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具有立体规则交替甲基膦酸酯/磷酸二酯主链的寡胸苷酸类似物作为DNA聚合酶的引物。

Oligothymidylate analogues having stereoregular, alternating methylphosphonate/phosphodiester backbones as primers for DNA polymerase.

作者信息

Miller P S, Annan N D, McParland K B, Pulford S M

出版信息

Biochemistry. 1982 May 11;21(10):2507-12. doi: 10.1021/bi00539a033.

Abstract

Oligothymidylate analogues having stereoregular, alternating methylphosphonate/phosphodiester backbones, d-Tp(TpTp)4T isomers I and II and d-Tp(TpTp)3T(pT)1-5 isomers I and II, were prepared by methods analogous to the phosphotriester synthetic technique. The designations isomer I nd isomer II refer to the configuration of the methylphosphonate linkage, which is the same through each isomer. Analogues with the type I methylphosphonate configuration form very stable duplexes with poly(dA) while those with the type II configuration form either 2T:1A triplexes or 1T:1A duplexes with poly(dA) of considerably lower stabilities. The oligothymidylate analogues were tested for their ability to initiate polymerizations catalyzed by Escherichia coli DNA polymerase I or calf thymus DNA polymerase alpha on a poly(dA) template. Neither d-Tp(TpTp)4T nor d-Tp(T]Tp)3TpT served as initiators of polymerization while d-Tp(TpTp)3T(pT)2-5 showed increasing priming ability as the length of the 3'-oligothymidylate tail increased. Analogues with type I methylphosphonate configuration were more effective initiators than the type II analogues at 37 degrees C. The apparent activation energies of polymerizations initiated by d-Tp(TpTp)3T-(pT)4 and 5 isomer I were greater than those for reactions initiated by isomer II or d-(Tp)11T. The results suggest that DNA polymerase interacts with the charged phosphodiester groups of the primer molecule and may help stabilize primer/template interaction. At least two contiguous phosphodiester groups are required at the 3' end of the analogue primers in order for polymerization to occur. Interactions between the polymerase and primer also appear to occur with phosphodiester groups located at sites remote from the 3'-OH polymerization site and may be influenced by the configuration of the methylphosphonate group.

摘要

具有立体规则、交替的甲基膦酸酯/磷酸二酯主链的寡胸苷酸类似物,即d-Tp(TpTp)4T异构体I和II以及d-Tp(TpTp)3T(pT)1-5异构体I和II,是通过类似于磷酸三酯合成技术的方法制备的。异构体I和异构体II的命名是指甲基膦酸酯键的构型,每种异构体中的构型相同。具有I型甲基膦酸酯构型的类似物与聚(dA)形成非常稳定的双链体,而具有II型构型的类似物与聚(dA)形成稳定性低得多的2T:1A三链体或1T:1A双链体。测试了这些寡胸苷酸类似物在聚(dA)模板上引发由大肠杆菌DNA聚合酶I或小牛胸腺DNA聚合酶α催化的聚合反应的能力。d-Tp(TpTp)4T和d-Tp(TpTp)3TpT都不能作为聚合反应的引发剂,而d-Tp(TpTp)3T(pT)2-5随着3'-寡胸苷酸尾巴长度的增加,引发能力增强。在37℃时,具有I型甲基膦酸酯构型的类似物比II型类似物更有效地引发聚合反应。由d-Tp(TpTp)3T-(pT)4和5异构体I引发的聚合反应的表观活化能大于由异构体II或d-(Tp)11T引发的反应的表观活化能。结果表明,DNA聚合酶与引物分子带电荷的磷酸二酯基团相互作用,可能有助于稳定引物/模板相互作用。为了发生聚合反应,在类似物引物的3'端至少需要两个相邻的磷酸二酯基团。聚合酶与引物之间的相互作用似乎也发生在远离3'-OH聚合位点的磷酸二酯基团处,并且可能受甲基膦酸酯基团构型的影响。

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