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G蛋白门控内向整流钾离子通道蛋白GIRK1和GIRK2的异源多聚化及其在weaver小鼠大脑中的表达改变

Heteromultimerization of G-protein-gated inwardly rectifying K+ channel proteins GIRK1 and GIRK2 and their altered expression in weaver brain.

作者信息

Liao Y J, Jan Y N, Jan L Y

机构信息

Howard Hughes Medical Institute, Department of Physiology, University of California, San Francisco 94143-0724, USA.

出版信息

J Neurosci. 1996 Nov 15;16(22):7137-50. doi: 10.1523/JNEUROSCI.16-22-07137.1996.

Abstract

The weaver (wv) gene (GIRK2) is a member of the G-protein-gated inwardly rectifying potassium (GIRK) channel family, known effectors in the signal transduction pathway of neurotransmitters such as acetylcholine, dopamine, opioid peptides, and substance P in modulation of neurotransmitter release and neuronal excitability. GIRK2 immunoreactivity is found in but not limited to brain regions known to be affected in wv mice, such as the cerebellar granule cells and dopaminergic neurons in the substantia nigra pars compacta. It is also observed in the ventral tegmental area, hippocampus, cerebral cortex, and thalamus. GIRK2 and GIRK1, a related family member, have overlapping yet distinct distributions in rat and mouse brains. In regions where both channel proteins are expressed, such as the cerebral cortex, hippocampus, and cerebellum, they can be co-immunoprecipitated, indicating that they interact to form heteromeric channels in vivo. In the brain of the wv mouse, GIRK2 expression is decreased dramatically. In regions where GIRK1 and GIRK2 distributions overlap, both GIRK1 and GIRK2 expressions are severely disrupted, probably because of their co-assembly. The expression patterns of these GIRK channel subunits provide a basis for consideration of the machinery for neuronal signaling as well as the differential effects of the wv mutation in various neurons.

摘要

织工(wv)基因(GIRK2)是G蛋白门控内向整流钾(GIRK)通道家族的成员,是神经递质如乙酰胆碱、多巴胺、阿片肽和P物质信号转导途径中的已知效应器,可调节神经递质释放和神经元兴奋性。GIRK2免疫反应性存在于但不限于已知受wv小鼠影响的脑区,如小脑颗粒细胞和黑质致密部的多巴胺能神经元。在腹侧被盖区、海马体、大脑皮层和丘脑也有观察到。GIRK2和相关家族成员GIRK1在大鼠和小鼠大脑中有重叠但不同的分布。在两种通道蛋白都表达的区域,如大脑皮层、海马体和小脑,它们可以被共免疫沉淀,表明它们在体内相互作用形成异聚体通道。在wv小鼠的大脑中,GIRK2表达显著降低。在GIRK1和GIRK2分布重叠的区域,GIRK1和GIRK2的表达都受到严重破坏,可能是因为它们的共同组装。这些GIRK通道亚基的表达模式为考虑神经元信号传导机制以及wv突变在各种神经元中的不同影响提供了基础。

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本文引用的文献

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Neurological Mutants of the Mouse.小鼠的神经突变体
Science. 1965 Oct 22;150(3695):513-6. doi: 10.1126/science.150.3695.513.
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