Pikielny C W, Rosbash M
Cell. 1985 May;41(1):119-26. doi: 10.1016/0092-8674(85)90066-2.
A simple kinetic model for mRNA splicing predicts the way in which in vivo steady state precursor RNA levels (P) and messenger RNA levels (M) vary as a function of the rate constant of the splicing reaction (ksp). The model points to M/P as the best measure of ksp. The analysis of a set of intron mutations in a yeast gene supports the general features of the model and shows that the splicing efficiency of transcripts containing the wild-type intron is well in excess of what is necessary to generate normal mRNA levels. The data also suggest that regions of the intron, in addition to the well-conserved consensus sequences, contribute to efficient splicing.
一个用于mRNA剪接的简单动力学模型预测了体内稳态前体RNA水平(P)和信使RNA水平(M)随剪接反应速率常数(ksp)变化的方式。该模型指出M/P是ksp的最佳衡量指标。对酵母基因中一组内含子突变的分析支持了该模型的一般特征,并表明含有野生型内含子的转录本的剪接效率远超过产生正常mRNA水平所需的效率。数据还表明,除了高度保守的共有序列外,内含子区域也有助于高效剪接。