4.6 Article

The effect of Cu2+ on interaction between flavonoids with different C-ring substituents and bovine serum albumin: Structure-affinity relationship aspect

Journal

JOURNAL OF INORGANIC BIOCHEMISTRY
Volume 105, Issue 12, Pages 1529-1537

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.jinorgbio.2011.08.007

Keywords

Flavonoid; Bovine serum albumin; Chemical structure; Fluorescence quenching; Cu2+; Interaction

Funding

  1. National Scientific Foundation of China [21005089]
  2. Natural Science Foundation of Hunan Province of China [10114006]
  3. Central South University [201012200015]
  4. State Key Laboratory of Powder Metallurgy
  5. Higher Educational Institutions of Hunan Province

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Four flavonoids quercetin (QU), luteolin (LU), taxifolin (TA) and (+)-catechin (CA) with the same A- and Brings but different C-ring substituents have been investigated for their binding to bovine serum albumin (BSA) in the absence and presence of Cu2+ by means of various spectroscopic methods such as fluorescence. UV-visible and circular dichroism (CD). The results indicated that hydroxyl group at 3-position increased the binding affinities between flavonoids and BSA. The values of the binding affinities were in the order: QU>CA>TA>LU. The presence of Cu2+ affected the interactions of flavonoids with BSA significantly. The binding affinities of QU and TA for BSA were decreased about 6.7% and 13.2%. However, the binding affinities of LU and CA for BSA were increased about 43.0% and 20.7%. The formation of Cu2+-flavonoid complex and steric hindrance together influenced the binding affinities of QU, LU and TA for BSA, while the conformational change of BSA may be the main reason for the increased binding affinity of CA for BSA. However, the quenching mechanism for QU, LU, TA and CA to BSA was based on static quenching combined with non-radiative energy transfer irrespective of the absence or presence of Cu2+. The UV-visible results showed the change in BSA conformation and the formation of flavonoid-Cu2+ complex. The CD results also explained the conformational changes of BSA on binding with flavonoids. (C) 2011 Elsevier Inc. All rights reserved.

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