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Hypermutagenic PCR involving all four transitions and a sizeable proportion of transversions.

机译:超诱变PCR涉及所有四个过渡和相当大比例的颠换。

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摘要

Very complex mutant libraries of the dihydrofolate reductase (DHFR) gene encoded by the Escherichia coli plasmid R67 were created using hypermutagenic PCR with biased deoxynucleotide triphosphate (dNTP) concentrations. Exploiting the particular stability of the G:T mismatch, the DHFR gene could be enriched in A+T by employing biased deoxypyrimidine triphosphate concentrations, i.e. [dTTP] > [dCTP]. A sizeable fraction of hypermutants were functional. A combination of [dTTP] > [dCTP] and [dGTP] > [dATP] biases generated mutations at unexpectedly low frequencies. This could be overcome by the addition of Mn2+ cations. Overall mutation frequencies of 10% per amplification (range 4-18% per clone) could be attained. All four transitions and a smaller number of transversions were produced throughout the gene. PCR mutagenesis could be so extensive as to inactivate all amplified versions of the gene.
机译:使用超诱变PCR和偏磷酸三氧合脱氧核苷酸(dNTP)浓度,创建了由大肠杆菌质粒R67编码的二氢叶酸还原酶(DHFR)基因的非常复杂的突变文库。利用G:T错配的特殊稳定性,可以通过使用偏磷酸脱氧嘧啶三磷酸浓度(即[dTTP]> [dCTP])使DHFR基因富含A + T。相当大一部分超突变体起作用。 [dTTP]> [dCTP]和[dGTP]> [dATP]偏差的组合会产生意想不到的低频突变。这可以通过添加Mn2 +阳离子来克服。总扩增频率为每次扩增10%(每个克隆4-18%)。在整个基因中产生了全部四个转变和更少的颠换。 PCR诱变可能如此广泛,以致使基因的所有扩增形式失活。

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