Schapira M, Desdouets C, Jacq C, Perea J
Laboratorie de Génétique Moléculaire, CNRS URA1302, Ecole Normale Supérieure, Paris, France.
Nucleic Acids Res. 1993 Aug 11;21(16):3683-9. doi: 10.1093/nar/21.16.3683.
We have previously discovered the new intron-encoded endonuclease I-Sce III by expressing, in E. coli, the ORF contained in the third intron of the yeast mitochondrial COX I gene. In this work, we analyzed the in vitro properties of partially purified I-Sce III and found that it is a very specific DNA endonuclease, tolerating relatively few base changes in its 20 base pair long target site. I-Sce III should be a useful molecular tool to analyze the structure of large genomes. Interestingly, I-Sce III is the first P1-P2 DNA endonuclease for which DNA binding properties could be analyzed by band-shift experiments. Clearly, the cleavage products corresponding to the upstream A3 exon and to the downstream A4 exon could compete with the substrate A3-A4 in forming a DNA-protein complex. However, the A3 exon competes more efficiently than the downstream A4 product. The cleavage of the two DNA strands is also asymmetric the top strand (non-transcribed strand) is cleaved faster than the bottom strand, a property found under various experimental conditions. These findings suggest that this intron-encoded DNA endonuclease may have role in the RNA splicing process of the intron.
我们之前通过在大肠杆菌中表达酵母线粒体COX I基因第三个内含子中的开放阅读框,发现了新的内含子编码的内切核酸酶I-Sce III。在这项工作中,我们分析了部分纯化的I-Sce III的体外特性,发现它是一种非常特异的DNA内切核酸酶,在其20个碱基对长的靶位点上容忍相对较少的碱基变化。I-Sce III应该是分析大基因组结构的有用分子工具。有趣的是,I-Sce III是第一种可以通过带移实验分析其DNA结合特性的P1-P2 DNA内切核酸酶。显然,对应于上游A3外显子和下游A4外显子的切割产物在形成DNA-蛋白质复合物时可以与底物A3-A4竞争。然而,A3外显子比下游A4产物竞争更有效。两条DNA链的切割也是不对称的,顶部链(非转录链)比底部链切割得更快,这一特性在各种实验条件下都能发现。这些发现表明,这种内含子编码的DNA内切核酸酶可能在该内含子的RNA剪接过程中起作用。