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Adjacent pore-lining residues within sodium channels identified by paired cysteine mutagenesis.

机译:通过配对的半胱氨酸诱变识别钠通道内相邻的孔衬残基。

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摘要

The pores of voltage-gated ion channels are lined by protein loops that determine selectivity and conductance. The relative orientations of these "P" loops remain uncertain, as do the distances between them. Using site-directed mutagenesis, we introduced pairs of cysteines into the P loops of micro1 rat skeletal muscle sodium channels and sought functional evidence of proximity between the substituted residues. Only cysteinyl residues that are in close proximity can form disulfide bonds or metal-chelating sites. The mutant Y401C (domain I) spontaneously formed a disulfide bond when paired with E758C in the P loop of domain II; the same residue, when coupled with G1530C in domain IV, created a high-affinity binding site for Cd2+ ions. The results provide the first specific constraints for intramolecular dimensions of the sodium channel pore.
机译:电压门控离子通道的孔衬有确定选择性和电导率的蛋白质环。这些“ P”环的相对方向以及它们之间的距离都不确定。使用定点诱变,我们将半胱氨酸对引入micro1大鼠骨骼肌钠通道的P环中,并寻找取代残基之间接近的功能证据。只有紧邻的半胱氨酰残基可以形成二硫键或金属螯合位点。当在结构域II的P环中与E758C配对时,突变体Y401C(结构域I)自发形成二硫键;当在域IV中与G1530C偶联时,相同的残基为Cd2 +离子创建了高亲和力的结合位点。结果为钠通道孔的分子内尺寸提供了第一个特定的约束。

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