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由大肠杆菌DNA聚合酶I掺入(dA-dT)n中的氮氧化物标记胸苷类似物的碱基动力学。

Base dynamics of nitroxide-labeled thymidine analogues incorporated into (dA-dT)n by DNA polymerase I from Escherichia coli.

作者信息

Pauly G T, Thomas I E, Bobst A M

机构信息

Department of Chemistry, University of Cincinnati, Ohio 45221.

出版信息

Biochemistry. 1987 Nov 17;26(23):7304-10. doi: 10.1021/bi00397a016.

Abstract

Nitroxide-labeled thymidine substrates (dL) for Escherichia coli DNA polymerase I (pol I) were used to synthesize spin-labeled alternating double-stranded copolymers with (dA-dT)n as a template. All dL substrates use an alkane or alkene tether substituted into the 5-position of the pyrimidine ring to link a five- or six-membered ring nitroxide to the pyrimidine base. The kinetics of dL incorporation show some tether dependence with respect to tether length and tether geometry. The electron spin resonance (ESR) spectra of (dA-dT,dL)n duplexes directly formed by polymerization with pol I are compared with the ESR spectra of (dA)n(dT,dL)n duplexes, which are obtained after annealing of nitroxide-labeled single strands with complementary unlabeled single strands. The ESR spectra indicate that nitroxide-labeled analogues with tethers short enough to let the nitroxide ring reside in the major groove are excellent reporter groups for monitoring hybridization. A small difference between the ESR line shapes of the alternating duplexes (dA-dT,dL)n and the homopolymer duplexes (dA)n(dT,dL)n containing the same dL is detectable, suggesting the presence of subtle differences in the base dynamics between both systems. Computer simulation of the ESR spectra of the (dA-dT,dL)n duplexes was successful with the same motional model reported earlier [Kao, S.-C., & Bobst, A.M. (1985) Biochemistry 24, 5465-5469]. The thymidine motion arising from tilting and torsion of base pairs and base twisting in (dA-dT)n is similar to that in (dA)n(dT)n and is of the order of 4 ns.

摘要

用氮氧化物标记的胸腺嘧啶核苷底物(dL)作为大肠杆菌DNA聚合酶I(pol I)的底物,以(dA-dT)n为模板合成自旋标记的交替双链共聚物。所有dL底物都使用取代嘧啶环5位的烷烃或烯烃连接链,将五元或六元环氮氧化物连接到嘧啶碱基上。dL掺入的动力学显示出对连接链长度和连接链几何形状的一些连接链依赖性。将通过与pol I聚合直接形成的(dA-dT,dL)n双链体的电子自旋共振(ESR)光谱与(dA)n(dT,dL)n双链体的ESR光谱进行比较,后者是在将氮氧化物标记的单链与互补的未标记单链退火后获得的。ESR光谱表明,连接链足够短以使氮氧化物环位于大沟中的氮氧化物标记类似物是监测杂交的优良报告基团。可以检测到交替双链体(dA-dT,dL)n和含有相同dL的均聚物双链体(dA)n(dT,dL)n的ESR线形之间的微小差异,这表明两个系统之间碱基动力学存在细微差异。使用先前报道的相同运动模型[Kao,S.-C.,& Bobst,A.M.(1985)Biochemistry 24,5465-5469]成功地对(dA-dT,dL)n双链体的ESR光谱进行了计算机模拟。(dA-dT)n中由于碱基对的倾斜和扭转以及碱基扭转引起的胸腺嘧啶运动与(dA)n(dT)n中的相似,约为4纳秒。

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