Fiala Kevin A, Suo Zucai
Department of Biochemistry, Ohio State Biochemistry Program, The Ohio State University, Columbus 43210, USA.
Biochemistry. 2004 Feb 24;43(7):2106-15. doi: 10.1021/bi0357457.
Sulfolobus solfataricus P2 DNA polymerase IV (Dpo4) is a thermostable archaeal enzyme and a member of the error-prone and lesion-bypass Y-family. In this paper, for the first time, the fidelity of a Y-family polymerase, Dpo4, was determined using pre-steady-state kinetic analysis of the incorporation of a single nucleotide into an undamaged DNA substrate 21/41-mer at 37 degrees C. We assessed single-turnover (with Dpo4 in molar excess over DNA) saturation kinetics for all 16 possible nucleotide incorporations. The fidelity of Dpo4 was estimated to be in the range of 10(-3)-10(-4). Interestingly, the ground-state binding affinity of correct nucleotides (70-230 microM) is 10-50-fold weaker than those of replicative DNA polymerases. Such a low affinity is consistent with the lack of interactions between Dpo4 and the bound nucleotides as revealed in the crystal structure of Dpo4, DNA, and a matched nucleotide. The affinity of incorrect nucleotides for Dpo4 is approximately 2-10-fold weaker than that of correct nucleotides. Intriguingly, the mismatched dCTP has an affinity similar to that of the matched nucleotides when it is incorporated against a pyrimidine template base flanked by a 5'-template guanine. The incoming dCTP likely skips the first available template base and base pairs with the 5'-template guanine, as observed in the crystal structure of Dpo4, DNA, and a mismatched nucleotide. The mismatch incorporation rates, regardless of the 5'-template base, were approximately 2-3 orders of magnitude slower than the incorporation rates for matched nucleotides, which is the predominant contribution to the fidelity of Dpo4.
嗜热栖热菌P2 DNA聚合酶IV(Dpo4)是一种耐热古细菌酶,属于易出错且能绕过损伤的Y家族。本文首次在37℃下,通过对单个核苷酸掺入未受损的21/41-mer DNA底物的预稳态动力学分析,测定了Y家族聚合酶Dpo4的保真度。我们评估了所有16种可能的核苷酸掺入的单周转(Dpo4相对于DNA摩尔过量)饱和动力学。Dpo4的保真度估计在10^(-3)-10^(-4)范围内。有趣的是,正确核苷酸的基态结合亲和力(70-230 microM)比复制性DNA聚合酶的结合亲和力弱10-50倍。这种低亲和力与Dpo4、DNA和匹配核苷酸的晶体结构中揭示的Dpo4与结合核苷酸之间缺乏相互作用一致。错误核苷酸对Dpo4的亲和力比正确核苷酸弱约2-10倍。有趣的是,当错配的dCTP掺入到由5'-模板鸟嘌呤侧翼的嘧啶模板碱基对面时,其亲和力与匹配核苷酸的亲和力相似。如在Dpo4、DNA和错配核苷酸的晶体结构中观察到的那样,进入的dCTP可能跳过第一个可用的模板碱基并与5'-模板鸟嘌呤碱基配对。无论5'-模板碱基如何,错配掺入率比匹配核苷酸的掺入率慢约2-3个数量级,这是对Dpo4保真度的主要贡献。