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Evidence that neuronal G-protein-gated inwardly rectifying K+ channels are activated by Gβγ subunits and function as heteromultimersud

机译:神经元G蛋白门控的内向K +通道被Gβγ亚基激活并作为异源多聚体起作用的证据 ud

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摘要

Guanine nucleotide-binding proteins (G proteins) activate K+ conductances in cardiac atrial cells to slow heart rate and in neurons to decrease excitability. cDNAs encoding three isoforms of a G-protein-coupled, inwardly rectifying K+ channel (GIRK) have recently been cloned from cardiac (GIRK1/Kir 3.1) and brain cDNA libraries (GIRK2/Kir 3.2 and GIRK3/Kir 3.3). Here we report that GIRK2 but not GIRK3 can be activated by G protein subunits Gβ1 and G2 in Xenopus oocytes. Furthermore, when either GIRK3 or GIRK2 was coexpressed with GIRK1 and activated either by muscarinic receptors or by Gβ subunits, G-protein-mediated inward currents were increased by 5- to 40-fold. The single-channel conductance for GIRK1 plus GIRK2 coexpression was intermediate between those for GIRK1 alone and for GIRK2 alone, and voltage-jump kinetics for the coexpressed channels displayed new kinetic properties. On the other hand, coexpression of GIRK3 with GIRK2 suppressed the GIRK2 alone response. These studies suggest that formation of heteromultimers involving the several GIRKs is an important mechanism for generating diversity in expression level and function of neurotransmitter-coupled, inward rectifier K+ channels.
机译:鸟嘌呤核苷酸结合蛋白(G蛋白)激活心脏心房细胞的K +电导以减慢心律,并激活神经元以降低兴奋性。最近已从心脏(GIRK1 / Kir 3.1)和脑cDNA文库(GIRK2 / Kir 3.2和GIRK3 / Kir 3.3)中克隆了编码G蛋白偶联的,向内整流的K +通道(GIRK)的三种同工型的cDNA。在这里,我们报道,爪蟾卵母细胞中的G蛋白亚基Gβ1和G2可以激活GIRK2,而不是GIRK3。此外,当GIRK3或GIRK2与GIRK1共表达并被毒蕈碱受体或Gβ亚基激活时,G蛋白介导的内向电流增加5至40倍。 GIRK1和GIRK2共表达的单通道电导介于单独的GIRK1和单独的GIRK2之间,并且共表达通道的电压跳跃动力学表现出新的动力学特性。另一方面,GIRK3与GIRK2的共表达抑制了GIRK2单独的应答。这些研究表明,涉及多个GIRK的异源多聚体的形成是在神经递质耦合的内向整流K +通道表达水平和功能上产生多样性的重要机制。

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