Abbotts J, SenGupta D N, Zon G, Wilson S H
Laboratory of Biochemistry, National Cancer Institute, Bethesda, Maryland 20892.
J Biol Chem. 1988 Oct 15;263(29):15094-103.
Termination of Escherichia coli DNA polymerase I large fragment after processive synthesis on natural and other well-defined template.primer systems has been examined. We found that after any given deoxynucleoside monophosphate incorporation termination occurs in a nonrandom manner with phi X174 DNA as template: Termination is much more likely at some nucleotide residues along the template than at others. Analysis of these stronger termination sites indicates that the template base:incoming nucleotide combination influences termination. Introduction of a double-stranded region along the phi X174 template induces termination, and reducing dNTP concentrations or substituting 2'-deoxynucleoside 5'-O-(1-thio)triphosphate substrates also increases termination. Observations with the phi X174 DNA template system were extended with a defined template containing 1 inosine residue in an otherwise d(T)n homopolymer. Termination at the I residue is modulated by dCTP and decreases as dCTP concentration increases. A similar relationship is seen with the dCTP (1-thio) derivative, but termination is higher at given concentrations of this derivative than with dCTP. Pyrophosphate decreases general processivity in this system, but does not counteract the effect of increasing dCTP. Hill plot analysis of the dCTP effect in the inosine-containing template system gave a linear plot with Hill coefficient of 0.34, suggesting that dCTP influences termination at several steps in the polymerase reaction scheme. Substituting a methylated template base for I also increased termination, producing very strong blocks to processive synthesis. The results are consistent with a model in which termination occurs with several enzyme forms that are in equilibrium in an ordered catalytic mechanism.
已对大肠杆菌DNA聚合酶I大片段在天然及其他明确的模板-引物系统上进行连续合成后的终止情况进行了研究。我们发现,以φX174 DNA为模板,在掺入任何给定的脱氧核苷单磷酸后,终止以非随机方式发生:沿着模板,在某些核苷酸残基处比在其他残基处更易发生终止。对这些更强终止位点的分析表明,模板碱基与进入的核苷酸组合会影响终止。沿着φX174模板引入双链区域会诱导终止,降低dNTP浓度或用2'-脱氧核苷5'-O-(1-硫代)三磷酸底物替代也会增加终止。用在其他方面为d(T)n同聚物且含有1个次黄苷残基的明确模板扩展了对φX174 DNA模板系统的观察。在I残基处的终止受dCTP调节,并随着dCTP浓度增加而降低。dCTP的(1-硫代)衍生物也有类似关系,但在该衍生物的给定浓度下终止比dCTP时更高。焦磷酸会降低该系统中的总体持续合成能力,但不会抵消增加dCTP的影响。对含次黄苷模板系统中dCTP效应的希尔图分析得到一条线性图,希尔系数为0.34,表明dCTP在聚合酶反应方案的多个步骤中影响终止。用甲基化的模板碱基替代I也会增加终止,对连续合成产生非常强的阻断。结果与一个模型一致,即在有序催化机制中,终止通过几种处于平衡的酶形式发生。