首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >High-fidelity in vivo replication of DNA base shape mimics without Watson-Crick hydrogen bonds.
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High-fidelity in vivo replication of DNA base shape mimics without Watson-Crick hydrogen bonds.

机译:没有沃森-克里克氢键的高保真体内复制DNA碱基形状的模拟。

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We report studies testing the importance of Watson-Crick hydrogen bonding, base-pair geometry, and steric effects during DNA replication in living bacterial cells. Nonpolar DNA base shape mimics of thymine and adenine (abbreviated F and Q, respectively) were introduced into Escherichia coli by insertion into a phage genome followed by transfection of the vector into bacteria. Genetic assays showed that these two base mimics were bypassed with moderate to high efficiency in the cells and with very high efficiency under damage-response (SOS induction) conditions. Under both sets of conditions, the T-shape mimic (F) encoded genetic information in the bacteria as if it were thymine, directing incorporation of adenine opposite it with high fidelity. Similarly, the A mimic (Q) directed incorporation of thymine opposite itself with high fidelity. The data establish that Watson-Crick hydrogen bonding is not necessary for high-fidelity replication of a base pair in vivo. The results suggest that recognition of DNA base shape alone serves as the most powerful determinant of fidelity during transfer of genetic information in a living organism.
机译:我们报告的研究测试了在活细菌细胞中DNA复制过程中Watson-Crick氢键,碱基对的几何形状和空间效应的重要性。通过将胸腺嘧啶和腺嘌呤的非极性DNA碱基形状模拟物(分别缩写为F和Q)引入大肠杆菌,方法是将其插入噬菌体基因组,然后将载体转染到细菌中。遗传检测表明,这两个碱基模拟物在细胞中以中等至高效的效率被绕过,在损伤反应(SOS诱导)条件下以很高的效率被绕过。在这两种情况下,T形模拟物(F)都将细菌中的遗传信息编码为胸腺嘧啶,从而以高保真度指导与之相对的腺嘌呤的掺入。类似地,A模拟(Q)指示以高保真度与自身相反的胸腺嘧啶掺入。数据证实,沃森-克里克氢键对于体内高保真复制碱基对不是必需的。结果表明,仅DNA碱基形状的识别是在生物体中遗传信息转移过程中保真度的最有力决定因素。

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