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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >DNA sequence effects on single base deletions arising during DNA polymerization in vitro by Escherichia coli Klenow fragment polymerase.
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DNA sequence effects on single base deletions arising during DNA polymerization in vitro by Escherichia coli Klenow fragment polymerase.

机译:DNA序列对大肠杆菌Klenow片段聚合酶体外DNA聚合过程中产生的单碱基缺失的影响。

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Most single base deletions detected after DNA polymerization in vitro directed by either Escherichia coli DNA polymerase I or its Klenow fragment are opposite Pu in the template. The most frequent mutations were previously found to be associated with the consensus template context 5'-PyTPu-3'. In this study, the predictive power of the consensus sequence on single base deletion frequencies was directly tested by parallel comparison of mutations arising in four related DNAs differing by a single base. G, a deletion hotspot within the template context 5'-TTGA-3', was substituted by each of the 3 other bases. Previous studies had shown that deletions opposite the G were frequent but that deletions opposite its neighboring A were never detected. Based on the predictions of the consensus, the substitution of T for G should produce frequent deletions opposite the neighboring A due to its new 5'-TTTA-3' template context. This prediction was fulfilled; no deletions of this A were detected in the other templates. The consensus further predicted that deletions opposite template C would be lower than those opposite either A or G at the same site and this prediction was also fulfilled. The C substitution also produced a new hotspot for 1 bp deletions 14 bp away. The new hotspot depends on quasi-palindromic misalignment of the newly synthesized DNA strand during polymerization; accurate, but ectopically templated synthesis is responsible for this mutagenesis. Mutations templated by quasi-palindromic misalignments have previously been recognized when they produced complex sequence changes; here we show that this mechanism can produce frequent single base deletions. The unique stimulation of misalignment mutagenesis by the C substitution in the template is consistent with the singular ability of C at that site to contribute to extended complementary pairing during the DNA misalignment that precedes mutagenesis.
机译:大肠杆菌DNA聚合酶I或其Klenow片段在体外进行DNA聚合后检测到的大多数单碱基缺失与模板中的Pu相对。先前发现最频繁的突变与共有模板上下文5'-PyTPu-3'相关。在这项研究中,直接比较共有序列对单个碱基不同的四个相关DNA中产生的突变的平行性,验证了共有序列对单个碱基缺失频率的预测能力。模板上下文5'-TTGA-3'中的删除热点G被其他3个碱基所取代。先前的研究表明,与G相对的缺失很常见,但从未检测到与之相邻的A相对的缺失。根据共识预测,由于新的5'-TTTA-3'模板上下文,用T取代G应该会频繁产生与相邻A相反的缺失。这个预言已经实现了;在其他模板中未检测到此A的删除。共识还预测,与模板C相对的缺失将低于在同一位点与A或G相对的缺失,这一预测也得到了满足。 C取代还为14 bp外的1 bp缺失产生了新的热点。新的热点取决于聚合过程中新合成的DNA链的准回文错位。准确但异位模板合成是造成这种诱变的原因。准回文错序模板化的突变在产生复杂的序列变化时已经被人们所认识。在这里,我们证明了这种机制可以产生频繁的单碱基删除。模板中C取代引起的错配诱变的独特刺激与该位点C在诱变之前的DNA错配过程中有助于扩展互补配对的奇异能力相一致。

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