Doherty A J
Structural Medicine Unit, Cambridge Institute for Medical Research, Wellcome Trust/MRC Building, and Department of Haematology, University of Cambridge, Hills Road, Cambridge CB2 2XY, UK.
Nucleic Acids Res. 1999 Aug 15;27(16):3253-8. doi: 10.1093/nar/27.16.3253.
In eukaryotes, newly synthesised mRNA is 'capped' by the addition of GMP to the 5" end by RNA capping enzymes. Recent structural studies have shown that RNA capping enzymes and DNA ligases have similar protein folds, suggesting a conserved catalytic mechanism. To explore these similarities we have produced a chimeric enzyme comprising the N-terminal domain 1 of a DNA ligase fused to the C-terminal domain 2 of a mRNA capping enzyme. This report shows that this hybrid enzyme retains adenylation activity, characteristic of DNA ligases but, remarkably, the chimera has ATP-dependent mRNA capping activity. This is the first observation of ATP-dependent RNA capping. These results suggest that nucleotidyltransferases may have evolved from a common ancestral gene.
在真核生物中,新合成的mRNA通过RNA加帽酶在5'端添加GMP进行“加帽”。最近的结构研究表明,RNA加帽酶和DNA连接酶具有相似的蛋白质折叠结构,这表明存在保守的催化机制。为了探究这些相似性,我们构建了一种嵌合酶,该酶由DNA连接酶的N端结构域1与mRNA加帽酶的C端结构域2融合而成。本报告显示,这种杂交酶保留了DNA连接酶特有的腺苷化活性,但值得注意的是,该嵌合体具有依赖ATP的mRNA加帽活性。这是首次观察到依赖ATP的RNA加帽现象。这些结果表明,核苷酸转移酶可能是由一个共同的祖先基因进化而来的。