Study on the interaction of paeoniflorin with human serum albumin (HSA) by spectroscopic and molecular docking techniques

Abstract The interaction of paeoniflorin with human serum albumin (HSA) was investigated using fluorescence, UV–vis absorption, circular dichroism (CD) spectra and molecular docking techniques under simulative physiological conditions. The results clarified that the fluorescence quenching of HSA by...

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Main Authors: Liang Xu, Yan-Xi Hu, Yan-Cheng Li, Yu-Feng Liu, Li Zhang, Hai-Xin Ai, Hong-Sheng Liu
Format: Article
Language:English
Published: BMC 2017-11-01
Series:Chemistry Central Journal
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13065-017-0348-3
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spelling doaj-ed195cea80e7484f9cce4fccedef406f2021-08-02T20:26:15ZengBMCChemistry Central Journal1752-153X2017-11-0111111210.1186/s13065-017-0348-3Study on the interaction of paeoniflorin with human serum albumin (HSA) by spectroscopic and molecular docking techniquesLiang Xu0Yan-Xi Hu1Yan-Cheng Li2Yu-Feng Liu3Li Zhang4Hai-Xin Ai5Hong-Sheng Liu6College of Pharmacy, Liaoning UniversityCollege of Pharmacy, Liaoning UniversityCollege of Pharmacy, Liaoning UniversityCollege of Pharmacy, Liaoning UniversitySchool of Life Science, Liaoning UniversitySchool of Life Science, Liaoning UniversitySchool of Life Science, Liaoning UniversityAbstract The interaction of paeoniflorin with human serum albumin (HSA) was investigated using fluorescence, UV–vis absorption, circular dichroism (CD) spectra and molecular docking techniques under simulative physiological conditions. The results clarified that the fluorescence quenching of HSA by paeoniflorin was a static quenching process and energy transfer as a result of a newly formed complex (1:1). Paeoniflorin spontaneously bound to HSA in site I (subdomain IIA), which was primarily driven by hydrophobic forces and hydrogen bonds (ΔH° = − 9.98 kJ mol−1, ΔS° = 28.18 J mol−1 K−1). The binding constant was calculated to be 1.909 × 103 L mol−1 at 288 K and it decreased with the increase of the temperature. The binding distance was estimated to be 1.74 nm at 288 K, showing the occurrence of fluorescence energy transfer. The results of CD and three-dimensional fluorescence spectra showed that paeoniflorin induced the conformational changes of HSA. Meanwhile, the study of molecular docking also indicated that paeoniflorin could bind to the site I of HSA mainly by hydrophobic and hydrogen bond interactions.http://link.springer.com/article/10.1186/s13065-017-0348-3PaeoniflorinHuman serum albuminFluorescence quenchingMolecular docking
collection DOAJ
language English
format Article
sources DOAJ
author Liang Xu
Yan-Xi Hu
Yan-Cheng Li
Yu-Feng Liu
Li Zhang
Hai-Xin Ai
Hong-Sheng Liu
spellingShingle Liang Xu
Yan-Xi Hu
Yan-Cheng Li
Yu-Feng Liu
Li Zhang
Hai-Xin Ai
Hong-Sheng Liu
Study on the interaction of paeoniflorin with human serum albumin (HSA) by spectroscopic and molecular docking techniques
Chemistry Central Journal
Paeoniflorin
Human serum albumin
Fluorescence quenching
Molecular docking
author_facet Liang Xu
Yan-Xi Hu
Yan-Cheng Li
Yu-Feng Liu
Li Zhang
Hai-Xin Ai
Hong-Sheng Liu
author_sort Liang Xu
title Study on the interaction of paeoniflorin with human serum albumin (HSA) by spectroscopic and molecular docking techniques
title_short Study on the interaction of paeoniflorin with human serum albumin (HSA) by spectroscopic and molecular docking techniques
title_full Study on the interaction of paeoniflorin with human serum albumin (HSA) by spectroscopic and molecular docking techniques
title_fullStr Study on the interaction of paeoniflorin with human serum albumin (HSA) by spectroscopic and molecular docking techniques
title_full_unstemmed Study on the interaction of paeoniflorin with human serum albumin (HSA) by spectroscopic and molecular docking techniques
title_sort study on the interaction of paeoniflorin with human serum albumin (hsa) by spectroscopic and molecular docking techniques
publisher BMC
series Chemistry Central Journal
issn 1752-153X
publishDate 2017-11-01
description Abstract The interaction of paeoniflorin with human serum albumin (HSA) was investigated using fluorescence, UV–vis absorption, circular dichroism (CD) spectra and molecular docking techniques under simulative physiological conditions. The results clarified that the fluorescence quenching of HSA by paeoniflorin was a static quenching process and energy transfer as a result of a newly formed complex (1:1). Paeoniflorin spontaneously bound to HSA in site I (subdomain IIA), which was primarily driven by hydrophobic forces and hydrogen bonds (ΔH° = − 9.98 kJ mol−1, ΔS° = 28.18 J mol−1 K−1). The binding constant was calculated to be 1.909 × 103 L mol−1 at 288 K and it decreased with the increase of the temperature. The binding distance was estimated to be 1.74 nm at 288 K, showing the occurrence of fluorescence energy transfer. The results of CD and three-dimensional fluorescence spectra showed that paeoniflorin induced the conformational changes of HSA. Meanwhile, the study of molecular docking also indicated that paeoniflorin could bind to the site I of HSA mainly by hydrophobic and hydrogen bond interactions.
topic Paeoniflorin
Human serum albumin
Fluorescence quenching
Molecular docking
url http://link.springer.com/article/10.1186/s13065-017-0348-3
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