Cooper T A
Department of Pathology, Baylor College of Medicine, Houston, Texas 77030.
J Biol Chem. 1992 Mar 15;267(8):5330-8.
A single cardiac troponin T (cTNT) gene generates two mRNAs by including or excluding the 30-nucleotide exon 5 during pre-mRNA processing. Transfection analysis of cTNT minigenes has previously demonstrated that both mRNAs are expressed from unmodified minigenes, and mutations within exon 5 can lead to complete skipping of the exon. These results suggested a role for exon sequence in splice site recognition. To investigate this potential role, an in vitro splicing system using cTNT precursors has been established. Two-exon precursors containing the alternative exon and either the upstream exon or downstream exon were spliced accurately and efficiently in vitro. The mutations within the alternative exon that resulted in exon skipping in vivo specifically blocked splicing of the upstream intron in vitro and had no effect on removal of the downstream intron. In addition, the splicing intermediates of these two precursors have been characterized, and the branch sites utilized on the introns flanking the alternative exon have been determined. Potential roles of exon sequence in splice site selection are discussed. These results establish a system that will be useful for the biochemical characterization of the role of exon sequence in splice site selection.
单个心肌肌钙蛋白T(cTNT)基因在mRNA前体加工过程中通过包含或排除30个核苷酸的外显子5产生两种mRNA。先前对cTNT微型基因的转染分析表明,两种mRNA均从未经修饰的微型基因表达,并且外显子5内的突变可导致该外显子完全跳跃。这些结果提示外显子序列在剪接位点识别中起作用。为了研究这一潜在作用,已建立了使用cTNT前体的体外剪接系统。含有可变外显子以及上游外显子或下游外显子的双外显子前体在体外能够准确且高效地进行剪接。在体内导致外显子跳跃的可变外显子内的突变在体外特异性地阻断了上游内含子的剪接,并且对下游内含子的去除没有影响。此外,已对这两种前体的剪接中间体进行了表征,并确定了可变外显子两侧内含子上使用的分支位点。讨论了外显子序列在剪接位点选择中的潜在作用。这些结果建立了一个系统,该系统将有助于对外显子序列在剪接位点选择中的作用进行生化表征。