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嗜温性核酶向嗜热性核酶的逐步转化。

Stepwise conversion of a mesophilic to a thermophilic ribozyme.

作者信息

Fang X-W, Srividya N, Golden B L, Sosnick T R, Pan T

机构信息

Department of Biochemistry and Molecular Biology, University of Chicago, 920 E 58th Street, Chicago, IL 60637, USA.

出版信息

J Mol Biol. 2003 Jul 4;330(2):177-83. doi: 10.1016/s0022-2836(03)00582-5.

Abstract

A fundamental question in RNA folding is the mechanism of thermodynamic stability. We investigated the equilibrium folding of a series of sequence variants in which one to three motifs of a 255-nucleotide mesophilic ribozyme were substituted with the corresponding motifs from its thermophilic homologue. Substitution of three crucial motifs individually or in groups results in a continual increase in the stability and folding cooperativity in a stepwise fashion. We find an unexpected relationship between stability and folding cooperativity. Without changing the folding cooperativity, RNAs having a similar native structure can only achieve moderate change in stability and likewise, without changing stability, RNAs having a similar native structure can only achieve moderate change in folding cooperativity. This intricate relationship must be included in the predictions of tertiary RNA stability.

摘要

RNA折叠中的一个基本问题是热力学稳定性机制。我们研究了一系列序列变体的平衡折叠,其中一个255个核苷酸的嗜温性核酶的一到三个基序被其嗜热性同源物的相应基序所取代。单独或成组替换三个关键基序会导致稳定性和折叠协同性以逐步方式持续增加。我们发现了稳定性与折叠协同性之间意想不到的关系。在不改变折叠协同性的情况下,具有相似天然结构的RNA只能在稳定性上实现适度变化,同样,在不改变稳定性的情况下,具有相似天然结构的RNA只能在折叠协同性上实现适度变化。这种复杂的关系必须纳入三级RNA稳定性的预测中。

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