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噬菌体Twort I组核酶-产物复合物的晶体结构

Crystal structure of a phage Twort group I ribozyme-product complex.

作者信息

Golden Barbara L, Kim Hajeong, Chase Elaine

机构信息

Department of Biochemistry, Purdue University, 175 South University Street, West Lafayette, Indiana 47907, USA.

出版信息

Nat Struct Mol Biol. 2005 Jan;12(1):82-9. doi: 10.1038/nsmb868. Epub 2004 Dec 5.

Abstract

Group I introns are catalytic RNAs capable of orchestrating two sequential phosphotransesterification reactions that result in self-splicing. To understand how the group I intron active site facilitates catalysis, we have solved the structure of an active ribozyme derived from the orf142-I2 intron from phage Twort bound to a four-nucleotide product RNA at a resolution of 3.6 A. In addition to the three conserved domains characteristic of all group I introns, the Twort ribozyme has peripheral insertions characteristic of phage introns. These elements form a ring that completely envelops the active site, where a snug pocket for guanosine is formed by a series of stacked base triples. The structure of the active site reveals three potential binding sites for catalytic metals, and invokes a role for the 2' hydroxyl of the guanosine substrate in organization of the active site for catalysis.

摘要

I 组内含子是一种催化性RNA,能够协调两个连续的磷酸酯转移反应,从而实现自我剪接。为了理解I组内含子活性位点是如何促进催化作用的,我们解析了一种活性核酶的结构,该核酶源自噬菌体Twort的orf142-I2内含子,与一个四核苷酸产物RNA结合,分辨率为3.6埃。除了所有I组内含子都具有的三个保守结构域外,Twort核酶还具有噬菌体内含子特有的外周插入序列。这些元件形成一个环,完全包围活性位点,在活性位点处,由一系列堆叠的碱基三联体形成一个容纳鸟苷的紧密口袋。活性位点的结构揭示了催化金属的三个潜在结合位点,并表明鸟苷底物的2'羟基在活性位点的催化组织中发挥作用。

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