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The effects of spermine on the accessibility of residues in the M2 segment of Kir2.1 channels expressed in Xenopus oocytes

机译:精胺对非洲爪蟾卵母细胞表达的Kir2.1通道M2节残基可及性的影响

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摘要

We examined the effects of spermine binding to aspartate at site 172 on the accessibility of internal trimethylammonioethylmethane thiosulphonate (MTSET) to substituted cysteines within the pore of a Kir2.1 channel. Spermine prevented MTSET modification in Q164C and G168C mutants, indicating that sites 164 and 168 are located externally to the spermine binding site. The rates of MTSET modification were significantly reduced by spermine in I176C mutants, indicating that site 176 is located internally to D172 and that the bound spermine hinders the reaction of MTSET with cysteine at site 176. Spermidine, putrescine and Mg2+ also decreased MTSET modification at site 176. The order of effect is putrescine > spermidine ≈ spermine ≈ Mg2+. To account for the electrostatic and physical repulsion between MTSET and polyamines, possible locations of polyamines in the pore are discussed. In D172C mutants, the spermine that bound to sites 224 and 299 completely inhibited channels at +40 mV, yet MTSET remained accessible to site 172. In addition, in the D172C mutant, spermine did not affect the exit rate of Ba2+ bound to the threonine at the site 141. These results indicate that spermine bound at the cytoplasmic pore induces channel closure at positions 141–172. The effects of spermine on the accessibility of amino acids in the pore may shed light on the structural and functional relationships of the Kir2.1 channels during inward rectification.
机译:我们检查了精胺在172位点与天冬氨酸的结合对内部三甲基氨乙基甲烷硫代磺酸盐(MTSET)在Kir2.1通道孔内取代半胱氨酸的可及性的影响。精胺阻止了Q164C和G168C突变体的MTSET修饰,表明位点164和168位于精胺结合位点的外部。在I176C突变体中,精胺显着降低了MTSET修饰的速率,表明位点176位于D172内部,并且结合的精胺阻碍了MTSET与半胱氨酸在位点176的反应。亚精胺,腐胺和Mg2 +也降低了位点的MTSET修饰176.作用的顺序是腐胺>亚精胺≈亚精胺≈Mg2 +。为了考虑MTSET和多胺之间的静电排斥和物理排斥,讨论了多胺在孔中的可能位置。在D172C突变体中,与位点224和299结合的精胺完全抑制了+40 mV的通道,但MTSET仍可与位点172接触。此外,在D172C突变体中,精胺不影响与苏氨酸结合的Ba2 +的排出速率。这些结果表明,在细胞质孔上结合的精胺在位置141-172处引起通道封闭。精胺对孔中氨基酸可及性的影响可能会向内整流期间阐明Kir2.1通道的结构和功能关系。

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