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KINETIC AND MECHANISTIC ANALYSIS OF NONENZYMATIC, TEMPLATE-DIRECTED OLIGORIBONUCLEOTIDE LIGATION

机译:异型模板样寡核苷酸连接的运动学和机理分析

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The role of divalent cations in the mechanism of pyrophosphate-activated, template-directed oligoribonucleotide ligation has been investigated. The dependence of the reaction rate on Mg2+ concentration suggests a kinetic scheme in which a Mg2+ ion must bind before ligation can proceed. Mn2+, Ca2+, Sr2+, and Ba2+ can also catalyze the reaction. Although Pb2+ and Zn2+ do not catalyze the reaction in the absence of other divalent ions, they significantly modulate the reaction rate when added in the presence of Mg2+, With Pb2+ stimulating the reaction (up to 65-fold) and Zn2+ inhibiting the reaction. The logarithm of the ligation rate increases linearly, with slope of 0.95, as a function of pH, indicating that the reaction involves a single critical deprotonation step. The ligation rates observed with the different divalent metal ion catalysts (Mn2+ > Mg2+ > Ca2+ > Sr2+ = Ba2+) vary inversely with the pK(a) values of their bound water molecules. The pH profile and these relative ligation rates suggest a mechanism in which a metal-bound hydroxide ion located near the ligation junction promotes catalysis, most likely by deprotonation of the hydroxyl nucleophile. The effects of changing either the leaving group or the attacking hydroxyl, together with the large Delta S-double dagger value for oligonucleotide ligation (about -20 eu), are consistent with an associative transition state.
机译:研究了二价阳离子在焦磷酸激活的,模板指导的寡核糖核苷酸连接中的作用。反应速率对Mg2 +浓度的依赖性提示了一种动力学方案,其中Mg2 +离子必须结合才能进行连接。 Mn2 +,Ca2 +,Sr2 +和Ba2 +也可以催化反应。尽管在没有其他二价离子的情况下Pb2 +和Zn2 +不会催化反应,但是当存在Mg2 +时它们会显着调节反应速率,Pb2 +会刺激反应(最多65倍),而Zn2 +会抑制反应。连接速率的对数与pH呈线性关系,斜率为0.95,表明反应涉及一个关键的去质子化步骤。用不同的二价金属离子催化剂(Mn2 +> Mg2 +> Ca2 +> Sr2 + = Ba2 +)观察到的连接速率与它们结合的水分子的pK(a)值成反比。 pH分布图和这些相对的连接速率表明了一种机制,其中位于连接结附近的金属结合的氢氧根离子促进了催化作用,最有可能是通过羟基亲核试剂的去质子作用。改变离去基团或攻击羟基的作用,以及用于寡核苷酸连接的大ΔS-双匕首值(约-20eu),都与缔合过渡态一致。

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