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来自嗜热四膜虫核酶J1/2突变体研究的RNA底物持续性和两步结合的证据。

Evidence for processivity and two-step binding of the RNA substrate from studies of J1/2 mutants of the Tetrahymena ribozyme.

作者信息

Herschlag D

机构信息

Department of Chemistry and Biochemistry, Howard Hughes Medical Institute, University of Colorado, Boulder 80309-0215.

出版信息

Biochemistry. 1992 Feb 11;31(5):1386-99. doi: 10.1021/bi00120a015.

Abstract

J1/2 of the Tetrahymena ribozyme, a sequence of three A residues, connects the RNA-binding site to the catalytic core. Addition or deletion of bases from J1/2 improves turnover and substrate specificity in the site-specific endonuclease reaction catalyzed by this ribozyme: G2CCCUCUA5 (S) + G in-equilibrium G2CCCUCU (P) + GA5. These paradoxical enhancements are caused by decreased affinity of the ribozyme for S and P [Young, B., Herschlag, D., & Cech, T.R. (1991) Cell 67, 1007]. An additional property of these mutant ribozymes, decreased fidelity of RNA cleavage, is now analyzed. (Fidelity is the ability to cleave at the correct phosphodiester bond within a particular RNA substrate.) Introduction of deoxy residues to give "chimeric" ribo/deoxyribooligonucleotides changes the positions of incorrect cleavage. Previous work indicated that S is bound to the ribozyme by both base pairing and teritary interactions involving 2'-hydroxyl groups of S. The data herein strongly suggest that the P1 duplex, which consists of S base-paired with the 5' exon binding site of the ribozyme, can dock into tertiary interactions in different registers; different 2'-hydroxyl groups of S plug into tertiary contacts with the ribozyme in the different registers. It is concluded that the mutations decrease fidelity by increasing the probability of docking out of register relative to docking in the normal register, thereby giving cleavage at different positions along S. These data also show that the contribution of J1/2 to the teritiary interactions is indirect, not direct. Thus, a structural role of the nonconserved J1/2 is indicated: this sequence positions S to optimize tertiary binding interactions and to ensure cleavage at the phosphodiester bond corresponding to the 5' splice site. Substitution of sulfur for the nonbridging pro-RP oxygen atom at the normal cleavage site has no effect on (kcat/Km)S but decreases the fraction of cleavage at the normal site in reactions catalyzed by the -3A mutant ribozyme, which has all three A residues of J1/2 removed. Thus, the ribozyme chooses where to cleave S after rate-limiting binding of S, indicating that docking can change after binding and suggesting that the ribozyme could act processively. Indeed, it is shown that the +2A ribozyme cleaves at one position along an RNA substrate and then, before releasing that RNA product, cleaves it again.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

嗜热四膜虫核酶的J1/2,即一段由三个A残基组成的序列,将RNA结合位点与催化核心相连。在该核酶催化的位点特异性内切核酸酶反应(G2CCCUCUA5 (S) + G ⇌ G2CCCUCU (P) + GA5)中,对J1/2进行碱基的添加或缺失可提高周转率和底物特异性。这些看似矛盾的增强作用是由核酶对S和P的亲和力降低所致[杨,B.,赫施拉格,D.,& 切赫,T.R.(1991年)《细胞》67卷,第1007页]。现在对这些突变核酶的另一个特性,即RNA切割保真度降低进行分析。(保真度是指在特定RNA底物内正确的磷酸二酯键处进行切割的能力。)引入脱氧残基以形成“嵌合”核糖/脱氧核糖寡核苷酸会改变错误切割的位置。先前的研究表明,S通过碱基配对以及涉及S的2'-羟基的三级相互作用与核酶结合。本文的数据强烈表明,由S与核酶的5'外显子结合位点碱基配对组成的P1双链体,可以以不同的排列方式对接至三级相互作用中;S的不同2'-羟基在不同排列方式下插入与核酶的三级接触中。得出的结论是,这些突变通过增加相对于正常排列对接时错配对接的概率来降低保真度,从而在S上的不同位置进行切割。这些数据还表明,J1/2对三级相互作用的贡献是间接的,而非直接的。因此,表明了非保守的J1/2的一种结构作用:该序列定位S以优化三级结合相互作用,并确保在对应于5'剪接位点的磷酸二酯键处进行切割。在正常切割位点用硫取代非桥连的前-RP氧原子对(kcat/Km)S没有影响,但在由-3A突变核酶催化的反应中,会降低正常位点的切割比例,该突变核酶已去除J1/2的所有三个A残基。因此,核酶在S的限速结合后选择切割S的位置,这表明对接在结合后可能会改变,并暗示核酶可能具有连续性作用。实际上,已表明+2A核酶在RNA底物的一个位置进行切割,然后在释放该RNA产物之前再次对其进行切割。(摘要截取自400字)

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