Joyce Catherine M, Benkovic Stephen J
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8114, USA.
Biochemistry. 2004 Nov 16;43(45):14317-24. doi: 10.1021/bi048422z.
On careful examination of existing kinetic data for correct and incorrect dNTP incorporations by a variety of DNA polymerases, it is apparent that these enzymes resist a unified description. Instead, the picture that emerges is a rather complex one: for most polymerases, there is evidence for a noncovalent step preceding phosphoryl transfer, but there are less reliable data for determining whether the noncovalent step or phosphoryl transfer is rate-limiting during misincorporation. Although the structural conservation in the polymerase superfamily is probably reflected in a common set of intermediates along the reaction pathway, the energetics of these species vary even when closely related polymerases are compared. Consequently, some polymerases apparently show more discrimination between correctly paired and mispaired dNTPs in the binding step, and polymerases may differ in terms of which step of the reaction is rate-limiting in correct and incorrect insertion reactions. Because of the higher energy barrier in the misincorporation reaction, at least some of the intermediates both before and after the rate-limiting step in the misincorporation pathway will have higher energies than the corresponding intermediates in correct incorporation; consequently, these steps can serve as kinetic checkpoints.
在仔细研究各种DNA聚合酶对正确和错误dNTP掺入的现有动力学数据时,很明显这些酶难以用统一的描述。相反,呈现出的情况相当复杂:对于大多数聚合酶来说,有证据表明在磷酸转移之前存在一个非共价步骤,但关于在错误掺入过程中该非共价步骤还是磷酸转移是限速步骤的数据不太可靠。尽管聚合酶超家族中的结构保守性可能反映在反应途径中一组共同的中间体上,但即使比较密切相关的聚合酶,这些中间体的能量学也有所不同。因此,一些聚合酶在结合步骤中对正确配对和错配的dNTP之间的区分似乎更明显,并且聚合酶在正确和错误插入反应中哪个反应步骤是限速步骤方面可能存在差异。由于错误掺入反应中的能量屏障较高,错误掺入途径中限速步骤之前和之后的至少一些中间体将比正确掺入中的相应中间体具有更高的能量;因此,这些步骤可以作为动力学检查点。