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γ-氨基丁酸A(GABA(A))受体α1、α2、β2和γ2亚基mRNA在鸡视顶盖中的发育与定位

Development and localisation of GABA(A) receptor alpha1, alpha2, beta2 and gamma2 subunit mRNA in the chick optic tectum.

作者信息

Rodríguez Gil Diego J, Vacotto Marina, Rapacioli Melina, Scicolone Gabriel, Flores Vladimir, Fiszer de Plazas Sara

机构信息

Institute of Cell Biology and Neurosciences, Prof. E. De Robertis, School of Medicine,University of Buenos Aires, Paraguay, Buenos Aires, Argentina.

出版信息

J Neurosci Res. 2005 Aug 15;81(4):469-80. doi: 10.1002/jnr.20579.

Abstract

An in situ hybridisation technique was used to analyse the spatial and temporal pattern of expression of the mRNA encoding the four gamma-aminobutyric acid A (GABA(A)) receptor subunits (alpha1, alpha2, beta2, and gamma2) in the developing chick optic tectum. As a rule, layer i, layer h, and transient cell compartment 3 (TCC3) show the highest levels of expression, especially of alpha1, alpha2 and beta2, which undergo striking changes as a function of time. Apart from these common features, the global pattern is highly complex and dynamic. Such complexity derives from the fact that each subunit exhibits a characteristically distinct pattern of expression and the temporal evolution of each differs in the different layers of the tectum. The influence of several developmental cell behaviours such as proliferation, neuronal migration, programmed cell death, and differentiation must be taken into account to understand pattern complexity and dynamics. Our results suggest that differences in the rate of subunit expression, particularly of alpha1, alpha2, and beta2, could have significant consequences on GABA(A) receptor complex subunit composition along development and on the functional properties of the GABA neurotransmitter system.

摘要

采用原位杂交技术分析发育中的鸡视顶盖中编码四种γ-氨基丁酸A(GABA(A))受体亚基(α1、α2、β2和γ2)的mRNA的表达时空模式。通常,i层、h层和瞬时细胞区室3(TCC3)显示出最高水平的表达,尤其是α1、α2和β2,它们随时间发生显著变化。除了这些共同特征外,整体模式高度复杂且动态变化。这种复杂性源于每个亚基表现出独特的表达模式,并且每个亚基在顶盖的不同层中的时间演变也不同。为了理解模式的复杂性和动态变化,必须考虑几种发育细胞行为的影响,如增殖、神经元迁移、程序性细胞死亡和分化。我们的结果表明,亚基表达速率的差异,特别是α1、α2和β2的差异,可能会对发育过程中GABA(A)受体复合物的亚基组成以及GABA神经递质系统的功能特性产生重大影响。

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