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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >The expression of voltage-dependent calcium channel beta subunits in human cerebellum.
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The expression of voltage-dependent calcium channel beta subunits in human cerebellum.

机译:电压依赖性钙通道β亚基在人小脑中的表达。

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The beta subunits of voltage-dependent calcium channels, exert marked regulatory effects on the biophysical and pharmacological properties of this diverse group of ion channels. However, little is known about the comparative neuronal expression of the four classes of beta genes in the CNS. In the current investigation we have closely mapped the distribution of beta1, beta2, beta3 and beta4 subunits in the human cerebellum by both in situ messenger RNA hybridization and protein immunohistochemistry. To our knowledge, these studies represent the first experiments in any species in which the detailed localization of each beta protein has been comparatively mapped in a neuroanatomically-based investigation. The data indicate that all four classes of beta subunits are found in the cerebellum and suggest that in certain neuronal populations they may each be expressed within the same cell. Novel immunohistochemical results further exemplify that the beta voltage-dependent calcium channel subunits are regionally distributed in a highly specific manner and studies of Purkinje cells indicate that this may occur at the subcellular level. Preliminary indication of the subunit composition of certain native voltage-dependent calcium channels is suggested by the observation that the distribution of the beta3 subunit in the cerebellar cortex is identical to that of alpha(1E). Our cumulative data are consistent with the emerging view that different native alpha1/beta subunit associations occur in the CNS.
机译:电压依赖性钙通道的β亚基对这组多样化的离子通道的生物物理和药理特性产生明显的调节作用。然而,关于中枢神经系统中四类β基因的比较神经元表达知之甚少。在当前的研究中,我们通过原位信使RNA杂交和蛋白质免疫组化方法,紧密映射了人类小脑中beta1,beta2,beta3和beta4亚基的分布。据我们所知,这些研究代表了任何物种中的第一个实验,其中每个β蛋白的详细定位已在基于神经解剖学的研究中作了比较定位。数据表明,所有四类β亚基都在小脑中发现,这表明在某些神经元群体中,它们各自可能在同一细胞内表达。新型免疫组织化学结果进一步证明了β电压依赖性钙通道亚基以高度特异性的方式在区域内分布,而Purkinje细胞的研究表明这可能发生在亚细胞水平。通过观察小脑皮层中的beta3亚基的分布与alpha(1E)相同,可以初步表明某些天然电压依赖性钙通道的亚基组成。我们的累积数据与正在出现的观点一致,即在CNS中发生不同的天然alpha1 / beta亚基关联。

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