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Highly stereoselective and enantiodivergent synthesis of cyclopropylphosphonates with engineered carbene transferases

Organophosphonate compounds have represented a rich source of biologically active compounds, including enzyme inhibitors, antibiotics, and antimalarial agents. Here, we report the development of a highly stereoselective strategy for olefin cyclopropanation in the presence of a phosphonyl diazo reage...

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Autores principales: Ren, Xinkun, Chandgude, Ajay L., Carminati, Daniela M., Shen, Zhuofan, Khare, Sagar D., Fasan, Rudi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9337741/
https://www.ncbi.nlm.nih.gov/pubmed/35974764
http://dx.doi.org/10.1039/d2sc01965e
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author Ren, Xinkun
Chandgude, Ajay L.
Carminati, Daniela M.
Shen, Zhuofan
Khare, Sagar D.
Fasan, Rudi
author_facet Ren, Xinkun
Chandgude, Ajay L.
Carminati, Daniela M.
Shen, Zhuofan
Khare, Sagar D.
Fasan, Rudi
author_sort Ren, Xinkun
collection PubMed
description Organophosphonate compounds have represented a rich source of biologically active compounds, including enzyme inhibitors, antibiotics, and antimalarial agents. Here, we report the development of a highly stereoselective strategy for olefin cyclopropanation in the presence of a phosphonyl diazo reagent as carbene precursor. In combination with a ‘substrate walking’ protein engineering strategy, two sets of efficient and enantiodivergent myoglobin-based biocatalysts were developed for the synthesis of both (1R,2S) and (1S,2R) enantiomeric forms of the desired cyclopropylphosphonate ester products. This methodology enables the efficient transformation of a broad range of vinylarene substrates at a preparative scale (i.e. gram scale) with up to 99% de and ee. Mechanistic studies provide insights into factors that contribute to make this reaction inherently more challenging than hemoprotein-catalyzed olefin cyclopropanation with ethyl diazoacetate investigated previously. This work expands the range of synthetically useful, enzyme-catalyzed transformations and paves the way to the development of metalloprotein catalysts for abiological carbene transfer reactions involving non-canonical carbene donor reagents.
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spelling pubmed-93377412022-08-15 Highly stereoselective and enantiodivergent synthesis of cyclopropylphosphonates with engineered carbene transferases Ren, Xinkun Chandgude, Ajay L. Carminati, Daniela M. Shen, Zhuofan Khare, Sagar D. Fasan, Rudi Chem Sci Chemistry Organophosphonate compounds have represented a rich source of biologically active compounds, including enzyme inhibitors, antibiotics, and antimalarial agents. Here, we report the development of a highly stereoselective strategy for olefin cyclopropanation in the presence of a phosphonyl diazo reagent as carbene precursor. In combination with a ‘substrate walking’ protein engineering strategy, two sets of efficient and enantiodivergent myoglobin-based biocatalysts were developed for the synthesis of both (1R,2S) and (1S,2R) enantiomeric forms of the desired cyclopropylphosphonate ester products. This methodology enables the efficient transformation of a broad range of vinylarene substrates at a preparative scale (i.e. gram scale) with up to 99% de and ee. Mechanistic studies provide insights into factors that contribute to make this reaction inherently more challenging than hemoprotein-catalyzed olefin cyclopropanation with ethyl diazoacetate investigated previously. This work expands the range of synthetically useful, enzyme-catalyzed transformations and paves the way to the development of metalloprotein catalysts for abiological carbene transfer reactions involving non-canonical carbene donor reagents. The Royal Society of Chemistry 2022-06-06 /pmc/articles/PMC9337741/ /pubmed/35974764 http://dx.doi.org/10.1039/d2sc01965e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ren, Xinkun
Chandgude, Ajay L.
Carminati, Daniela M.
Shen, Zhuofan
Khare, Sagar D.
Fasan, Rudi
Highly stereoselective and enantiodivergent synthesis of cyclopropylphosphonates with engineered carbene transferases
title Highly stereoselective and enantiodivergent synthesis of cyclopropylphosphonates with engineered carbene transferases
title_full Highly stereoselective and enantiodivergent synthesis of cyclopropylphosphonates with engineered carbene transferases
title_fullStr Highly stereoselective and enantiodivergent synthesis of cyclopropylphosphonates with engineered carbene transferases
title_full_unstemmed Highly stereoselective and enantiodivergent synthesis of cyclopropylphosphonates with engineered carbene transferases
title_short Highly stereoselective and enantiodivergent synthesis of cyclopropylphosphonates with engineered carbene transferases
title_sort highly stereoselective and enantiodivergent synthesis of cyclopropylphosphonates with engineered carbene transferases
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9337741/
https://www.ncbi.nlm.nih.gov/pubmed/35974764
http://dx.doi.org/10.1039/d2sc01965e
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