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首页> 外文期刊>Journal of General Physiology >Molecular Basis of Inward Rectification: Polyamine Interaction Sites Located by Combined Channel and Ligand Mutagenesis
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Molecular Basis of Inward Rectification: Polyamine Interaction Sites Located by Combined Channel and Ligand Mutagenesis

机译:内向整流的分子基础:结合通道和配体诱变定位的多胺相互作用位点

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摘要

Polyamines cause inward rectification of (Kir) K~+ channels, but the mechanism is controversial. We employed scanning muTagenesis of Kir6.2, and a structural series of blocking diamines, to combinatorially examine the role of both channel and blocker charges. We find that introduced glutamates at any pore-facing residue in the inner cavity, up to and including the entrance to the selectivity filter, can confer strong rectification. As these negative charges are moved higher (toward the selectivity filter), or lower (toward the cytoplasm), they preferentially enhance the potency of block by shorter, or longer, diamines, respectively. MTSEA~+ modification of engineered cysteines in the inner cavity reduces rectification, but modification below the inner cavity slows spermine entry and exit, without changing steady-state rectification. The data provide a coherent explanation of classical strong rectification as the result of polyamine block in the inner cavity and selectivity filter.
机译:多胺会引起(Kir)K〜+通道的内向整流,但机理尚存争议。我们采用了Kir6.2的诱变扫描和一系列封闭的二胺结构,来组合地研究通道电荷和封闭剂电荷的作用。我们发现,在内腔中任何面向孔的残留物(直至并包括选择性过滤器的入口)处引入的谷氨酸盐都可以提供强力的精馏作用。当这些负电荷向上移动(朝向选择性过滤器)或向下移动(向细胞质)时,它们分别优先通过较短或较长的二胺来增强阻断作用。内腔中工程半胱氨酸的MTSEA〜+修饰会减少精馏,但在内腔下方进行修饰会减慢精胺的进入和排出,而不会改变稳态精馏。数据为内腔中的多胺嵌段和选择性过滤器的结果提供了经典强精馏的连贯解释。

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