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Functional and structural conservation of CBS domains from CLC chloride channels

机译:CLC氯化物通道对CBS域的功能和结构保守

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摘要

All eukaryotic CLC Cl channel subunits possess a long cytoplasmic carboxy-terminus that contains two so-called CBS (cystathionine β-synthase) domains. These domains are found in various unrelated proteins from all phylae. The crystal structure of the CBS domains of inosine monophosphate dehydrogenase (IMPDH) is known, but it is not known whether this structure is conserved in CLC channels. Working primarily with ClC-1, we used deletion scanning mutagenesis, coimmunoprecipitation and electrophysiology to demonstrate that its CBS domains interact. The replacement of CBS domains of ClC-1 with the corresponding CBS domains from other CLC channels and even human IMPDH yielded functional channels, indicating a high degree of structural conservation. Based on a homology model of the pair of CBS domains of CLC channels, we identified some residues that, when mutated, affected the common gate which acts on both pores of the dimeric channel. Thus, we propose that the structure of CBS domains from CLC channels is highly conserved and that they play a functional role in the common gate.
机译:所有的真核CLC Cl -通道亚单位都具有一个长的胞质羧基末端,其中包含两个所谓的CBS(胱硫醚β-合酶)结构域。这些结构域存在于所有植物的各种无关蛋白质中。肌苷单磷酸脱氢酶(IMPDH)的CBS域的晶体结构是已知的,但尚不清楚该结构在CLC通道中是否保守。我们主要与ClC-1一起工作,我们使用了缺失扫描诱变,免疫共沉淀和电生理学来证明其CBS结构域相互作用。用来自其他CLC通道甚至人IMPDH的相应CBS结构域替换ClC-1的CBS结构域可产生功能性通道,表明高度的结构保守性。基于CLC通道的一对CBS域的同源性模型,我们鉴定了一些残基,这些残基在发生突变时会影响作用于二聚体通道两个孔的共同门。因此,我们建议来自CLC通道的CBS域的结构是高度保守的,并且它们在公用门中起功能性作用。

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