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首页> 外文期刊>Biochemistry >SLOW RATE OF PHOSPHODIESTER BOND FORMATION ACCOUNTS FOR THE STRONG BIAS THAT TAQ DNA POLYMERASE SHOWS AGAINST 2',3'-DIDEOXYNUCLEOTIDE TERMINATORS
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SLOW RATE OF PHOSPHODIESTER BOND FORMATION ACCOUNTS FOR THE STRONG BIAS THAT TAQ DNA POLYMERASE SHOWS AGAINST 2',3'-DIDEOXYNUCLEOTIDE TERMINATORS

机译:TAQ DNA聚合酶对2',3'-双脱氧核糖核酸终止子的强烈偏向导致磷酸酯键形成的速率较慢

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Tag and T7 DNA polymerases have become basic molecular biology ''tools'' for DNA sequence analysis, However, Tag, unlike T7 DNA polymerase, is strongly biased against the incorporation of 2',3'-dideoxynucleotide triphosphates (ddNTPs) indicating very different substrate selectivities. Equilibrium binding and rate constants were measured for 2',3'-ddNTPs as well as for several other 3'-substituted terminators and compared to 2'-deoxynucleotide substrates (dNTPs). In steady-state experiments, Tag Pol I was strongly biased in favor of dATP(1) over ddATP incorporation by about 700 to 1, in contrast to T7 DNA polymerase which showed a preference of only about 4 to 1. Manganese reduced but did not eliminate selectivity against 2',3'-ddNTPs. Transient kinetic traces indicated different rate-limiting steps for substrate and terminator incorporation. Further mechanistic studies showed that the binding constants for substrates and terminators were equivalent. However, the rate constants for phosphodiester bond formation for 2',3'-ddNTPs were 200-3000-fold lower than for dNTPs, Alternative terminators showed only slight improvements. The data were consistent with a model in which both substrates and terminators undergo ground-state binding followed by formation of a tight-binding Enz . DNA . Nucleotide complex. Immediately after complex formation, substrates undergo a rapid nucleoside phosphoryl transfer reaction. However, the reaction rates for terminators were slower presumably due to misalignment of reactive groups in the active site. Thus, the strong bias that Taq DNA polymerase shows against terminators is due to a very slow ''chemistry'' step, Such a strong bias has several kinetic consequences for DNA sequence patterns. These consequences are discussed in the text.
机译:Tag和T7 DNA聚合酶已成为DNA序列分析的基本分子生物学“工具”,但是,与T7 DNA聚合酶不同,Tag强烈反对2',3'-二脱氧核苷酸三磷酸(ddNTPs)的掺入,这表明它们有很大的不同。底物选择性。测量了2',3'-ddNTPs以及其他3'-取代的终止子的平衡结合率和速率常数,并与2'-脱氧核苷酸底物(dNTPs)进行了比较。在稳态实验中,Tag Pol I比ddATP掺入强烈偏向于dATP(1)约700:1,而T7 DNA聚合酶的偏爱仅为约4:1。锰含量降低但没有消除了针对2',3'-ddNTP的选择性。瞬态动力学痕迹表明底物和终止剂掺入的不同限速步骤。进一步的机理研究表明,底物和终止剂的结合常数是等效的。但是,形成2',3'-ddNTPs的磷酸二酯键的速率常数比dNTPs低200-3000倍,替代终止子仅显示出轻微的改善。数据与其中底物和终止子均经历基态结合然后形成紧密结合的Enz的模型一致。 DNA。核苷酸复合物。复合物形成后,底物立即经历快速的核苷磷酸基转移反应。然而,据推测,由于活性位点中反应基团的未对准,终止剂的反应速率较慢。因此,Taq DNA聚合酶对终止子表现出的强烈偏见归因于非常缓慢的“化学”步骤。这样的强烈偏见对DNA序列模式具有若干动力学影响。这些后果将在本文中讨论。

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