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MIN K CHANNELS FORM BY ASSEMBLY OF AT LEAST 14 SUBUNITS

机译:至少14个分支机构的MIN K频道表格

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摘要

Injection of min K mRNA into Xenopus oocytes results in expression of slowly activating voltage-dependent potassium channels, distinct from those induced by expression of other cloned potassium channels, The min K protein also differs in structure, containing only a single predicted transmembrane domain. While it has been demonstrated that all other cloned potassium channels form by association of four independent subunits, the number of min K monomers which constitute a functional channel is unknown. In rat min K, replacement of Ser-69 by Ala (S69A) causes a shift in the current-voltage (I-V) relationship to more depolarized potentials; currents are not observed at potentials negative to 0 mV. To determine the subunit stoichiometry of min K channels, wild-type and S69A subunits were coexpressed, Injections of a constant amount of wild-type mRNA with increasing amounts of S69A mRNA led to potassium currents of decreasing amplitude upon voltage commands to -20 mV. Applying a binomial distribution to the reduction of current amplitudes as a function of the different coinjection mixtures yielded a subunit stoichiometry of at least 14 monomers for each functional min K channel, A model is presented for how min K subunits may form a channel. [References: 24]
机译:将min K mRNA注入非洲爪蟾卵母细胞会导致缓慢激活的电压依赖性钾离子通道表达,这与其他克隆的钾离子通道表达诱导的钾离子通道不同。minK蛋白的结构也有所不同,仅包含一个预测的跨膜结构域。尽管已经证明所有其他克隆的钾通道是通过四个独立的亚基的结合而形成的,但构成功能通道的min K单体的数量尚不清楚。在大鼠最小K中,用Ala替代Ser-69(S69A)导致电流-电压(I-V)关系转变为更多的去极化电位。电位为0 mV时未观察到电流。为了确定最小K通道的亚基化学计量关系,将野生型和S69A亚基共表达。注入恒定量的野生型mRNA和增加量的S69A mRNA,导致钾电流在电压指令达到-20 mV时幅度减小。将二项式分布应用于电流振幅的减小(作为不同的共注射混合物的函数),可为每个功能性最小K通道产生至少14个单体的亚单位化学计量。提出了一个有关最小K个亚单位如何形成通道的模型。 [参考:24]

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