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Revisiting the structure of Heliannuol L: A computational approach.
Martorano, Lucas H; Brito, Jordana T; de Albuquerque, Ana Carolina F; Ribeiro, Carlos Magno Rocha; Fiorot, Rodolfo Goetze; Carneiro, José Walkimar de Mesquita; Costa, Fabio Luiz Paranhos; Valverde, Alessandra L; Dos Santos Junior, Fernando Martins.
Afiliación
  • Martorano LH; Department of Organic Chemistry, Chemistry Institute, Fluminense Federal University (UFF), Niterói, Brazil.
  • Brito JT; Department of Organic Chemistry, Chemistry Institute, Fluminense Federal University (UFF), Niterói, Brazil.
  • de Albuquerque ACF; Department of Organic Chemistry, Chemistry Institute, Fluminense Federal University (UFF), Niterói, Brazil.
  • Ribeiro CMR; Department of Organic Chemistry, Chemistry Institute, Fluminense Federal University (UFF), Niterói, Brazil.
  • Fiorot RG; Department of Organic Chemistry, Chemistry Institute, Fluminense Federal University (UFF), Niterói, Brazil.
  • Carneiro JWM; Department of Inorganic Chemistry, Chemistry Institute, Fluminense Federal University (UFF), Niterói, Brazil.
  • Costa FLP; Chemistry Institute, Federal University of Jataí (UFJ), Jataí, Brazil.
  • Valverde AL; Department of Organic Chemistry, Chemistry Institute, Fluminense Federal University (UFF), Niterói, Brazil.
  • Dos Santos Junior FM; Department of Organic Chemistry, Chemistry Institute, Fluminense Federal University (UFF), Niterói, Brazil.
Magn Reson Chem ; 60(4): 434-441, 2022 04.
Article en En | MEDLINE | ID: mdl-34741339
Recently, structural elucidation of natural products has undergone a revolution. The combined use of different modern spectroscopic methods has allowed obtaining a complete structural assignment of natural products using small amounts of sample. However, despite the extraordinary ongoing advances in spectroscopy, the mischaracterization of natural products has been and remains a recurrent problem, especially when the substance presents several stereogenic centers. The misinterpretation of nuclear magnetic resonance (NMR) data has resulted in frequent reports addressing structural reassignment. In this context, a great effort has been devoted to developing quantum chemical calculations that simulate NMR parameters accurately, allowing to achieve a more precise spectral interpretation. In this work, we employed a protocol for theoretical calculations of 1 H NMR chemical shifts and coupling constants using density functional theory (DFT), followed by the application of the DP4+ method to revisit the structure of Heliannuol L, a member of the Heliannuol class, isolated from Helianthus annuus. Our results indicate that the originally proposed structure of Heliannuol L needs a stereochemical reassignment, placing the hydroxyl bonded to C10 in the opposite side of the methyl and hydroxyl groups bonded to C7 and C8, respectively.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Productos Biológicos Idioma: En Revista: Magn Reson Chem Asunto de la revista: QUIMICA Año: 2022 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Productos Biológicos Idioma: En Revista: Magn Reson Chem Asunto de la revista: QUIMICA Año: 2022 Tipo del documento: Article