Literature DB >> 25787696

Enhancing Phosphate Diester Cleavage by a Zinc Complex through Controlling Nucleophile Coordination.

Emmanuel Y Tirel1, Nicholas H Williams.   

Abstract

Metal-ion complexes are the most effective artificial catalysts capable of cleaving phosphate diesters under mild aqueous conditions. A central strategy for making these complexes highly reactive has been to use ligand-based alcohols that are coordinated to the ion, providing an ionised nucleophile under neutral conditions but at the expense of deactivating it. We have created a highly reactive Zn complex that is 350-fold more reactive than an alcohol analogue by preventing the nucleophile binding to the metal ion. This strategy successfully delivers the benefits of efficient nucleophile delivery without strongly deactivating the metal ion Lewis acidity nor the oxyanion nucleophilicity. Varying the leaving group reveals that the transition state of the reaction is much further advanced than the reaction with hydroxide.
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  DNA cleavage; bioinorganic chemistry; enzyme models; kinetics; zinc

Year:  2015        PMID: 25787696     DOI: 10.1002/chem.201500619

Source DB:  PubMed          Journal:  Chemistry        ISSN: 0947-6539            Impact factor:   5.236


  5 in total

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2.  Unraveling mechanisms of the uncoordinated nucleophiles: theoretical elucidations of the cleavage of bis(p-nitrophenyl) phosphate mediated by zinc-complexes with apical nucleophiles.

Authors:  Xiaoyu Zhou; Xue-Peng Zhang; Weikang Li; Jingxing Jiang; Huiying Xu; Zhuofeng Ke; David Lee Phillips; Cunyuan Zhao
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3.  Cleavage of an RNA Model Compound by an Arylmercury Complex.

Authors:  Lange Yakubu Saleh; Mikko Ora; Tuomas Lönnberg
Journal:  Chembiochem       Date:  2021-02-24       Impact factor: 3.164

Review 4.  Phosphodiester models for cleavage of nucleic acids.

Authors:  Satu Mikkola; Tuomas Lönnberg; Harri Lönnberg
Journal:  Beilstein J Org Chem       Date:  2018-04-10       Impact factor: 2.883

5.  The 3rd degree of biomimetism: associating the cavity effect, ZnII coordination and internal base assistance for guest binding and activation.

Authors:  A Parrot; S Collin; G Bruylants; O Reinaud
Journal:  Chem Sci       Date:  2018-05-29       Impact factor: 9.825

  5 in total

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