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Molecular Interaction Studies of Trimethoxy Flavone with Human Serum Albumin

BACKGROUND: Human serum albumin (HSA) is the most abundant protein in blood plasma, having high affinity binding sites for several endogenous and exogenous compounds. Trimethoxy flavone (TMF) is a naturally occurring flavone isolated from Andrographis viscosula and used in the treatment of dyspepsia...

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Autores principales: Gokara, Mahesh, Sudhamalla, Babu, Amooru, Damu G., Subramanyam, Rajagopal
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2809094/
https://www.ncbi.nlm.nih.gov/pubmed/20098677
http://dx.doi.org/10.1371/journal.pone.0008834
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author Gokara, Mahesh
Sudhamalla, Babu
Amooru, Damu G.
Subramanyam, Rajagopal
author_facet Gokara, Mahesh
Sudhamalla, Babu
Amooru, Damu G.
Subramanyam, Rajagopal
author_sort Gokara, Mahesh
collection PubMed
description BACKGROUND: Human serum albumin (HSA) is the most abundant protein in blood plasma, having high affinity binding sites for several endogenous and exogenous compounds. Trimethoxy flavone (TMF) is a naturally occurring flavone isolated from Andrographis viscosula and used in the treatment of dyspepsia, influenza, malaria, respiratory functions and as an astringent and antidote for poisonous stings of some insects. METHODOLOGY/PRINCIPAL FINDINGS: The main aim of the experiment was to examine the interaction between TMF and HSA at physiological conditions. Upon addition of TMF to HSA, the fluorescence emission was quenched and the binding constant of TMF with HSA was found to be K(TMF) = 1.0±0.01×10(3) M(−1), which corresponds to −5.4 kcal M(−1) of free energy. Micro-TOF Q mass spectrometry results showed a mass increase of from 66,513 Da (free HSA) to 66,823 Da (HAS +Drug), indicating the strong binding of TMF with HSA resulting in decrease of fluorescence. The HSA conformation was altered upon binding of TMF to HSA with decrease in α-helix and an increase in β-sheets and random coils suggesting partial unfolding of protein secondary structure. Molecular docking experiments found that TMF binds strongly with HSA at IIIA domain of hydrophobic pocket with hydrogen bond and hydrophobic interactions. Among which two hydrogen bonds are formed between O (19) of TMF to Arg 410, Tyr 411 and another one from O (7) of TMF to Asn 391, with bond distance of 2.1 Å, 3.6 Å and 2.6 Å, respectively. CONCLUSIONS/SIGNIFICANCE: In view of the evidence presented, it is imperative to assign a greater role of HSA's as a carrier molecule for many drugs to understand the interactions of HSA with TMF will be pivotal in the design of new TMF-inspired drugs.
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spelling pubmed-28090942010-01-23 Molecular Interaction Studies of Trimethoxy Flavone with Human Serum Albumin Gokara, Mahesh Sudhamalla, Babu Amooru, Damu G. Subramanyam, Rajagopal PLoS One Research Article BACKGROUND: Human serum albumin (HSA) is the most abundant protein in blood plasma, having high affinity binding sites for several endogenous and exogenous compounds. Trimethoxy flavone (TMF) is a naturally occurring flavone isolated from Andrographis viscosula and used in the treatment of dyspepsia, influenza, malaria, respiratory functions and as an astringent and antidote for poisonous stings of some insects. METHODOLOGY/PRINCIPAL FINDINGS: The main aim of the experiment was to examine the interaction between TMF and HSA at physiological conditions. Upon addition of TMF to HSA, the fluorescence emission was quenched and the binding constant of TMF with HSA was found to be K(TMF) = 1.0±0.01×10(3) M(−1), which corresponds to −5.4 kcal M(−1) of free energy. Micro-TOF Q mass spectrometry results showed a mass increase of from 66,513 Da (free HSA) to 66,823 Da (HAS +Drug), indicating the strong binding of TMF with HSA resulting in decrease of fluorescence. The HSA conformation was altered upon binding of TMF to HSA with decrease in α-helix and an increase in β-sheets and random coils suggesting partial unfolding of protein secondary structure. Molecular docking experiments found that TMF binds strongly with HSA at IIIA domain of hydrophobic pocket with hydrogen bond and hydrophobic interactions. Among which two hydrogen bonds are formed between O (19) of TMF to Arg 410, Tyr 411 and another one from O (7) of TMF to Asn 391, with bond distance of 2.1 Å, 3.6 Å and 2.6 Å, respectively. CONCLUSIONS/SIGNIFICANCE: In view of the evidence presented, it is imperative to assign a greater role of HSA's as a carrier molecule for many drugs to understand the interactions of HSA with TMF will be pivotal in the design of new TMF-inspired drugs. Public Library of Science 2010-01-21 /pmc/articles/PMC2809094/ /pubmed/20098677 http://dx.doi.org/10.1371/journal.pone.0008834 Text en Gokara et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Gokara, Mahesh
Sudhamalla, Babu
Amooru, Damu G.
Subramanyam, Rajagopal
Molecular Interaction Studies of Trimethoxy Flavone with Human Serum Albumin
title Molecular Interaction Studies of Trimethoxy Flavone with Human Serum Albumin
title_full Molecular Interaction Studies of Trimethoxy Flavone with Human Serum Albumin
title_fullStr Molecular Interaction Studies of Trimethoxy Flavone with Human Serum Albumin
title_full_unstemmed Molecular Interaction Studies of Trimethoxy Flavone with Human Serum Albumin
title_short Molecular Interaction Studies of Trimethoxy Flavone with Human Serum Albumin
title_sort molecular interaction studies of trimethoxy flavone with human serum albumin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2809094/
https://www.ncbi.nlm.nih.gov/pubmed/20098677
http://dx.doi.org/10.1371/journal.pone.0008834
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