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Structural and chemical trapping of flavin‐oxide intermediates reveals substrate‐directed reaction multiplicity

Though reactive flavin‐N5/C4α‐oxide intermediates can be spectroscopically profiled for some flavin‐assisted enzymatic reactions, their exact chemical configurations are hardly visualized. Structural systems biology and stable isotopic labelling techniques were exploited to correct this stereotypica...

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Autores principales: Lin, Kuan‐Hung, Lyu, Syue‐Yi, Yeh, Hsien‐Wei, Li, Yi‐Shan, Hsu, Ning‐Shian, Huang, Chun‐Man, Wang, Yung‐Lin, Shih, Hao‐Wei, Wang, Zhe‐Chong, Wu, Chang‐Jer, Li, Tsung‐Lin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7314388/
https://www.ncbi.nlm.nih.gov/pubmed/32362037
http://dx.doi.org/10.1002/pro.3879
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author Lin, Kuan‐Hung
Lyu, Syue‐Yi
Yeh, Hsien‐Wei
Li, Yi‐Shan
Hsu, Ning‐Shian
Huang, Chun‐Man
Wang, Yung‐Lin
Shih, Hao‐Wei
Wang, Zhe‐Chong
Wu, Chang‐Jer
Li, Tsung‐Lin
author_facet Lin, Kuan‐Hung
Lyu, Syue‐Yi
Yeh, Hsien‐Wei
Li, Yi‐Shan
Hsu, Ning‐Shian
Huang, Chun‐Man
Wang, Yung‐Lin
Shih, Hao‐Wei
Wang, Zhe‐Chong
Wu, Chang‐Jer
Li, Tsung‐Lin
author_sort Lin, Kuan‐Hung
collection PubMed
description Though reactive flavin‐N5/C4α‐oxide intermediates can be spectroscopically profiled for some flavin‐assisted enzymatic reactions, their exact chemical configurations are hardly visualized. Structural systems biology and stable isotopic labelling techniques were exploited to correct this stereotypical view. Three transition‐like complexes, the α‐ketoacid…N5‐FMN(ox) complex (I), the FMN(ox)‐N5‐aloxyl‐C′α(−)‐C4α(+) zwitterion (II), and the FMN‐N5‐ethenol‐N5‐C4α‐epoxide (III), were determined from mandelate oxidase (Hmo) or its mutant Y128F (monooxygenase) crystals soaked with monofluoropyruvate (a product mimic), establishing that N5 of FMN(ox) an alternative reaction center can polarize to an ylide‐like mesomer in the active site. In contrast, four distinct flavin‐C4α‐oxide adducts (IV–VII) from Y128F crystals soaked with selected substrates materialize C4α of FMN an intrinsic reaction center, witnessing oxidation, Baeyer–Villiger/peroxide‐assisted decarboxylation, and epoxidation reactions. In conjunction with stopped‐flow kinetics, the multifaceted flavin‐dependent reaction continuum is physically dissected at molecular level for the first time.
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spelling pubmed-73143882020-06-25 Structural and chemical trapping of flavin‐oxide intermediates reveals substrate‐directed reaction multiplicity Lin, Kuan‐Hung Lyu, Syue‐Yi Yeh, Hsien‐Wei Li, Yi‐Shan Hsu, Ning‐Shian Huang, Chun‐Man Wang, Yung‐Lin Shih, Hao‐Wei Wang, Zhe‐Chong Wu, Chang‐Jer Li, Tsung‐Lin Protein Sci Full‐length Papers Though reactive flavin‐N5/C4α‐oxide intermediates can be spectroscopically profiled for some flavin‐assisted enzymatic reactions, their exact chemical configurations are hardly visualized. Structural systems biology and stable isotopic labelling techniques were exploited to correct this stereotypical view. Three transition‐like complexes, the α‐ketoacid…N5‐FMN(ox) complex (I), the FMN(ox)‐N5‐aloxyl‐C′α(−)‐C4α(+) zwitterion (II), and the FMN‐N5‐ethenol‐N5‐C4α‐epoxide (III), were determined from mandelate oxidase (Hmo) or its mutant Y128F (monooxygenase) crystals soaked with monofluoropyruvate (a product mimic), establishing that N5 of FMN(ox) an alternative reaction center can polarize to an ylide‐like mesomer in the active site. In contrast, four distinct flavin‐C4α‐oxide adducts (IV–VII) from Y128F crystals soaked with selected substrates materialize C4α of FMN an intrinsic reaction center, witnessing oxidation, Baeyer–Villiger/peroxide‐assisted decarboxylation, and epoxidation reactions. In conjunction with stopped‐flow kinetics, the multifaceted flavin‐dependent reaction continuum is physically dissected at molecular level for the first time. John Wiley & Sons, Inc. 2020-05-26 2020-07 /pmc/articles/PMC7314388/ /pubmed/32362037 http://dx.doi.org/10.1002/pro.3879 Text en © 2020 The Authors. Protein Science published by Wiley Periodicals, Inc. on behalf of The Protein Society. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full‐length Papers
Lin, Kuan‐Hung
Lyu, Syue‐Yi
Yeh, Hsien‐Wei
Li, Yi‐Shan
Hsu, Ning‐Shian
Huang, Chun‐Man
Wang, Yung‐Lin
Shih, Hao‐Wei
Wang, Zhe‐Chong
Wu, Chang‐Jer
Li, Tsung‐Lin
Structural and chemical trapping of flavin‐oxide intermediates reveals substrate‐directed reaction multiplicity
title Structural and chemical trapping of flavin‐oxide intermediates reveals substrate‐directed reaction multiplicity
title_full Structural and chemical trapping of flavin‐oxide intermediates reveals substrate‐directed reaction multiplicity
title_fullStr Structural and chemical trapping of flavin‐oxide intermediates reveals substrate‐directed reaction multiplicity
title_full_unstemmed Structural and chemical trapping of flavin‐oxide intermediates reveals substrate‐directed reaction multiplicity
title_short Structural and chemical trapping of flavin‐oxide intermediates reveals substrate‐directed reaction multiplicity
title_sort structural and chemical trapping of flavin‐oxide intermediates reveals substrate‐directed reaction multiplicity
topic Full‐length Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7314388/
https://www.ncbi.nlm.nih.gov/pubmed/32362037
http://dx.doi.org/10.1002/pro.3879
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