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Dynamic assembly of primers on nucleic acid templates

机译:在核酸模板上动态组装引物

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摘要

A strategy is presented that uses dynamic equlibria to assemble in situ composite DNA polymerase primers, having lengths of 14 or 16 nt, from DNA fragments that are 6 or 8 nt in length. In this implementation, the fragments are transiently joined under conditions of dynamic equilibrium by an imine linker, which has a dissociation constant of similar to 1 mu M. If a polymerase is able to extend the composite, but not the fragments, it is possible to prime the synthesis of a target DNA molecule under conditions where two useful specificities are combined: (i) single nucleotide discrimination that is characteristic of short oligonucleotide duplexes (four to six nucleobase pairs in length), which effectively excludes single mismatches, and (ii) an overall specificity of priming that is characteristic of long (14 to 16mers) oligonucleotides, potentially unique within a genome. We report here the screening of a series of polymerases that combine an ability not to accept short primer fragments with an ability to accept the long composite primer held together by an unnatural imine linkage. Several polymerases were found that achieve this combination, permitting the implementation of the dynamic combinatorial chemical strategy.
机译:提出了一种策略,该策略使用动态平衡从长度为6或8 nt的DNA片段组装长度为14或16 nt的原位复合DNA聚合酶引物。在此实施方案中,片段在动态平衡条件下通过亚胺连接体瞬时连接,该亚胺连接体的解离常数接近1μM。如果聚合酶能够延伸复合物,但不能延伸片段,则可以在组合了两个有用的特异性的条件下引发靶DNA分子的合成:(i)具有短寡核苷酸双链体特征(长度为4至6个核碱基对)的特征的单核苷酸区分,有效地排除了单个错配;和(ii)引发的总体特异性,是长(14至16个聚体)寡核苷酸的特征,在基因组中可能是唯一的。我们在这里报告了一系列聚合酶的筛选,这些聚合酶结合了不接受短引物片段的能力和接受通过非天然亚胺键连接在一起的长复合引物的能力。发现几种聚合酶可以实现这种结合,从而可以实施动态组合化学策略。

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