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硫取代亲核试剂及桥连氧原子对羟烷基磷酸酯反应的影响。

The effects of sulfur substitution for the nucleophile and bridging oxygen atoms in reactions of hydroxyalkyl phosphate esters.

作者信息

Iyer Subashree, Hengge Alvan C

机构信息

Utah State University, Department of Chemistry and Biochemistry, Logan, Utah 84322-0300, USA.

出版信息

J Org Chem. 2008 Jul 4;73(13):4819-29. doi: 10.1021/jo8002198. Epub 2008 Jun 6.

Abstract

The effects of sulfur substitution on the reactions of hydroxyalkyl phosphate esters are examined. These compounds are models for the intramolecular phosphoryl transfer reaction involved in the cleavage of the internucleotide bond in RNA. The models studied here lack the ribose ring and their conformational flexibility results in greater stability and the availability of different reaction pathways. Sulfur in the nucleophilic position shows no nucleophilic reaction at phosphorus, instead rapidly attacking at the beta carbon atom, forming thiirane with departure of a phosphomonoester. Sulfur substitution at either of the two bridging positions leads to cleavage of the diester via formation of a cyclic intermediate, but with significant rate acceleration when compared to the oxygen analogues. The bridge-substituted models react substantially slower than the analogous ribose compounds with sulfur substitution at comparable positions. Kinetic isotope effects reveal significant differences in the transition state depending on which bridging position sulfur occupies. When sulfur is in the scissile bridging position, a highly associative transition state is indicated, with a largely formed bond to the nucleophile and the scissile P-S bond is little changed. When sulfur occupies the other bridging position, the isotope effects imply a very early transition state in a concerted reaction.

摘要

研究了硫取代对羟烷基磷酸酯反应的影响。这些化合物是RNA中核苷酸间键断裂所涉及的分子内磷酰基转移反应的模型。此处研究的模型缺少核糖环,其构象灵活性导致更高的稳定性以及不同反应途径的可用性。处于亲核位置的硫在磷原子上不显示亲核反应,而是迅速进攻β碳原子,形成硫杂环丙烷并离去一分子磷酸单酯。在两个桥连位置中的任何一个位置进行硫取代都会通过形成环状中间体导致二酯键断裂,但与氧类似物相比,反应速率有显著加快。桥连位置取代的模型与在类似位置进行硫取代的核糖类似物相比,反应速度要慢得多。动力学同位素效应表明,根据硫占据的桥连位置不同,过渡态存在显著差异。当硫处于可裂解的桥连位置时,表明存在高度缔合的过渡态,与亲核试剂形成的键基本形成,而可裂解的P-S键变化不大。当硫占据另一个桥连位置时,同位素效应意味着协同反应中存在非常早的过渡态。

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