Wu QiJia, Huang Lin, Zhang Yi
State Key Laboratory of Virology, College of Life Sciences, Wuhan University, Wuhan, 430072, China.
Sci China C Life Sci. 2009 Mar;52(3):232-44. doi: 10.1007/s11427-009-0038-z. Epub 2009 Mar 18.
Before the discovery of ribozymes, RNA had been proposed to function as a catalyst, based on the discovery that RNA folded into high-ordered structures as protein did. This hypothesis was confirmed in the 1980s, after the discovery of Tetrahymena group I intron and RNase P ribozyme. There have been about ten ribozymes identified during the past thirty years, as well as the fact that ribosomes function as ribozymes. Advances have been made in understanding the structures and functions of ribozymes, with numerous crystal structures resolved in the past years. Here we review the structure-function relationship of both small and large ribozymes, especially the structural basis of their catalysis. ribozyme, structure, catalysis.
在核酶被发现之前,基于RNA能像蛋白质一样折叠成高级结构这一发现,人们曾提出RNA可作为催化剂发挥作用。在发现四膜虫I组内含子和核糖核酸酶P核酶之后,这一假说于20世纪80年代得到证实。在过去三十年里,已鉴定出约十种核酶,同时核糖体也作为核酶发挥功能。在理解核酶的结构和功能方面已取得进展,过去几年解析出了众多晶体结构。在此,我们综述大小核酶的结构-功能关系,尤其是它们催化作用的结构基础。核酶、结构、催化作用。