Lu C M, Brown G B
Department of Psychiatry and Behavioral Neurobiology, University of Alabama at Birmingham, USA.
J Mol Neurosci. 1998 Feb;10(1):67-70. doi: 10.1007/BF02737087.
Voltage-gated sodium channels are members of a multigene family of transmembrane proteins that are important determinants of electrical excitability in cell membranes. These proteins are typically composed of a large alpha-subunit and one or two beta-subunits. The primary structure of alpha-subunits is highly conserved among different subtypes and different species. Based on the conserved sequences and application of the rapid amplification of cDNA ends (RACE) reaction, we have isolated three overlapping clones from human brain. These sequences share highest homology (89%) to the rat brain subtype III gene and cover a 4.2-kb expanse of the transcript. The 5'-most clone has a translation start site located in the same region as other mammalian brain sodium channel genes. A 92-nucleotide insert was found in domain I at a location previously demarcated by published splice sites in rat brain sodium channels IIN/IIA and IIIN/IIIA. It is most likely that this transcript represents the two isoforms (neonatal and adult) of the human brain sodium channel gene, SCN3A (GenBank accession numbers AF035685 and AF035686). As is the case for rat brain sodium channels IIN/IIA and IIIN/IIIA, these isoforms are generated through an alternative splicing mechanism. The conservation of the exon structure suggests that alternative RNA splicing is a common feature for sodium channel mRNA processing and may play an important role in modulating the channel function.
电压门控钠通道是跨膜蛋白多基因家族的成员,是细胞膜电兴奋性的重要决定因素。这些蛋白质通常由一个大的α亚基和一个或两个β亚基组成。α亚基的一级结构在不同亚型和不同物种之间高度保守。基于保守序列以及cDNA末端快速扩增(RACE)反应的应用,我们从人脑中分离出了三个重叠克隆。这些序列与大鼠脑III型基因具有最高的同源性(89%),覆盖了转录本4.2 kb的范围。最靠近5'端的克隆具有一个位于与其他哺乳动物脑钠通道基因相同区域的翻译起始位点。在结构域I中发现了一个92个核苷酸的插入片段,其位置先前由大鼠脑钠通道IIN/IIA和IIIN/IIIA中已发表的剪接位点划定。这个转录本很可能代表了人脑钠通道基因SCN3A的两种异构体(新生儿型和成人型)(GenBank登录号AF035685和AF035686)。与大鼠脑钠通道IIN/IIA和IIIN/IIIA的情况一样,这些异构体是通过可变剪接机制产生的。外显子结构的保守性表明,可变RNA剪接是钠通道mRNA加工的一个共同特征,可能在调节通道功能中起重要作用。