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首页> 外文期刊>Frontiers in Physiology >Mutations associated with Dent's disease affect gating and voltage dependence of the human anion/proton exchanger ClC-5
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Mutations associated with Dent's disease affect gating and voltage dependence of the human anion/proton exchanger ClC-5

机译:与凹痕疾病相关的突变会影响人阴离子/质子交换器CLC-5的门控和电压依赖性

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Dent's disease is associated with impaired renal endocytosis and endosomal acidification. It is linked to mutations in the membrane chloride/proton exchanger ClC-5; however, a direct link between localization in the protein and functional phenotype of the mutants has not been established until now. Here, two Dent's disease mutations, G212A and E267A, were investigated using heterologous expression in HEK293T cells, patch-clamp measurements and confocal imaging. WT and mutant ClC-5 exhibited mixed cell membrane and vesicular distribution. Reduced ion currents were measured for both mutants and both exhibited reduced capability to support endosomal acidification. Functionally, mutation G212A was capable of mediating anion/proton antiport but dramatically shifted the activation of ClC-5 toward more depolarized potentials. The shift can be explained by impeded movements of the neighboring gating glutamate Glu_(ext), a residue that confers major part of the voltage dependence of ClC-5 and serves as a gate at the extracellular entrance of the anion transport pathway. Cell surface abundance of E267A was reduced by ~50% but also dramatically increased gating currents were detected for this mutant and accordingly reduced probability to undergoing cycles associated with electrogenic ion transport. Structurally, the gating alternations correlate to the proximity of E267A to the proton glutamate Glu_(in)that serves as intracellular gate in the proton transport pathway and regulates the open probability of ClC-5. Remarkably, two other mammalian isoforms, ClC-3 and ClC-4, also differ from ClC-5 in gating characteristics affected by the here investigated disease-causing mutations. This evolutionary specialization, together with the functional defects arising from mutations G212A and E267A, demonstrate that the complex gating behavior exhibited by most of the mammalian CLC transporters is an important determinant of their cellular function.
机译:登特病与肾功能受损的内吞作用和内涵体酸化有关。它被连接到在膜的突变氯化物/质子交换CLC-5;然而,在蛋白质的定位和突变体的功能表型之间的直接联系尚未建立到现在。这里,二登特病突变,G212A和E267A,使用在HEK293T细胞中异源表达,膜片钳测​​量和共焦成像的影响。 WT和突变体CLC-5表现出混合的细胞膜和囊泡分布。测定减少的离子电流为两种突变体和两个出降低的能力,以支持内含体酸化。在功能上,突变G212A是能够介导阴离子/质子逆向转运的但显着地错开CLC-5的朝向更去极化电位的激活。移位可以由相邻门控谷氨酸Glu_(EXT)的受阻运动来解释,一个残基CLC-5的电压依赖性的赋予主要部分,并且用作在阴离子转运途径的细胞外入口的栅极。 E267A的细胞表面丰度降低了〜50%,但对于该突变体以及相应地减少概率经受与电的离子传输相关联的周期进行检测也急剧增加选通电流。在结构上,交替选通关联到E267A的接近质子谷氨酸Glu_(在),用作在质子传递途径的细胞内门并调节CLC-5的开放概率。值得注意的是,其他两种哺乳动物同种型,CLC-3和CLC-4,也从CLC-5在门控受这里研究的致病突变特性不同。这种进化专业化,与功能上的缺陷,从突变G212A和E267A一起出现,表明大多数哺乳动物CLC转运表现出复杂的门的行为是他们的细胞功能的重要决定因素。

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