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Exploration of factors driving incorporation of unnatural dNTPS into DNA by Klenow fragment (DNA polymerase I) and DNA polymerase α

机译:探索通过Klenow片段(DNA聚合酶I)和DNA聚合酶α将非天然dNTPS掺入DNA的因素

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摘要

In order to further understand how DNA polymerases discriminate against incorrect dNTPs, we synthesized two sets of dNTP analogues and tested them as substrates for DNA polymerase α (pol α) and Klenow fragment (exo) of DNA polymerase I (Escherichia coli). One set of analogues was designed to test the importance of the electronic nature of the base. The bases consisted of a benzimidazole ring with one or two exocyclic substituent(s) that are either electron-donating (methyl and methoxy) or electron-withdrawing (trifluoromethyl and dinitro). Both pol α and Klenow fragment exhibit a remarkable inability to discriminate against these analogues as compared to their ability to discriminate against incorrect natural dNTPs. Neither polymerase shows any distinct electronic or steric preferences for analogue incorporation. The other set of analogues, designed to examine the importance of hydrophobicity in dNTP incorporation, consists of a set of four regioisomers of trifluoromethyl benzimidazole. Whereas pol α and Klenow fragment exhibited minimal discrimination against the 5- and 6-regioisomers, they discriminated much more effectively against the 4- and 7-regioisomers. Since all four of these analogues will have similar hydrophobicity and stacking ability, these data indicate that hydrophobicity and stacking ability alone cannot account for the inability of pol α and Klenow fragment to discriminate against unnatural bases. After incorporation, however, both sets of analogues were not efficiently elongated. These results suggest that factors other than hydrophobicity, sterics and electronics govern the incorporation of dNTPs into DNA by pol α and Klenow fragment.
机译:为了进一步了解DNA聚合酶如何区分不正确的dNTP,我们合成了两组dNTP类似物,并测试它们作为DNA聚合酶的DNA聚合酶α(polα)和Klenow片段(exo -)的底物我(大肠杆菌)。设计一组类似物来测试基座电子性质的重要性。碱由具有一个或两个(一个或多个)给电子(甲基和甲氧基)或吸电子(三氟甲基和二硝基)的环外取代基的苯并咪唑环组成。 polα和Klenow片段都表现出明显的无法区分这些类似物的能力,而它们却具有区分不正确的天然dNTP的能力。聚合酶均未显示类似物掺入的任何明显的电子或空间偏好。旨在检查疏水性在dNTP掺入中的重要性的另一组类似物,由三氟甲基苯并咪唑的四种区域异构体组成。 polα和Klenow片段对5-和6-区域异构体的区分很小,而对4-和7-区域异构体的区分则更为有效。由于所有这四个类似物均具有相似的疏水性和堆积能力,因此这些数据表明,仅疏水性和堆积能力无法解释polα和Klenow片段无法区分非天然碱基的问题。然而,掺入后,两组类似物均未得到有效延长。这些结果表明,除疏水性,空间位阻和电子学因素外,还决定了pol基因和Klenow片段将dNTPs掺入DNA的能力。

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