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人尸脑尾状核和皮质膜中 Gsα(短和长)、Gα(olf)和 Gβ(共同)亚基以及钙敏性腺苷酸环化酶同工型(1、5/6、8)的水平:与人脑组织膜和潜在计量关系的大鼠脑组织膜的比较。

Levels of Gsα(short and long), Gα(olf) and Gβ(common) subunits, and calcium-sensitive adenylyl cyclase isoforms (1, 5/6, 8) in post-mortem human brain caudate and cortical membranes: comparison with rat brain membranes and potential stoichiometric relationships.

机构信息

Department of Pharmacology, Faculty of Pharmacy (Vitoria-Gasteiz), University of the Basque Country (UPV/EHU), Spain.

出版信息

Neurochem Int. 2011 Feb;58(2):180-9. doi: 10.1016/j.neuint.2010.11.014. Epub 2010 Nov 27.

DOI:10.1016/j.neuint.2010.11.014
PMID:21115086
Abstract

The levels of expression of Gsα(short and long), Gα(olf) and Gβ(common) subunits, and calcium-sensitive adenylyl cyclases isoforms (AC1, 5/6, and 8) in human brain cortical and caudate membranes were quantified by western blot analysis in order to establish their contribution to the patterns of AC functioning. Both areas expressed Gsα(long) (52 kDa) with values ranging from about 1400 ng/mg of membrane protein in cerebral cortex to close to 600 ng/mg of membrane protein in caudate nucleus. In contrast, Gsα(short) and Gsα(olf) were expressed separately, Gsα(short) in cortical membranes with values around 500 ng/mg of membrane protein and Gα(olf) in caudate membranes with values around 1300 ng/mg of membrane protein. Quantitative measurements of Gβ, revealed a similar expression level in cortical and caudate membranes (5444±732 versus 5511±394 ng/mg protein; p=0.966). The B(max) values of GTPγS-dependent [(3)H]-forskolin binding show the following descending order: rat striatal membranes>rat cortical membranes=human caudate membranes>human cortical membranes. Therefore, as measured immunochemically and by [(3)H]-forskolin binding, there seems to be a vast excess of Gsα subunits over catalytic units of AC. The highest levels of AC5/6 expression were detected in caudate membranes. AC8 was little expressed, and there were no significant differences in the relative values between both human brain regions. Finally, the levels of the AC1 isoform were significantly lower in caudate than in cortical membranes. It is concluded that these stoichiometric data contribute nonetheless to explain the significant differences observed in signalling capacities through the AC system in both human brain regions.

摘要

通过 Western blot 分析定量测定了人皮质和尾状核膜中 Gsα(短和长)、Gα(olf)和 Gβ(共同)亚基以及钙敏腺嘌呤核苷酸环化酶同工型(AC1、5/6 和 8)的表达水平,以确定它们对 AC 功能模式的贡献。两个区域均表达 Gsα(长)(52 kDa),皮质膜中的值范围约为 1400ng/mg 膜蛋白,尾状核膜中的值接近 600ng/mg 膜蛋白。相比之下,Gsα(短)和 Gsα(olf)分别表达,皮质膜中的 Gsα(短)约为 500ng/mg 膜蛋白,尾状核膜中的 Gα(olf)约为 1300ng/mg 膜蛋白。Gβ的定量测量揭示了皮质和尾状核膜中相似的表达水平(5444±732 与 5511±394ng/mg 蛋白;p=0.966)。GTPγS 依赖性[3H]-forskolin 结合的 B(max)值显示出以下降序:大鼠纹状体膜>大鼠皮质膜=人尾状核膜>人皮质膜。因此,如免疫化学和[3H]-forskolin 结合所测量的,Gsα 亚基的数量似乎远远超过 AC 的催化单位。AC5/6 的表达水平在尾状核膜中最高。AC8 的表达水平较低,两个大脑区域之间的相对值没有显着差异。最后,AC1 同工型的水平在尾状核中明显低于皮质膜。结论是,这些化学计量数据有助于解释在两个大脑区域中通过 AC 系统观察到的信号转导能力的显着差异。

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