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大鼠脑中III型脑钠通道α亚基RNA的互斥外显子剪接产生发育调控的异构体。

Mutually exclusive exon splicing of type III brain sodium channel alpha subunit RNA generates developmentally regulated isoforms in rat brain.

作者信息

Gustafson T A, Clevinger E C, O'Neill T J, Yarowsky P J, Krueger B K

机构信息

Department of Physiology, University of Maryland School of Medicine, Baltimore 21201.

出版信息

J Biol Chem. 1993 Sep 5;268(25):18648-53.

PMID:8395514
Abstract

We have identified two exons of the type III rat brain sodium channel alpha subunit gene that undergo mutually exclusive alternative RNA splicing to produce mRNAs coding either for an isoform predominant in neonatal brain (IIIN) or a different isoform (IIIA) predominant in the adult. These exons are 92 base pairs in length and encode amino acids 203-232, which correspond to part of the S3 and most of the S4 transmembrane segments within domain I and the extracellular loop between them. Despite 21 nucleotide differences between the exons, only a single amino acid at position 209 is altered, specifying either aspartic acid (IIIA) or serine (IIIN). As evidence that these isoforms are generated via alternative splicing, we demonstrate that both exons are encoded within the type III gene. The nucleotide sequences of the neonatal and adult type III exons and the intervening intron as well as the developmental regulation of this splicing are nearly identical in the type II sodium channel gene. The conservation of the exon/intron structure and of the developmentally regulated patterns of expression of the type II and III sodium channel genes suggests that alternative mRNA splicing of this exon may play a substantial role in modulating sodium channel function during brain development by alteration of a single amino acid.

摘要

我们已经鉴定出大鼠脑III型钠通道α亚基基因的两个外显子,它们通过相互排斥的可变RNA剪接产生编码新生儿脑中主要异构体(IIIN)或成体中主要的另一种异构体(IIIA)的mRNA。这些外显子长度为92个碱基对,编码氨基酸203 - 232,这对应于结构域I内S3的一部分和S4跨膜片段的大部分以及它们之间的细胞外环。尽管外显子之间存在21个核苷酸差异,但仅209位的单个氨基酸发生改变,分别为天冬氨酸(IIIA)或丝氨酸(IIIN)。作为这些异构体通过可变剪接产生的证据,我们证明两个外显子都编码在III型基因内。新生儿和成人III型外显子以及中间内含子的核苷酸序列以及这种剪接的发育调控在II型钠通道基因中几乎相同。II型和III型钠通道基因的外显子/内含子结构以及发育调控的表达模式的保守性表明,该外显子的可变mRNA剪接可能通过改变单个氨基酸在脑发育过程中调节钠通道功能方面发挥重要作用。

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