Diebold R J, Koch W J, Ellinor P T, Wang J J, Muthuchamy M, Wieczorek D F, Schwartz A
Department of Pharmacology and Cell Biophysics, University of Cincinnati College of Medicine, OH 45267-0575.
Proc Natl Acad Sci U S A. 1992 Feb 15;89(4):1497-501. doi: 10.1073/pnas.89.4.1497.
Several clones were isolated from a rat genomic library in order to further characterize a region of variability within the third membrane-spanning region of the fourth motif (IVS3) of the L-type voltage-dependent calcium channel. We report here that this diversity arises from alternative splicing of a primary transcript containing a single pair of adjacent exons each encoding a unique sequence for the IVS3 region. Definitive proof of a mutually exclusive splicing mechanism was obtained by genomic mapping of flanking upstream and downstream exons and by extensive sequence analysis of the relevant exon/intron boundaries. S1 nuclease protection experiments revealed that both variant forms of the IVS3 were equally expressed in newborn and fetal rat heart, whereas only a single isoform predominated in adult rat heart. The results demonstrate the existence of an important developmentally regulated switch mediated by alternatively spliced exons in cardiac tissue at a time when major changes in excitation occur.
为了进一步表征L型电压依赖性钙通道第四基序(IVS3)的第三个跨膜区域内的可变区,从大鼠基因组文库中分离出了几个克隆。我们在此报告,这种多样性源于一个初级转录本的可变剪接,该转录本包含一对相邻外显子,每个外显子为IVS3区域编码一个独特序列。通过对侧翼上游和下游外显子进行基因组定位以及对相关外显子/内含子边界进行广泛的序列分析,获得了相互排斥剪接机制的确切证据。S1核酸酶保护实验表明,IVS3的两种变体形式在新生和胎儿大鼠心脏中均等量表达,而在成年大鼠心脏中只有一种异构体占主导。结果表明,在心脏组织发生重大兴奋变化时,存在由可变剪接外显子介导的重要的发育调控开关。