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血吸虫锤头状核酶的高效连接

Efficient ligation of the Schistosoma hammerhead ribozyme.

作者信息

Canny Marella D, Jucker Fiona M, Pardi Arthur

机构信息

Department of Chemistry and Biochemistry, University of Colorado at Boulder, Boulder, Colorado 80309-0215, USA.

出版信息

Biochemistry. 2007 Mar 27;46(12):3826-34. doi: 10.1021/bi062077r. Epub 2007 Feb 24.

Abstract

The hammerhead ribozyme from Schistosoma mansoni is the best characterized of the natural hammerhead ribozymes. Biophysical, biochemical, and structural studies have shown that the formation of the loop-loop tertiary interaction between stems I and II alters the global folding, cleavage kinetics, and conformation of the catalytic core of this hammerhead, leading to a ribozyme that is readily cleaved under physiological conditions. This study investigates the ligation kinetics and the internal equilibrium between cleavage and ligation for the Schistosoma hammerhead. Single turnover kinetic studies on a construct where the ribozyme cleaves and ligates substrate(s) in trans showed up to 23% ligation when starting from fully cleaved products. This was achieved by an approximately 2000-fold increase in the rate of ligation compared to a minimal hammerhead without the loop-loop tertiary interaction, yielding an internal equilibrium that ranges from 2 to 3 at physiological Mg2+ ion concentrations (0.1-1 mM). Thus, the natural Schistosoma hammerhead ribozyme is almost as efficient at ligation as it is at cleavage. The results here are consistent with a model where formation of the loop-loop tertiary interaction leads to a higher population of catalytically active molecules and where formation of this tertiary interaction has a much larger effect on the ligation than the cleavage activity of the Schistosoma hammerhead ribozyme.

摘要

来自曼氏血吸虫的锤头状核酶是天然锤头状核酶中特征最明确的。生物物理、生物化学和结构研究表明,茎I和茎II之间形成的环-环三级相互作用改变了该锤头状核酶催化核心的整体折叠、切割动力学和构象,产生了一种在生理条件下易于切割的核酶。本研究调查了曼氏血吸虫锤头状核酶的连接动力学以及切割与连接之间的内部平衡。对一种构建体进行的单轮动力学研究表明,当从完全切割的产物开始时,核酶在反式切割和连接底物时的连接率高达23%。与没有环-环三级相互作用的最小锤头状核酶相比,连接速率提高了约2000倍,从而在生理镁离子浓度(0.1 - 1 mM)下产生了范围为2至3的内部平衡。因此,天然的曼氏血吸虫锤头状核酶在连接方面几乎与切割方面一样高效。这里的结果与一个模型一致,即在该模型中,环-环三级相互作用的形成导致了更高比例的具有催化活性的分子,并且这种三级相互作用的形成对曼氏血吸虫锤头状核酶连接活性的影响比对切割活性的影响大得多。

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