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大鼠聚合酶β与双链DNA相互作用的动力学机制。协同配体与二维一维晶格结合的荧光停流分析。

Kinetic mechanism of rat polymerase beta-dsDNA interactions. Fluorescence stopped-flow analysis of the cooperative ligand binding to a two-site one-dimensional lattice.

作者信息

Galletto Roberto, Jezewska Maria J, Bujalowski Wlodzimierz

机构信息

Department of Human Biological Chemistry and Genetics, Sealy Center for Structural Biology, The University of Texas Medical Branch at Galveston, 77555-1053, USA.

出版信息

Biochemistry. 2005 Feb 1;44(4):1251-67. doi: 10.1021/bi0487037.

Abstract

Kinetics of cooperative binding of rat polymerase beta to a double-stranded DNA has been studied using the fluorescence stopped-flow techniques. The data have been analyzed by an approach developed to examine complete kinetics of cooperative large ligand binding to a one-dimensional lattice. The method is based on using the smallest possible system that preserves key ingredients of cooperative binding; i.e., at saturation, the lattice can accept only two ligand molecules. It allows the identification of collective amplitudes as well as amplitudes describing particular normal modes of the reaction. The mechanism of the intrinsic binding of pol beta to the dsDNA is different from the analogous mechanism for the ssDNA. The difference originates from different enzyme orientations in the corresponding complexes. Intrinsic binding to the dsDNA includes only two sequential steps: a very fast bimolecular association followed by an energetically favorable conformational transition of the complex. The transition following the bimolecular step does not facilitate the engagement of the enzyme in cooperative interactions. Its role seems to be reinforcing the affinity of the bimolecular step. Salt and magnesium cations affect both the bimolecular step and the conformational transition. As a result, the bimolecular step is less sensitive to the increased salt concentration, allowing the enzyme to preserve its initial dsDNA affinity. The changing character of cooperative interactions between bound enzyme molecules as a function of NaCl concentration and MgCl(2) concentration does not affect the binding mechanism. The engagement in cooperative interactions is approximately 3-4 orders of magnitude slower than the conformational transition of the DNA-bound polymerase. The importance of the obtained results for the pol beta activities is discussed.

摘要

利用荧光停流技术研究了大鼠β聚合酶与双链DNA协同结合的动力学。数据采用一种开发用于研究大配体与一维晶格协同结合完整动力学的方法进行分析。该方法基于使用能保留协同结合关键要素的最小可能系统;即,在饱和时,晶格只能接受两个配体分子。它允许识别集体振幅以及描述反应特定正常模式的振幅。β聚合酶与双链DNA的内在结合机制不同于与单链DNA的类似机制。这种差异源于相应复合物中酶的不同取向。与双链DNA的内在结合仅包括两个连续步骤:非常快速的双分子缔合,随后是复合物在能量上有利的构象转变。双分子步骤之后的转变并不促进酶参与协同相互作用。其作用似乎是增强双分子步骤的亲和力。盐和镁阳离子影响双分子步骤和构象转变。结果,双分子步骤对盐浓度增加的敏感性较低,使酶能够保持其初始双链DNA亲和力。结合的酶分子之间协同相互作用随NaCl浓度和MgCl₂浓度变化的特征不影响结合机制。参与协同相互作用比与DNA结合的聚合酶的构象转变慢约3 - 4个数量级。讨论了所得结果对β聚合酶活性的重要性。

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