Liu D, Prasad R, Wilson S H, DeRose E F, Mullen G P
Department of Biochemistry, University of Connecticut Health Center, Farmington.
Biochemistry. 1996 May 21;35(20):6188-200. doi: 10.1021/bi952656o.
DNA polymerase beta (beta-Pol) consists of an N-terminal ssDNA binding domain with deoxyribose phosphodiesterase activity and a C-terminal domain with nucleotidyltransferase activity. The solution structure of the cloned N-terminal domain of beta-Pol has been determined by multidimensional heteronuclear NMR using experimental restraints that included 1030 distances based on analysis of NOE connectivities, 68 phi, chi 1, and chi 2 torsion angles based on analysis of couplings, and 22 hydrogen bonds. Hydrogen bonds were assessed only within helices by the absence of saturation transfer from water at pH 6.7, by NOEs and JNH alpha couplings indicative of well-structured helices, and by 13C alpha chemical shifts characteristic of helices. The root mean square deviation for heavy backbone atoms within the helices was 0.64 A in 55 structures. The solution structure of the N-terminal domain is formed from four helices packed as two antiparallel pairs crossing at 50 degrees in a V-like shape. The domain binds p(dT)8, a template analogue, as a 1:1 complex in 100 mM NaCl (KD = 10 microM). Analysis of the binding equilibria at increasing NaCl concentrations indicated that ionic contacts contribute to the complex. The binding interaction was mapped to one face of the domain by characterizing backbone 1H and 15N chemical shift changes. Assigned intermolecular NOEs from 2D NOESY support the assessment of the binding interface. The structure that forms the interaction surface includes an antiparallel helix-3-turn-helix-4 motif and residues adjacent to an omega-type loop connecting helix-1 and helix-2. Sites appropriate for nucleotide contact on the structure are described. The mapped interaction interface for a ssDNA template is the first described for a DNA polymerase.
DNA聚合酶β(β - Pol)由一个具有脱氧核糖磷酸二酯酶活性的N端单链DNA结合结构域和一个具有核苷酸转移酶活性的C端结构域组成。β - Pol克隆N端结构域的溶液结构已通过多维异核核磁共振确定,使用的实验约束包括基于NOE连接性分析得到的1030个距离、基于耦合分析得到的68个φ、χ1和χ2扭转角,以及22个氢键。通过在pH 6.7时水的饱和转移缺失、指示结构良好螺旋的NOE和JNHα耦合以及螺旋特征性的13Cα化学位移,仅在螺旋内评估氢键。在55个结构中,螺旋内重原子骨架的均方根偏差为0.64 Å。N端结构域的溶液结构由四个螺旋组成,以两个反平行对的形式堆积,在50度处交叉形成V形。该结构域在100 mM NaCl中以1:1复合物的形式结合模板类似物p(dT)8(KD = 10 μM)。对增加NaCl浓度时结合平衡的分析表明,离子接触有助于形成复合物。通过表征骨架1H和15N化学位移变化,将结合相互作用定位到结构域的一个面上。来自二维NOESY的已分配分子间NOE支持对结合界面的评估。形成相互作用表面的结构包括一个反平行的螺旋 - 3 - 转 - 螺旋 - 4基序以及与连接螺旋 - 1和螺旋 - 2的ω型环相邻的残基。描述了结构上适合核苷酸接触的位点。单链DNA模板的映射相互作用界面是首次针对DNA聚合酶描述的。