Balbo Paul B, Meinke Gretchen, Bohm Andrew
Tufts University School of Medicine and Department of Biochemistry, Sackler School of Graduate Biomedical Sciences, 136 Harrison Avenue, Boston, Massachusetts 02111, USA.
Biochemistry. 2005 May 31;44(21):7777-86. doi: 10.1021/bi050089r.
Polyadenylate polymerase (PAP) catalyzes the synthesis of 3'-polyadenylate tails onto mRNA. A comprehensive steady-state kinetic analysis of PAP was conducted which included initial velocity studies of the forward and reverse reactions, inhibition studies, and the use of alternative substrates. The reaction (A(n) + ATP <--> A(n+1) + PP(i)) is adequately described by a rapid equilibrium random mechanism. Several thermodynamic parameters for the reaction were determined or calculated, including the overall equilibrium constant (K(eq) = 84) and the apparent equilibrium constant of the internal step (K(int) = 4) which involves the rate-determining interconversion of central complexes. A large (100-fold) difference in Vmax accounts for nucleotide specificity (ATP vs CTP), despite an only 3-fold difference in Km. Comparison of the sulfur elemental effect on Vmax for ATP and CTP suggests that the chemical step is rate-determining for both reactions. Comparison of the sulfur elemental effect on Vmax/Km revealed differences in the mechanism by which either nucleotide is incorporated. Consistent with these data, an induced fit mechanism for nucleotide specificity is proposed whereby PAP couples a uniform binding mechanism, which selects for ATP, with a ground-state destabilization mechanism, which serves to accelerate the velocity for the correct substrate.
聚腺苷酸聚合酶(PAP)催化在mRNA上合成3'-聚腺苷酸尾巴。对PAP进行了全面的稳态动力学分析,包括正向和反向反应的初速度研究、抑制研究以及使用替代底物。该反应(A(n) + ATP <--> A(n+1) + PP(i))可用快速平衡随机机制充分描述。确定或计算了该反应的几个热力学参数,包括总平衡常数(K(eq) = 84)和内部步骤的表观平衡常数(K(int) = 4),内部步骤涉及中心复合物的限速相互转化。尽管Km仅相差3倍,但Vmax存在很大(100倍)差异,这解释了核苷酸特异性(ATP与CTP)。硫元素对ATP和CTP的Vmax的影响比较表明,化学步骤对两个反应都是限速步骤。硫元素对Vmax/Km的影响比较揭示了两种核苷酸掺入机制的差异。与这些数据一致,提出了一种核苷酸特异性的诱导契合机制,据此PAP将选择ATP的统一结合机制与用于加速正确底物反应速度的基态去稳定化机制相结合。