4.7 Article

A concise approach to 1,11-didechloro-6-methyl-4′-O-demethyl rebeccamycin and its binding to human serum albumin:: Fluorescence spectroscopy and molecular modeling method

Journal

BIOORGANIC & MEDICINAL CHEMISTRY
Volume 16, Issue 16, Pages 7615-7621

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.bmc.2008.07.017

Keywords

1,11-didechloro-6-methyl-4 '-O-demethyl rebeccamycin; human serum albumin; fluorescence quenching; molecular modeling; synchronous fluorescence

Funding

  1. Nature Science Foundation of China [20673034]
  2. Young Backbone Teacher Sustentation Plan of Henan Universities [200470]
  3. Department of Education of Henan Province [20672031]
  4. Program for New Century Excellent Talents in University of Henan Province [2006-HACET-06]
  5. Innovation Scientists and Technicians Troop Construction Projects of Henan Province [084100510002]

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1,11-Didechloro-6-methyl-4'-O-demethyl rebeccamycin (JDC-108), a rebeccamycin analog possessing potent anti-tumor activities, was prepared via a concise one-pot strategy in good yield. The interaction between JDC-108 and human serum albumin (HSA) was studied by spectroscopic methods including fluorescence spectroscopy, UV-vis absorption spectrum, and molecular modeling. The quenching mechanism of fluorescence of HSA by JDC-108 was discussed. The number of binding sites n and apparent binding constant K were measured by fluorescence quenching method. The thermodynamic parameters Delta H, Delta G, Delta S at different temperatures were calculated and the results indicated the binding reaction was mainly entropy-driven and hydrophobic forces played major role in the reaction. The distance r between donor ( HSA) and acceptor (JDC-108) was obtained according to Forster theory of non-radiation energy transfer. Synchronous fluorescence and UV-vis absorption spectrum were used to investigate the molecular conformation of HSA molecules with addition of JDC-108 and the result indicated that molecular conformation of HSA molecules was changed in the presence of JDC-108 and the hydrophobic interaction played a major role in JDC-108-HSA association, which was in good agreement with the results of molecular modeling study. In addition, the effect of common ions on the binding constants of JDC-108-HSA complex was also discussed. (C) 2008 Elsevier Ltd. All rights reserved.

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