首页> 美国卫生研究院文献>The Journal of Physiology >A unique P-region residue is required for slow voltage-dependent gating of a G protein-activated inward rectifier K+ channel expressed in Xenopus oocytes.
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A unique P-region residue is required for slow voltage-dependent gating of a G protein-activated inward rectifier K+ channel expressed in Xenopus oocytes.

机译:爪蟾卵母细胞中表达的G蛋白激活的内向整流K +通道缓慢依赖电压的门控需要一个独特的P区残基。

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摘要

1. The structural determinants of a G protein-activated inwardly rectifying potassium channel, GIRK1 (KIR3.1), involved in voltage- and time-dependent gating properties were investigated by heterologous expression of chimeric constructs and point mutants in Xenopus oocytes. 2. Chimeras between GIRK1 and the weakly rectifying potassium channel, ROMK1 (KIR1.1), indicate that residues in the putative transmembrane segments TM1 and TM2 affect the steep inward rectification of GIRK1, while residues in the main pore-forming domain, the P-region segment, are critical for the manifestation of GIRK1 time-dependent activation. 3. Phenylalanine 137 in the P-region of GIRK1 is unique; in ROMK1, as in other inward rectifiers, there is a serine residue at this position. Mutation of the phenylalanine 137 to serine leads to expression of currents with nearly time-independent activation. 4. An acidic residue (aspartate) in TM2 partially controls the time- and voltage-dependent gating in IRK1 (KIR2.1). Mutation of the equivalent aspartate 173 to glutamine in GIRK1 did not abolish the time-dependent activation but did decrease the degree of inward rectification. 5. These results reveal an important role for the P-region in controlling the time-dependent gating of an inwardly rectifying potassium channel and suggest a close relationship between permeation and gating in this family of K+ channels.
机译:1.通过在爪蟾卵母细胞中嵌合构建体和点突变体的异源表达,研究了参与电压依赖性和时间依赖性门控特性的G蛋白激活的内向整流钾通道GIRK1(KIR3.1)的结构决定因素。 2. GIRK1与弱整流钾通道ROMK1(KIR1.1)之间的嵌合体表明,假定的跨膜片段TM1和TM2中的残基影响GIRK1的陡峭内向整流,而主要孔形成域P中的残基区域片段对于GIRK1时间依赖性激活的表现至关重要。 3. GIRK1 P区的苯丙氨酸137是唯一的;与其他向内整流器一样,在ROMK1中,该位置有一个丝氨酸残基。苯丙氨酸137突变为丝氨酸导致电流的表达具有几乎不依赖时间的激活。 4. TM2中的酸性残基(天冬氨酸)部分控制IRK1(KIR2.1)中时间和电压相关的门控。在GIRK1中将等效的天冬氨酸173突变为谷氨酰胺并没有消除时间依赖性激活,但确实降低了内向整流的程度。 5.这些结果揭示了P区在控制向内整流的钾离子通道的时间依赖性门控中的重要作用,并表明该K +通道家族的渗透与门控之间有着密切的关系。

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