Krug M, Uhlenbeck O C
Biochemistry. 1982 Apr 13;21(8):1858-64. doi: 10.1021/bi00537a024.
Unexpected products detected in oligoribonucleotide synthesis reactions catalyzed by T4 RNA ligase are shown to be a result of a partial reversal of the enzyme reaction. A transfer assay for the reversal of the third step in the RNA ligase reaction mechanism and an exchange assay for the reversal of both the second and third steps are described. Reversal is confirmed by the formation of the expected covalent intermediates, adenylylated donor and adenylyl ligase, from a reaction containing 5'-AMP, unadenylylated ligase, and the tetranucleotide (Ap)3Cp. In the reverse reaction, RNA ligase shows a strong preference for hydrolysis of the 3'-terminal phosphodiester bonds of oligoribonucleotides which terminate in a 3'-phosphate. Several strategies are discussed to minimize the effects of reversal in the enzymatic synthesis of oligoribonucleotides.
在T4 RNA连接酶催化的寡核糖核苷酸合成反应中检测到的意外产物被证明是该酶反应部分逆转的结果。本文描述了用于RNA连接酶反应机制第三步逆转的转移测定法以及用于第二步和第三步逆转的交换测定法。通过从含有5'-AMP、未腺苷酸化的连接酶和四核苷酸(Ap)3Cp的反应中形成预期的共价中间体——腺苷酸化供体和腺苷酰连接酶,证实了反应的逆转。在逆转反应中,RNA连接酶对以3'-磷酸结尾的寡核糖核苷酸的3'-末端磷酸二酯键的水解表现出强烈的偏好。文中讨论了几种策略,以尽量减少逆转对寡核糖核苷酸酶促合成的影响。