Literature DB >> 18345685

Synthesis and testing of 2-deoxy-2,2-dihaloglycosides as mechanism-based inhibitors of alpha-glycosidases.

Ran Zhang1, John D McCarter, Curtis Braun, Wai Yeung, Gary D Brayer, Stephen G Withers.   

Abstract

The synthesis of a series of 2-deoxy-2,2-dihaloglycosyl halides as potential alpha-glycosidase inactivators has been achieved via the halogenation of protected 2-fluoroglycal precursors. Direct chlorination of per-O-acetylated 2-fluoro-d-glucal and 2-fluoromaltal followed by basic deprotection yielded the corresponding 2-chloro-2-deoxy-2-fluoroglycosyl chlorides. Reaction of the per-O-acetylated 2-fluoroglycals with acetyl hypofluorite or Selectfluor yielded the 2-deoxy-2,2-difluoroglycosyl derivatives, which were converted to their alpha-chlorides using thionyl chloride and deprotected under basic conditions. Trinitrophenyl glycosides of the 2-deoxy-2,2-difluoro mono- and disaccharides were synthesized by arylation of the hemiacetals with picryl fluoride, then deprotected with HCl in methanol. All three monosaccharide derivatives caused active site-directed, time-dependent inactivation of yeast alpha-glucosidase via the trapping of covalent glycosyl-enzyme intermediates, and kinetic parameters for inactivation by each compound were determined. Surprisingly neither of the 2-deoxy-2,2-dihalomaltosyl chlorides caused time-dependent inactivation of human pancreatic alpha-amylase, despite the fact that the trinitrophenyl 2-deoxy-2,2-difluoromaltoside functioned in that mode. The trinitrophenyl glycosides appear to be approximately 1000-fold more reactive than the corresponding chlorides in the enzyme active sites.

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Year:  2008        PMID: 18345685     DOI: 10.1021/jo702565q

Source DB:  PubMed          Journal:  J Org Chem        ISSN: 0022-3263            Impact factor:   4.354


  8 in total

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Authors:  Sandeep Thanna; Jared J Lindenberger; Vishwanath V Gaitonde; Donald R Ronning; Steven J Sucheck
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Journal:  Nutr Metab (Lond)       Date:  2010-08-27       Impact factor: 4.169

5.  Copper-Catalyzed Cyclopropanol Ring Opening Csp(3)-Csp(3) Cross-Couplings with (Fluoro)Alkyl Halides.

Authors:  Zhishi Ye; Kristen E Gettys; Xingyu Shen; Mingji Dai
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6.  Development of an active site titration reagent for α-amylases.

Authors:  Ryan P Sweeney; Phillip M Danby; Andreas Geissner; Ryan Karimi; Jesper Brask; Stephen G Withers
Journal:  Chem Sci       Date:  2020-11-03       Impact factor: 9.825

7.  Insights into the mechanism of bovine CD38/NAD+glycohydrolase from the X-ray structures of its Michaelis complex and covalently-trapped intermediates.

Authors:  Pascal F Egea; Hélène Muller-Steffner; Isabelle Kuhn; Céline Cakir-Kiefer; Norman J Oppenheimer; Robert M Stroud; Esther Kellenberger; Francis Schuber
Journal:  PLoS One       Date:  2012-04-18       Impact factor: 3.240

8.  Activity-Based Protein Profiling of Retaining α-Amylases in Complex Biological Samples.

Authors:  Yurong Chen; Zachary Armstrong; Marta Artola; Bogdan I Florea; Chi-Lin Kuo; Casper de Boer; Mikkel S Rasmussen; Maher Abou Hachem; Gijsbert A van der Marel; Jeroen D C Codée; Johannes M F G Aerts; Gideon J Davies; Herman S Overkleeft
Journal:  J Am Chem Soc       Date:  2021-01-26       Impact factor: 15.419

  8 in total

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