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KCNC3(R420H), a K+ channel mutation causative in spinocerebellar ataxia 13 displays aberrant intracellular trafficking

机译:KCNC3(R420H),脊髓小脑性共济失调13的一个K +通道突变,显示异常的细胞内运输

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Spinocerebellar ataxia 13 (SCA13) is an autosomal dominant disease resulting from mutations in KCNC3 (Kv3.3), a voltage-gated potassium channel. The KCNC3(R420H) mutation was first identified as causative for SCA13 in a four-generation Filipino kindred with over 20 affected individuals. Electrophysiological analyses in oocytes previously showed that this mutation did not lead to a functional channel and displayed a dominant negative phenotype. In an effort to identify the molecular basis of this allelic form of SCA13, we first determined that human MCNC3(WT) and KCNC3(R420H) display disparate post-translational modifications, and the mutant protein has reduced complex glycan adducts. Immunohistochemical analyses demonstrated that KCNC3(R420H) was not properly trafficking to the plasma membrane and surface biotinylation demonstrated that KCNC3(R420H) exhibited only 24% as much surface expression as KCNC3(WT).KCNC3(R420H) trafficked through the ER but was retained in the Golgi. KCNC3(R420H) expression results in altered Golgi and cellular morphology. Electron microscopy of KcNC3(R420H) localization further supports retention in the Golgi. These results are specific to the KCNC3(R420H) allele and provide new insight into the molecular basis of disease manifestation in SCA13. (C) 2014 Elsevier Inc. All rights reserved.
机译:脊髓小脑性共济失调13(SCA13)是一种常染色体显性疾病,是由电压门控钾通道KCNC3(Kv3.3)突变引起的。 KCNC3(R420H)突变是在四代菲律宾人中被鉴定为SCA13的致病因子,有20多个受影响的个体。以前在卵母细胞中进行电生理分析表明,这种突变不会导致功能性通道,并显示出显性的负表型。为了确定这种等位基因形式的SCA13的分子基础,我们首先确定了人MCNC3(WT)和KCNC3(R420H)显示不同的翻译后修饰,并且突变蛋白减少了复杂的聚糖加合物。免疫组织化学分析表明,KCNC3(R420H)没有适当地转运到质膜,并且表面生物素化表明,KCNC3(R420H)的表面表达仅为KCNC3(WT)的24%。在高尔基。 KCNC3(R420H)表达导致高尔基体和细胞形态改变。 KcNC3(R420H)定位的电子显微镜进一步支持在高尔基体中的保留。这些结果是特定于KCNC3(R420H)等位基因的,并为SCA13中疾病表现的分子基础提供了新的见识。 (C)2014 Elsevier Inc.保留所有权利。

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