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丁型肝炎病毒核酶在单价阳离子中的活性

HDV ribozyme activity in monovalent cations.

作者信息

Perrotta Anne T, Been Michael D

机构信息

Department of Biochemistry, Box 3711, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Biochemistry. 2006 Sep 26;45(38):11357-65. doi: 10.1021/bi061215+.

Abstract

Activity of the two ribozymes from hepatitis delta virus in monovalent salts was examined and compared to activity in Mg2+. Both ribozymes self-cleaved in high concentrations of monovalent cations, and an active site cytosine was required for cleavage activity under those conditions. Cleavage rates were 30-50-fold higher for reactions in LiCl than for reactions in NaCl or NH4Cl, and a thio effect indicated that chemistry was rate-determining for cleavage of the HDV genomic ribozyme in LiCl. Still, in LiCl, there was a more than 100-fold increase in the rate when MgCl2 was included in the reaction. However, the pH-rate profiles for the reactions in LiCl with and without MgCl2 were both bell-shaped with the pH optima in the neutral range. These findings support the idea that monovalent cations can partially substitute for divalent metal ions in the HDV ribozymes, although a divalent metal ion is more effective in supporting catalysis. The absence of a dramatic change in the general shape of pH-rate profiles in LiCl, relative to the profile for reactions including Mg2+, is in contrast to earlier data for the reactions in NaCl and limits our interpretation of the specific role played by the divalent metal ion in the catalytic mechanism.

摘要

对丁型肝炎病毒的两种核酶在单价盐中的活性进行了检测,并与在Mg2+中的活性进行了比较。两种核酶在高浓度单价阳离子中均能自我切割,在这些条件下切割活性需要一个活性位点胞嘧啶。LiCl中反应的切割速率比NaCl或NH4Cl中反应的切割速率高30至50倍,硫代效应表明化学过程是LiCl中丁型肝炎病毒基因组核酶切割的速率决定因素。然而,在LiCl中,当反应中加入MgCl2时,反应速率仍有超过100倍的增加。但是,在LiCl中有无MgCl2时反应的pH-速率曲线均为钟形,最适pH在中性范围内。这些发现支持了单价阳离子可以部分替代丁型肝炎病毒核酶中的二价金属离子这一观点,尽管二价金属离子在支持催化方面更有效。与包含Mg2+的反应曲线相比,LiCl中pH-速率曲线的总体形状没有显著变化,这与NaCl中反应的早期数据形成对比,并限制了我们对二价金属离子在催化机制中所起具体作用的解释。

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