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Histidines Are Responsible for Zinc Potentiation of the Current in KDC1 Carrot Channels

机译:组氨酸对KDC1胡萝卜通道中电流的锌增强负责

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摘要

Unlike all plant inward-rectifying potassium channels, the carrot channel KDC1 has two histidine pairs (H161,H162) in the S3–S4 and (H224,H225) in the S5–S6 linkers. When coinjected with KAT1 in Xenopus oocytes, KDC1 participates in the formation of heteromultimeric KDC1:KAT1 channels and the ionic current is potentiated by extracellular Zn2+. To investigate the potential interactions between KDC1 and zinc, a KDC1-KAT1 dimer was constructed. The dimeric and heteromeric channels displayed similar characteristics and the same sensitivity to zinc and other metals; this result suggests that zinc binding is mediated by residues in a single channel subunit. The KDC1:KAT1 currents were also potentiated by external Pb2+ and Cd2+ and inhibited by Ni2+. To investigate further the role of KDC1-histidines, these amino acids were mutated into alanines. The single mutations H225A, H161A, and H162A did not affect the response of the heteromeric channels to zinc. Conversely, the single mutant H224A and the double mutants (H224A,H225A) and (H161A,H162A) abolished zinc potentiation, but not that induced by Pb2+ or Cd2+. These results suggest that Zn2+ potentiation cannot be ascribed to simple electrostatic interactions between zinc and channel residues and that histidine 224 is crucial for zinc but not for lead potentiation of the current.
机译:与所有植物向内整流钾通道不同,胡萝卜通道KDC1在S3–S4中具有两个组氨酸对(H161,H162),在S5–S6接头中具有(H224,H225)对。当在非洲爪蟾卵母细胞中与KAT1共注射时,KDC1参与异源多聚KDC1:KAT1通道的形成,并且离子电流被细胞外Zn2 +增强。为了研究KDC1和锌之间的潜在相互作用,构建了一个KDC1-KAT1二聚体。二聚体和异聚体通道显示出相似的特性,并且对锌和其他金属具有相同的敏感性。该结果表明锌结合是由单通道亚基中的残基介导的。 KDC1:KAT1电流也受外部Pb2 +和Cd2 +增强,并受Ni2 +抑制。为了进一步研究KDC1-组氨酸的作用,将这些氨基酸突变为丙氨酸。单个突变H225A,H161A和H162A不会影响异聚通道对锌的响应。相反,单突变体H224A和双突变体(H224A,H225A)和(H161A,H162A)取消了锌增效作用,但没有取消Pb2 +或Cd2 +诱导的锌增效作用。这些结果表明,Zn2 +的增强不能归因于锌与通道残基之间的简单静电相互作用,而组氨酸224对锌至关重要,但对于电流的铅增强却不重要。

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