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首页> 外文期刊>Molecular Neurobiology >Functional diversity in neuronal voltage-gated calcium channels by alternative splicing of Ca(v)alpha1.
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Functional diversity in neuronal voltage-gated calcium channels by alternative splicing of Ca(v)alpha1.

机译:通过Ca(v)alpha1的选择性剪接在神经元电压门控钙通道中的功能多样性。

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摘要

Alternative splicing is a critical mechanism used extensively in the mammalian nervous system to increase the level of diversity that can be achieved by a set of genes. This review focuses on recent studies of voltage-gated calcium (Ca) channel Ca(v)alpha1 subunit splice isoforms in neurons. Voltage-gated Ca channels couple changes in neuronal activity to rapid changes in intracellular Ca levels that in turn regulate an astounding range of cellular processes. Only ten genes have been identified that encode Ca(v)alpha1 subunits, an insufficient number to account for the level of functional diversity among voltage-gated Ca channels. The consequences of regulated alternative splicing among the genes that comprise voltage-gated Ca channels permits specialization of channel function, optimizing Ca signaling in different regions of the brain and in different cellular compartments. Although the full extent of alternative splicing is not yet known for any of the major subtypes of voltage-gated Ca channels, it is already clear that it adds a rich layer of structural and functional diversity".
机译:选择性剪接是在哺乳动物神经系统中广泛使用的一种重要机制,可以增加一组基因可以实现的多样性。这篇综述专注于神经元中电压门控钙(Ca)通道Ca(v)alpha1亚基剪接亚型的最新研究。电压门控Ca通道将神经元活动的变化与细胞内Ca水平的快速变化耦合,进而调节细胞过程的惊人范围。仅十个基因已被鉴定为编码Ca(v)alpha1亚基,不足以解释电压门控Ca通道之间功能多样性的水平。包括电压门控性钙通道的基因之间选择性剪接的调控结果可实现通道功能的特化,从而优化大脑不同区域和不同细胞区室中的钙信号传导。尽管对于电压门控Ca通道的任何主要亚型,尚不知道替代剪接的全部范围,但已经很清楚,它增加了丰富的结构和功能多样性。”

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