...
首页> 外文期刊>Canadian Journal of Chemistry >Alkali metal ion catalysis in nucleophilic displacement by ethoxide ion on p-nitrophenyl phenylphosphonate: Evidence for multiple metal ion catalysis~1
【24h】

Alkali metal ion catalysis in nucleophilic displacement by ethoxide ion on p-nitrophenyl phenylphosphonate: Evidence for multiple metal ion catalysis~1

机译:对硝基苯基苯基膦酸酯上乙醇离子对亲核取代的碱金属离子催化作用:多金属离子催化作用的证据〜1

获取原文
获取原文并翻译 | 示例
           

摘要

In continuation of our studies of alkali metal ion catalysis and inhibition at carbon, phosphorus, and sulfur centers, the role of alkali metal ions in nucleophilic displacement reactions of p-nitrophenyl phenylphosphonate (PNPP) has been examined. All alkali metal ions studied aceted as catalysts. Alkali metal ions added as inert salts increased the rate while decreased rate resulted on M~+ complexation with 18-crown-6 ether. Kinetic analysis indicated the interaction of possibly three potassium ions, four sodium, ions, and five lithium ions in the transition state of reactions of ethoxide with PNPP. Pre-association of the anionic substrate with two metals ions in the ground state gave the best fit to the experimental data of the sodium system. Thus, the study gives evidence of the role of sveral metal ions in nucleophilic displacement reactions of ethoxide with anionic PNPP, both in the ground state and in the transition state. Molecular modeling of the anionic transition state implies that the size of the monovalent cation and the steric requirement of the pentacoordinate transition state are the primary limitations on the number of cations that can be brough to bear to stabilize the transition state and catalyze nucleophilic substitution at phosphorus. The bearing of the present work on metal ion catalysis in enzyme systems is discussed, in particular enzymes that catalyze phosphoryl transfer, which often employ multiple metal ions. Our results, both kinetic and modeling, reveal the importance of electrostatic stabilization of the transition state for phosphoryl transfer that may be effected by multiple cations, either monovalent metal ions or amino acid residues. The more such cations can be brought into contact with the anionic transition state, the greater the catalysis observed.
机译:在我们对碱金属离子催化和抑制碳,磷和硫中心的研究的继续研究中,对碱金属离子在对硝基苯基苯基膦酸酯(PNPP)的亲核取代反应中的作用进行了研究。研究的所有碱金属离子均以乙酸为催化剂。碱金属离子作为惰性盐的加入增加了速率,而降低的速率则导致M +与18-冠-6醚络合。动力学分析表明,在乙醇与PNPP反应的过渡态下,可能存在三个钾离子,四个钠离子,五个锂离子的相互作用。阴离子底物与两种处于基态的金属离子的预缔合最适合钠系统的实验数据。因此,该研究提供了在基态和过渡态中,金属离子在乙醇与阴离子PNPP的亲核取代反应中的作用的证据。阴离子过渡态的分子模型表明,单价阳离子的大小和五配位过渡态的空间要求是对阳离子数量的主要限制,这些阳离子可被用来稳定过渡态并催化磷上的亲核取代。讨论了当前工作对酶系统中金属离子催化的影响,特别是催化磷酰基转移的酶,其经常采用多种金属离子。我们的结果,无论是动力学的还是建模的,都表明了静电稳定过渡态对于磷酰基转移的重要性,这可能受多种阳离子(单价金属离子或氨基酸残基)的影响。这种阳离子与阴离子过渡态接触的越多,观察到的催化作用就越大。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号