TY - JOUR
T1 - Antioxidant activity, NMR, X-ray, ECD and UV/vis spectra of (+)-terrein
T2 - Experimental and theoretical approaches
AU - Trabolsy, Zuhra Bashir Khalifa Al
AU - Anouar, El Hassane
AU - Zakaria, Nur Shahidatul Shida
AU - Zulkeflee, Manar
AU - Hasan, Mizaton Hazizul
AU - Zin, Maisarah Mohd
AU - Ahmad, Rohaya
AU - Sultan, Sadia
AU - Weber, Jean Frédéric F.
PY - 2014/2/24
Y1 - 2014/2/24
N2 - Fungal metabolite terrein isolated from Aspergillus terreus is endowed with diverse biological and antioxidant activities. To determine the stereochemistry of the isolated terrein, we combined spectroscopic methods (CD and NMR spectra) and theoretical calculations (DFT and TD-DFT methods). Stereochemistry effects on the antioxidant activity of isolated terrein were evaluated by calculating bond dissociation enthalpies (BDEs), ionization potentials (IPs) and spin density delocalization of terrein and isoterrein stereoisomers with B3P86/6-31+G (d, p) method in gas and polarizable continuum model. The results showed a good agreement between experimental data and theoretical calculations which confirmed the (+)-terrein stereochemistry of isolated metabolite. Theoretical calculations showed that the antioxidant activity is relatively influenced by isomeric geometry of the terrein (a variation of 2 kcal/mol between BDEs of terrein and isoterrein isomers), while chirality has no influence on the antioxidant activity [0.2 kcal/mol difference between BDEs of (+)- and (-)-terrein]. The low antioxidant activity of (+)-terrein with respect to trolox and ascorbic acid was explained by the positive free Gibbs energy of the hydrogen atom transfer (HAT) mechanism and high BDE values of the 2-OH active site.
AB - Fungal metabolite terrein isolated from Aspergillus terreus is endowed with diverse biological and antioxidant activities. To determine the stereochemistry of the isolated terrein, we combined spectroscopic methods (CD and NMR spectra) and theoretical calculations (DFT and TD-DFT methods). Stereochemistry effects on the antioxidant activity of isolated terrein were evaluated by calculating bond dissociation enthalpies (BDEs), ionization potentials (IPs) and spin density delocalization of terrein and isoterrein stereoisomers with B3P86/6-31+G (d, p) method in gas and polarizable continuum model. The results showed a good agreement between experimental data and theoretical calculations which confirmed the (+)-terrein stereochemistry of isolated metabolite. Theoretical calculations showed that the antioxidant activity is relatively influenced by isomeric geometry of the terrein (a variation of 2 kcal/mol between BDEs of terrein and isoterrein isomers), while chirality has no influence on the antioxidant activity [0.2 kcal/mol difference between BDEs of (+)- and (-)-terrein]. The low antioxidant activity of (+)-terrein with respect to trolox and ascorbic acid was explained by the positive free Gibbs energy of the hydrogen atom transfer (HAT) mechanism and high BDE values of the 2-OH active site.
KW - Antioxidant activity
KW - Aspergillus terreus
KW - DFT
KW - ECD spectra
KW - Terrein
UR - http://www.scopus.com/inward/record.url?scp=84891854221&partnerID=8YFLogxK
U2 - 10.1016/j.molstruc.2013.12.034
DO - 10.1016/j.molstruc.2013.12.034
M3 - Article
AN - SCOPUS:84891854221
SN - 0022-2860
VL - 1060
SP - 102
EP - 110
JO - Journal of Molecular Structure
JF - Journal of Molecular Structure
IS - 1
ER -