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益生元硫代磷酸化学中的机制可能性。

Mechanistic possibilities in prebiotic thiophosphate chemistry.

作者信息

Kapovits I, Nagyvary J

出版信息

J Mol Evol. 1978 May 12;11(1):25-33. doi: 10.1007/BF01768022.

Abstract

Two types of reactivities of thiophosphates have been demonstrated: one being nucleophilic displacement by the P-S moiety of nucleoside phosphorothioates and the other, phosphorylation via P-S cleavage as the driving force. We have designed a system where both displacement on carbon and P-S cleavage are possible. Adenosine derivatives have been synthesized with 5'-deoxy-5'-chloro and 5'-O-tosyl substitutions as leaving groups utilizing the 3'-O-phosphorothioate as the biphilic center. The main products of cyclization were 5'-O-tosyl and 5'-chloroadenosine 2':3'-cyclic phosphate. Formation of 3':5'-S-phosphorothioate was slow even using an excellent leaving group. This is possibly due to hydrogen bonding between the 2'-OH and the neighboring P-O.--KOH hydrolysis of the cyclic phosphorothioate yielded 2'(3') phosphorothioates in a 1:1 ratio. The 2' and 3' isomers were separated and used to study the relative rates of cyclization. The cyclization via P-S cleavage of 2'(3')-O-phosphorothioates showed that the 2' isomer was more reactive. This is the first report of superior reactivity of the 3'-OH of a ribonucleoside.

摘要

硫代磷酸酯的两种反应活性已得到证实

一种是核苷硫代磷酸酯的P-S部分进行亲核取代,另一种是以P-S裂解为驱动力进行磷酸化。我们设计了一个系统,在该系统中碳上的取代和P-S裂解都是可能的。利用3'-O-硫代磷酸酯作为双亲性中心,合成了具有5'-脱氧-5'-氯和5'-O-甲苯磺酰基取代作为离去基团的腺苷衍生物。环化的主要产物是5'-O-甲苯磺酰基和5'-氯腺苷2':3'-环磷酸酯。即使使用优良的离去基团,3':5'-硫代磷酸酯的形成也很缓慢。这可能是由于2'-OH与相邻的P-O之间形成了氢键。环状硫代磷酸酯的KOH水解以1:1的比例生成2'(3')硫代磷酸酯。分离出2'和3'异构体并用于研究环化的相对速率。通过2'(3')-O-硫代磷酸酯的P-S裂解进行的环化表明,2'异构体更具反应性。这是核糖核苷3'-OH具有更高反应活性的首次报道。

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