Lönnberg Tuomas, Ora Mikko, Virtanen Sami, Lönnberg Harri
Department of Chemistry, University of Turku, 20014 Turku, Finland.
Chemistry. 2007;13(16):4614-27. doi: 10.1002/chem.200601835.
To provide a solid chemical basis for the mechanistic interpretations of the thio effects observed for large ribozymes, the cleavage of triribonucleoside 3',3',5'-phosphoromonothioate triesters and diribonucleoside 3',3'-phosphorodithioate diesters has been studied. To elucidate the role of the neighboring hydroxy group of the departing 3'-linked nucleoside, hydrolysis of 2',3'-O-methyleneadenosin-5'-yl bis[5'-O-methyluridin-3'-yl] phosphoromonothioate (1 a) has been compared to the hydrolysis of 2',3'-O-methyleneadenosin-5'-yl 5'-O-methyluridin-3'-yl 2',5'-di-O-methyluridin-3'-yl phosphoromonothioate (1 b) and the hydrolysis of bis[uridin-3'-yl] phosphorodithioate (2 a) to the hydrolysis of uridin-3'-yl 2',5'-di-O-methyluridin-3'-yl phosphorodithioate (2 b). The reactions have been followed by RP HPLC over a wide pH range. The phosphoromonothioate triesters 1 a,b undergo two competing reactions: the starting material is cleaved to a mixture of 3',3'- and 3',5'-diesters, and isomerized to 2',3',5'- and 2',2',5'-triesters. With phosphorodithioate diesters 2 a,b, hydroxide-ion-catalyzed cleavage of the P--O3' bond is the only reaction detected at pH >6, but under more acidic conditions desulfurization starts to compete with the cleavage. The 3',3'-diesters do not undergo isomerization. The hydroxide-ion-catalyzed cleavage reaction with both 1 a and 2 a is 27 times as fast as that compared with their 2'-O-methylated counterparts 1 b and 2 b. The hydroxide-ion-catalyzed isomerization of the 3',3',5'-triester to 2',3',5'- and 2',2',5'-triesters with 1 a is 11 times as fast as that compared with 1 b. These accelerations have been accounted for by stabilization of the anionic phosphorane intermediate by hydrogen bonding with the 2'-hydroxy function. Thio substitution of the nonbridging oxygens has an almost negligible influence on the cleavage of 3',3'-diesters 2 a,b, but the hydrolysis of phosphoromonothioate triesters 1 a,b exhibits a sizable thio effect, k(PO)/k(PS)=19. The effects of metal ions on the rate of the cleavage of diesters and triesters have been studied and discussed in terms of the suggested hydrogen-bond stabilization of the thiophosphorane intermediates derived from 1 a and 2 a.
为了给大型核酶中观察到的硫代效应的机理解释提供坚实的化学基础,我们研究了三核糖核苷3',3',5'-磷酸单硫酯三酯和二核糖核苷3',3'-磷酸二硫酯二酯的裂解反应。为了阐明离去的3'-连接核苷的相邻羟基的作用,我们将2',3'-O-亚甲基腺苷-5'-基双[5'-O-甲基尿苷-3'-基]磷酸单硫酯(1a)的水解与2',3'-O-亚甲基腺苷-5'-基5'-O-甲基尿苷-3'-基2',5'-二-O-甲基尿苷-3'-基磷酸单硫酯(1b)的水解以及双[尿苷-3'-基]磷酸二硫酯(2a)的水解与尿苷-3'-基2',5'-二-O-甲基尿苷-3'-基磷酸二硫酯(2b)的水解进行了比较。这些反应在很宽的pH范围内通过反相高效液相色谱进行跟踪。磷酸单硫酯三酯1a、b经历两个相互竞争的反应:起始原料裂解为3',3'-和3',5'-二酯的混合物,并异构化为2',3',5'-和2',2',5'-三酯。对于磷酸二硫酯二酯2a、b,在pH>6时,仅检测到氢氧根离子催化的P–O3'键裂解反应,但在酸性更强的条件下,脱硫反应开始与裂解反应竞争。3',3'-二酯不会发生异构化。与1b和2b相比,1a和2a的氢氧根离子催化的裂解反应速度快27倍。1a的3',3',5'-三酯异构化为2',3',5'-和2',2',5'-三酯的氢氧根离子催化异构化反应速度比1b快11倍。这些加速作用是由于与2'-羟基官能团形成氢键使阴离子磷叶立德中间体稳定。非桥连氧的硫代取代对3',3'-二酯2a、b的裂解影响几乎可以忽略不计,但磷酸单硫酯三酯1a、b的水解表现出相当大的硫代效应,k(PO)/k(PS)=19。我们根据从1a和2a衍生的硫代磷叶立德中间体的氢键稳定作用,研究并讨论了金属离子对二酯和三酯裂解速率的影响。