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发夹状核酶-底物复合物的溶剂保护核心。

The solvent-protected core of the hairpin ribozyme-substrate complex.

作者信息

Hampel K J, Walter N G, Burke J M

机构信息

Department of Microbiology and Molecular Genetics, Markey Center for Molecular Genetics, University of Vermont, Burlington 05405, USA.

出版信息

Biochemistry. 1998 Oct 20;37(42):14672-82. doi: 10.1021/bi981083n.

Abstract

The complex between the hairpin ribozyme and its substrate consists of two domains that must interact in order to form a catalytic complex, yet experimental evidence concerning the points of interaction between the two domains has been lacking. Here, we report the use of hydroxyl radical footprinting to define the interface between the two domains. Cations that support very efficient ribozyme catalysis (magnesium and cobalt(III) hexammine) lead to the formation of a docked complex that features several regions of protection, indicating a solvent-inaccessible core within the tertiary structure of the complex. Cations that are suboptimal in cleavage reactions do not produce complexes with regions of reduced solvent accessibility. Nucleotides encompassing the substrate cleavage site (c-2, a-1, g+1, and u+2) are strongly protected, suggesting their internalization into the catalytic core. Four distinct segments of the ribozyme are protected, including G11-A14, C25-C27, A38, and U42-A43. Protection of these sites is eliminated when g+1, an essential base at the cleavage site, is replaced by A. In addition, mutations which are known to decrease the fraction of docked complexes decrease or eliminate formation of a solvent-inaccessible core. Taken together, these observations demonstrate that we have identified the catalytic core of the active hairpin ribozyme-substrate complex.

摘要

发夹状核酶与其底物之间的复合物由两个结构域组成,这两个结构域必须相互作用才能形成催化复合物,但一直缺乏关于这两个结构域之间相互作用点的实验证据。在此,我们报告使用羟基自由基足迹法来确定这两个结构域之间的界面。支持高效核酶催化的阳离子(镁离子和六氨合钴(III))会导致形成一种对接复合物,该复合物具有几个受保护区域,表明在复合物的三级结构中有一个溶剂无法进入的核心。在切割反应中效果欠佳的阳离子不会产生溶剂可及性降低区域的复合物。包含底物切割位点(c-2、a-1、g+1和u+2)的核苷酸受到强烈保护,表明它们被内化到催化核心中。核酶的四个不同片段受到保护,包括G11-A14、C25-C27、A38和U42-A43。当切割位点的必需碱基g+1被A取代时,这些位点的保护作用就会消失。此外,已知会降低对接复合物比例的突变会减少或消除溶剂无法进入的核心的形成。综上所述,这些观察结果表明我们已经确定了活性发夹状核酶-底物复合物的催化核心。

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