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钙通道CaVα₁剪接异构体——组织特异性与药物作用

Calcium Channel CaVα₁ Splice Isoforms - Tissue Specificity and Drug Action.

作者信息

Lipscombe Diane, Andrade Arturo

机构信息

Department of Neuroscience, Brown University. Providence, RI, USA.

出版信息

Curr Mol Pharmacol. 2015;8(1):22-31. doi: 10.2174/1874467208666150507103215.

DOI:10.2174/1874467208666150507103215
PMID:25966698
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5441838/
Abstract

Voltage-gated calcium ion channels are essential for numerous biological functions of excitable cells and there is wide spread appreciation of their importance as drug targets in the treatment of many disorders including those of cardiovascular and nervous systems. Each Cacna1 gene has the potential to generate a number of structurally, functionally, and in some cases pharmacologically unique CaVα1 subunits through alternative pre-mRNA splicing and the use of alternate promoters. Analyses of rapidly emerging deep sequencing data for a range of human tissue transcriptomes contain information to quantify tissue-specific and alternative exon usage patterns for Cacna1 genes. Cellspecific actions of nuclear DNA and RNA binding proteins control the use of alternate promoters and the selection of alternate exons during pre-mRNA splicing, and they determine the spectrum of protein isoforms expressed within different types of cells. Amino acid compositions within discrete protein domains can differ substantially among CaV isoforms expressed in different tissues, and such differences may be greater than those that exist across CaV channel homologs of closely related species. Here we highlight examples of CaV isoforms that have unique expression patterns and that exhibit different pharmacological sensitivities. Knowledge of expression patterns of CaV isoforms in different human tissues, cell populations, ages, and disease states should inform strategies aimed at developing the next generation of CaV channel inhibitors and agonists with improved tissue-specificity.

摘要

电压门控钙离子通道对于可兴奋细胞的众多生物学功能至关重要,并且作为治疗包括心血管和神经系统疾病在内的许多病症的药物靶点,其重要性已得到广泛认可。每个Cacna1基因都有可能通过可变前体mRNA剪接和使用替代启动子产生一些结构、功能以及在某些情况下药理学上独特的CaVα1亚基。对一系列人类组织转录组快速出现的深度测序数据的分析包含了量化Cacna1基因组织特异性和可变外显子使用模式的信息。核DNA和RNA结合蛋白在细胞特异性的作用控制着前体mRNA剪接过程中替代启动子的使用和可变外显子的选择,并且它们决定了在不同类型细胞中表达的蛋白质异构体的谱。在不同组织中表达的CaV异构体之间,离散蛋白质结构域内的氨基酸组成可能有很大差异,并且这种差异可能大于密切相关物种的CaV通道同源物之间存在的差异。在这里,我们重点介绍具有独特表达模式且表现出不同药理学敏感性的CaV异构体的例子。了解不同人类组织、细胞群体、年龄和疾病状态下CaV异构体的表达模式,应该为旨在开发具有更高组织特异性的下一代CaV通道抑制剂和激动剂的策略提供信息。

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本文引用的文献

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2
Building robust transcriptomes with master splicing factors.利用主要剪接因子构建稳健的转录组。
Cell. 2014 Oct 23;159(3):487-98. doi: 10.1016/j.cell.2014.09.054.
3
CACNA1B mutation is linked to unique myoclonus-dystonia syndrome.CACNA1B基因突变与独特的肌阵挛性肌张力障碍综合征有关。
Hum Mol Genet. 2015 Feb 15;24(4):987-93. doi: 10.1093/hmg/ddu513. Epub 2014 Oct 8.
4
Neuronal voltage-gated calcium channels: structure, function, and dysfunction.神经元电压门控钙通道:结构、功能与功能障碍。
Neuron. 2014 Apr 2;82(1):24-45. doi: 10.1016/j.neuron.2014.03.016.
5
L-type Ca channels in heart and brain.心脏和大脑中的L型钙通道。
Wiley Interdiscip Rev Membr Transp Signal. 2014 Mar 1;3(2):15-38. doi: 10.1002/wmts.102.
6
Cav3 T-type channels: regulators for gating, membrane expression, and cation selectivity.Cav3 T型通道:门控、膜表达和阳离子选择性的调节因子。
Pflugers Arch. 2014 Apr;466(4):645-60. doi: 10.1007/s00424-014-1449-7. Epub 2014 Feb 11.
7
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Mol Pain. 2013 Dec 26;9:67. doi: 10.1186/1744-8069-9-67.
8
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9
Cell-specific fine-tuning of neuronal excitability by differential expression of modulator protein isoforms.通过调节蛋白异构体的差异表达实现神经元兴奋性的细胞特异性精细调节。
J Neurosci. 2013 Oct 16;33(42):16767-77. doi: 10.1523/JNEUROSCI.1001-13.2013.
10
Dysregulation of Ca(v)1.4 channels disrupts the maturation of photoreceptor synaptic ribbons in congenital stationary night blindness type 2.Ca(v)1.4通道功能失调会破坏2型先天性静止性夜盲症中光感受器突触带的成熟。
Channels (Austin). 2013 Nov-Dec;7(6):514-23. doi: 10.4161/chan.26376. Epub 2013 Sep 24.