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揭示RNA复制中单体结合的热力学原理。

Uncovering the thermodynamics of monomer binding for RNA replication.

作者信息

Izgu Enver Cagri, Fahrenbach Albert C, Zhang Na, Li Li, Zhang Wen, Larsen Aaron T, Blain J Craig, Szostak Jack W

机构信息

†Howard Hughes Medical Institute, Department of Molecular Biology and Center for Computational and Integrative Biology, Massachusetts General Hospital, 185 Cambridge Street, Boston, Massachusetts 02114, United States.

‡Department of Genetics, Harvard Medical School, 77 Avenue Louis Pasteur, Boston, Massachusetts 02115, United States.

出版信息

J Am Chem Soc. 2015 May 20;137(19):6373-82. doi: 10.1021/jacs.5b02707. Epub 2015 May 7.

Abstract

The nonenzymatic replication of primordial RNA is thought to have been a critical step in the origin of life. However, despite decades of effort, the poor rate and fidelity of model template copying reactions have thus far prevented an experimental demonstration of nonenzymatic RNA replication. The overall rate and fidelity of template copying depend, in part, on the affinity of free ribonucleotides to the RNA primer-template complex. We have now used (1)H NMR spectroscopy to directly measure the thermodynamic association constants, Kas, of the standard ribonucleotide monophosphates (rNMPs) to native RNA primer-template complexes. The binding affinities of rNMPs to duplexes with a complementary single-nucleotide overhang follow the order C > G > A > U. Notably, these monomers bind more strongly to RNA primer-template complexes than to the analogous DNA complexes. The relative binding affinities of the rNMPs for complementary RNA primer-template complexes are in good quantitative agreement with the predictions of a nearest-neighbor analysis. With respect to G:U wobble base-pairing, we find that the binding of rGMP to a primer-template complex with a 5'-U overhang is approximately 10-fold weaker than to the complementary 5'-C overhang. We also find that the binding of rGMP is only about 2-fold weaker than the binding of rAMP to 5'-U, consistent with the poor fidelity observed in the nonenzymatic copying of U residues in RNA templates. The accurate Ka measurements for ribonucleotides obtained in this study will be useful for designing higher fidelity, more effective RNA replication systems.

摘要

原始RNA的非酶促复制被认为是生命起源中的关键一步。然而,尽管经过了数十年的努力,但模型模板复制反应的速率和保真度较差,迄今为止阻碍了非酶促RNA复制的实验证明。模板复制的总体速率和保真度部分取决于游离核糖核苷酸与RNA引物-模板复合物的亲和力。我们现在使用核磁共振光谱法直接测量标准核糖核苷酸单磷酸(rNMP)与天然RNA引物-模板复合物的热力学缔合常数Kas。rNMP与具有互补单核苷酸突出端的双链体的结合亲和力顺序为C>G>A>U。值得注意的是,这些单体与RNA引物-模板复合物的结合比与类似的DNA复合物更强。rNMP对互补RNA引物-模板复合物的相对结合亲和力与最近邻分析的预测在数量上吻合良好。关于G:U摆动碱基对,我们发现rGMP与具有5'-U突出端的引物-模板复合物的结合比与互补的5'-C突出端弱约10倍。我们还发现rGMP的结合仅比rAMP与5'-U的结合弱约2倍,这与RNA模板中U残基非酶促复制中观察到的低保真度一致。本研究中获得的核糖核苷酸准确的Ka测量值将有助于设计更高保真度、更有效的RNA复制系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20b0/4984997/78f96268df93/ja-2015-027079_0001.jpg

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