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嗜热四膜虫核酶中稳定突变的晶体结构相互作用与热力学比较。

Comparison of crystal structure interactions and thermodynamics for stabilizing mutations in the Tetrahymena ribozyme.

作者信息

Guo Feng, Gooding Anne R, Cech Thomas R

机构信息

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

出版信息

RNA. 2006 Mar;12(3):387-95. doi: 10.1261/rna.2198206. Epub 2006 Jan 23.

Abstract

Although general mechanisms of RNA folding and catalysis have been elucidated, little is known about how ribozymes achieve structural stability at high temperature. A previous in vitro evolution experiment identified a small number of mutations that significantly increase the thermostability of the tertiary structure of the Tetrahymena ribozyme. Because we also determined the crystal structure of this thermostable ribozyme, we have for the first time the opportunity to compare the structural interactions and thermodynamic contributions of individual nucleotides in a ribozyme. We investigated the contribution of five mutations to thermostability by using temperature gradient gel electrophoresis. Unlike the case with several well-studied proteins, the effects of individual mutations on thermostability of this RNA were highly context dependent. The three most important mutations for thermostability were actually destabilizing in the wild-type background. A269G and A304G contributed to stability only when present as a pair, consistent with their proximity in the ribozyme structure. In an evolutionary context, this work supports and extends the idea that one advantage of protein enzyme systems over an RNA world is the ability of proteins to accumulate stabilizing single-site mutations, whereas RNA may often require much rarer double mutations to improve the stability of both its tertiary and secondary structures.

摘要

尽管RNA折叠和催化的一般机制已经阐明,但对于核酶如何在高温下实现结构稳定性却知之甚少。先前的一项体外进化实验鉴定出了少量能显著提高四膜虫核酶三级结构热稳定性的突变。由于我们还确定了这种热稳定核酶的晶体结构,所以首次有机会比较核酶中单个核苷酸的结构相互作用和热力学贡献。我们通过温度梯度凝胶电泳研究了五个突变对热稳定性的贡献。与几种经过充分研究的蛋白质不同,单个突变对这种RNA热稳定性的影响高度依赖于上下文。对热稳定性最重要的三个突变在野生型背景下实际上是使稳定性降低的。A269G和A304G只有作为一对存在时才对稳定性有贡献,这与其在核酶结构中的邻近性一致。在进化背景下,这项工作支持并扩展了这样一种观点,即蛋白质酶系统相对于RNA世界的一个优势在于蛋白质能够积累稳定的单点突变,而RNA可能通常需要罕见得多的双突变来提高其三级和二级结构的稳定性。

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