【2h】

Frameshift errors initiated by nucleotide misincorporation.

机译:由核苷酸错误掺入引发的移码错误。

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摘要

Studies presented here on the fidelity of DNA synthesis in vitro support the hypothesis that a classical base-substitution intermediate (i.e., a misincorporated nucleotide) can yield a frameshift mutation. By using a fidelity assay specifically designed to detect minus-one-base errors, nucleotide substrate pool imbalances that have previously been shown to increase the rate of misincorporation are now shown to also increase minus-one-base frameshift error rates. Examination of the specificity of the errors produced in reactions with various dNTP pool imbalances and various DNA templates revealed that template nucleotides were preferentially lost when they had as a 5' neighbor a nucleotide complementary to the dNTP provided in excess. This suggests that when a misincorporated nucleotide is complementary to the next nucleotide in the template, a misaligned intermediate containing a correct terminal base pair can form and be extended by a DNA polymerase, leading to a frameshift mutation. We present evidence that the proposed mechanism may operate in vivo and discuss the implications of this model for frameshift mutations induced by DNA damage.
机译:此处提出的有关体外DNA保真度的研究支持以下假设:经典的碱基替代中间体(即错误掺入的核苷酸)可以产生移码突变。通过使用专门设计用于检测负一碱基错误的保真度分析,以前已显示出增加错误掺入率的核苷酸底物库不平衡现在也显示出负一碱基移码错误率也增加。对与各种dNTP库不平衡和各种DNA模板反应产生的错误的特异性进行的检查表明,当模板核苷酸的5'邻域与过量提供的dNTP互补时,核苷酸优先丢失。这表明当错误掺入的核苷酸与模板中的下一个核苷酸互补时,包含正确末端碱基对的错位中间体会形成DNA聚合酶并由其延伸,从而导致移码突变。我们目前提出的机制可能在体内运行的证据,并讨论该模型对DNA损伤诱导的移码突变的影响。

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