Holliday R, Murray V
CSIRO Division of Biomolecular Engineering, Sydney Laboratory, North Ryde, NSW, Australia.
Bioessays. 1994 Oct;16(10):771-4. doi: 10.1002/bies.950161013.
Considerable information about the process of pre-mRNA splicing has accumulated, but the mechanism by which highly accurate splicing is achieved is unresolved. Fifteen years ago we proposed that accuracy in splicing might depend on small RNA molecules (splicer RNAs) which hybridise across adjacent exon termini, or intron termini. Gene expression, including alternative splicing, could be controlled by the transcription of specific splicer RNA genes. We re-assess our model here, in the light of subsequent developments.
关于前体信使核糖核酸(pre-mRNA)剪接过程已经积累了大量信息,但实现高度精确剪接的机制仍未解决。十五年前我们提出,剪接的准确性可能取决于跨越相邻外显子末端或内含子末端杂交的小RNA分子(剪接RNA)。基因表达,包括可变剪接,可能受特定剪接RNA基因转录的控制。在此,我们根据后续进展重新评估我们的模型。