apparatus. Most hERG missense mutations linked to long QT syndrome type 2 (LQT2) reduce the terminal glycosylation and functional expression. We tested the hypothesis that a distinct pre-Golgi compartment negatively regulates the trafficking of some LQT2 mutations to the Golgi apparatus. We found that treating cells in nocodazole, a microtubule depolymerizing agent, altered the subcellular localization, functional expression, and glycosylation of the LQT2 mutation G601S-hERG differently from wild-type hERG (WT-hERG). G601S-hERG quickly redistributed to peripheral compartments that partially colocalized with KDEL (Lys-Asp-Glu-Leu) chaperones but not calnexin, Sec31, or the ER golgi intermediate compartment (ERGIC). Treating cells in E-4031, a drug that increases the functional expression of G601S-hERG, prevented the accumulation of G601S-hERG to the peripheral compartments and increased G601S-hERG colocalization with the ERGIC. Coexpressing the temperature-sensitive mutant G protein from vesicular stomatitis virus, a mutant N-linked glycoprotein that is retained in the ER, showed it was not restricted to the same peripheral compartments as G601S-hERG at nonpermissive temperatures. We conclude that the trafficking of G601S-hERG is negatively regulated by a microtubule-dependent compartment within the ER. Identifying mechanisms that prevent the sorting or promote the release of LQT2 channels from this compartment may represent a novel therapeutic strategy for LQT2.
机译:人源于移动的相关基因(hERG)编码电压门控的K +通道,该通道是心肌细胞中快速激活的延迟整流器电流的基础。 hERG在内质网(ER)中作为“未成熟”的N连接糖蛋白合成,并在高尔基体中被末端糖基化。大多数与长QT综合征2型(LQT2)相关的hERG错义突变会降低末端糖基化和功能性表达。我们测试了一个假设,即一个不同的前高尔基前区隔负调节一些LQT2突变向高尔基体的运输。我们发现在诺考达唑(一种微管解聚剂)中处理细胞,与野生型hERG(WT-hERG)不同,改变了LQT2突变G601S-hERG的亚细胞定位,功能表达和糖基化。 G601S-hERG迅速重新分布到与KDEL(Lys-Asp-Glu-Leu)分子伴侣部分共定位的外围区室,而不是钙结合蛋白,Sec31或ER高尔基体中间区(ERGIC)。在E-4031中处理细胞,该药物可增加G601S-hERG的功能性表达,可防止G601S-hERG积聚到周围区隔,并增加G601S-hERG与ERGIC的共定位。从水泡性口腔炎病毒共表达温度敏感的突变G蛋白(一种保留在ER中的突变N连接糖蛋白)表明,在非允许温度下,它不限于与G601S-hERG相同的外周区室。我们得出的结论是,G601S-hERG的运输受到ER内部微管依赖性小室的负调控。确定防止分类或促进LQT2通道从该隔室释放的机制可能代表LQT2的新型治疗策略。

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