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8-氧代-7,8-二氢鸟苷三磷酸掺入及复制性和修复性DNA聚合酶延伸的稳态和预稳态动力学分析。

Steady-state and pre-steady-state kinetic analysis of 8-oxo-7,8-dihydroguanosine triphosphate incorporation and extension by replicative and repair DNA polymerases.

作者信息

Einolf H J, Schnetz-Boutaud N, Guengerich F P

机构信息

Department of Biochemistry, Center in Molecular Toxicology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146, USA.

出版信息

Biochemistry. 1998 Sep 22;37(38):13300-12. doi: 10.1021/bi981346d.

Abstract

The kinetics of 8-oxo-7,8-dihydroguanosine triphosphate (8-oxo-dGTP) incorporation into DNA by Escherichia coli polymerases I exo- (KF-) and II exo- (Pol II-), HIV-1 RT reverse transcriptase (HIV-1 RT), and bacteriophage T7 exo- (T7(-)) were examined to determine the misincorporation potential for 8-oxo-dGTP and to investigate the role of base pairing symmetry in DNA polymerase fidelity. 8-Oxo-dGTP was found to be a poor substrate for the four polymerases, with insertion efficiencies >10(4)-fold lower than for dGTP incorporation. Insertion efficiencies of 8-oxo-dGTP were also consistently lower than for incorporation of dNTPs opposite template 8-oxo-G, previously studied in this laboratory. In steady-state reactions, T7(-) had a high preference for 8-oxo-dGTP insertion opposite A (97%) and HIV-1 RT, KF-, and Pol II- preferred to insert 8-oxo-dGTP opposite C. Misinsertion frequencies for 8-oxo-dGTP also varied considerably from frequencies of misinsertion at template 8-oxo-G adducts for Pol II-, HIV-1 RT, and T7(-). Pre-steady-state incorporation of 8-oxo-dGTP opposite C (but not opposite A) by HIV-1 RT, KF-, and Pol II- displayed biphasic curves, with rates of initial incorporation 2- to 11-fold lower than normal dGTP incorporation. Although extension past template 8-oxo-G adducts had previously been shown to occur preferentially for the mispair, extension past primer 8-oxo-G:template A or C pairs was variable. The low and comparable estimated Kd values for dGTP and 8-oxo-dGTP binding to HIV-1 RT alone or HIV-1 RT.DNA complexes indicated that the initial binding was nonselective and had high affinity. The large difference (>3 orders of magnitude) in kinetic Kdapp values for 8-oxo-dGTP and dGTP binding to HIV-1 RT.DNA indicates that there are contributions to the kinetically determined Kdapp (such as conformational change and/or phosphodiester bond formation) which may be involved in the selection against 8-oxo-dGTP. The differences in binding (Kdapp), incorporation, and extension kinetics of 8-oxo-dGTP compared to normal dNTP incorporation at template 8-oxo-G adducts indicate that polymerase fidelity does not depend solely upon the overall geometry of Watson-Crick base pairs and reflects the asymmetry of the enzyme active site.

摘要

研究了大肠杆菌DNA聚合酶I外切酶缺陷型(KF-)、II外切酶缺陷型(Pol II-)、HIV-1逆转录酶(HIV-1 RT)和噬菌体T7外切酶缺陷型(T7(-))将8-氧代-7,8-二氢鸟苷三磷酸(8-氧代-dGTP)掺入DNA的动力学,以确定8-氧代-dGTP的错掺入可能性,并研究碱基配对对称性在DNA聚合酶保真度中的作用。发现8-氧代-dGTP是这四种聚合酶的不良底物,其插入效率比掺入dGTP低>10^4倍。8-氧代-dGTP的插入效率也始终低于本实验室先前研究的与模板8-氧代-G相对应的dNTP掺入效率。在稳态反应中,T7(-)对与A相对应的8-氧代-dGTP插入具有高度偏好性(97%),而HIV-1 RT、KF-和Pol II-则更倾向于将8-氧代-dGTP插入与C相对应的位置。8-氧代-dGTP的错插入频率与Pol II-、HIV-1 RT和T7(-)在模板8-氧代-G加合物处的错插入频率也有很大差异。HIV-1 RT、KF-和Pol II-在与C(而非与A)相对应位置的8-氧代-dGTP预稳态掺入呈现双相曲线,初始掺入速率比正常dGTP掺入低2至11倍。尽管先前已表明越过模板8-氧代-G加合物的延伸优先发生在错配处,但越过引物8-氧代-G:模板A或C对的延伸则是可变的。单独的HIV-1 RT或HIV-1 RT-DNA复合物对dGTP和8-氧代-dGTP结合的估计Kd值较低且相当,表明初始结合是非选择性的且具有高亲和力。8-氧代-dGTP和dGTP与HIV-1 RT-DNA结合的动力学Kdapp值存在很大差异(>3个数量级),这表明对动力学确定的Kdapp有贡献(如构象变化和/或磷酸二酯键形成),这可能参与了对8-氧代-dGTP的选择。与模板8-氧代-G加合物处正常dNTP掺入相比,8-氧代-dGTP在结合(Kdapp)、掺入和延伸动力学方面的差异表明,聚合酶保真度并不完全取决于沃森-克里克碱基对的整体几何形状,而是反映了酶活性位点的不对称性。

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