首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Distribution of heterotrimeric G-protein beta and gamma subunits in the rat brain.
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Distribution of heterotrimeric G-protein beta and gamma subunits in the rat brain.

机译:大鼠大脑中异三聚体G蛋白β和γ亚基的分布。

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摘要

Heterotrimeric G-proteins, comprising alpha, beta and gamma subunits, have been shown to play a central role in coupling multiple receptors to a variety of enzymes and ion channels. In vitro studies have demonstrated the existence of selective interactions between various alpha, beta and gamma subunits, as well as between specific heterotrimers and target receptor and effector proteins. However, little is known of the physiological relevance of such associations, and the determinants of specificity in G-protein signaling within the brain remain largely unidentified. To investigate the possibility that specific heterotrimeric interactions result from discrete localizations of the G-protein subunits within the brain, we have used the technique of in situ hybridization to map the distribution of G-protein beta and gamma subunits in the rat brain. Beta1, beta2, beta3 and beta5 subunits were found to be widely expressed throughout the rat brain, whilst beta4 and the G-protein gamma subunit messenger RNAs generally showed more discrete expression patterns. The expression patterns for these subunits suggest that individual beta and gamma subunits may be co-expressed in certain cell types and brain regions; a particularly intriguing and striking co-localization was observed in the case of beta4 and gamma2 subunit messenger RNAs in layer VI of the occipital cortex. The localizations of the G-protein beta and gamma subunits, and their potential coupling to various receptor/effector systems, are discussed.
机译:已经显示,包含α,β和γ亚基的异三聚体G蛋白在将多种受体偶联到多种酶和离子通道上起着核心作用。体外研究表明,各种α,β和γ亚基之间以及特定异源三聚体与靶标受体和效应蛋白之间存在选择性相互作用。但是,人们对这种关联的生理相关性知之甚少,大脑中G蛋白信号传导的特异性决定因素在很大程度上仍未确定。为了研究大脑中G蛋白亚基离散定位导致特定异源三聚体相互作用的可能性,我们使用了原位杂交技术绘制了大鼠大脑G蛋白β和γ亚基的分布图。发现Beta1,beta2,beta3和beta5亚基在整个大鼠脑中广泛表达,而beta4和G蛋白γ亚基信使RNA通常显示出更多离散的表达模式。这些亚基的表达模式表明,个别的β和γ亚基可能在某些细胞类型和大脑区域中共表达。在枕叶皮层第六层中的beta4和gamma2亚基信使RNA的情况下,观察到了特别有趣且引人注目的共定位。讨论了G蛋白β和γ亚基的定位,以及它们与各种受体/效应系统的潜在耦合。

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