Cargando…

Differential Effects of Methoxy Group on the Interaction of Curcuminoids with Two Major Ligand Binding Sites of Human Serum Albumin

Curcuminoids are a group of compounds with a similar chemical backbone structure but containing different numbers of methoxy groups that have therapeutic potential due to their anti-inflammatory and anti-oxidant properties. They mainly bind to albumin in plasma. These findings influence their body d...

Descripción completa

Detalles Bibliográficos
Autores principales: Sato, Hiroki, Chuang, Victor Tuan Giam, Yamasaki, Keishi, Yamaotsu, Noriyuki, Watanabe, Hiroshi, Nagumo, Kohei, Anraku, Makoto, Kadowaki, Daisuke, Ishima, Yu, Hirono, Shuichi, Otagiri, Masaki, Maruyama, Toru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3912132/
https://www.ncbi.nlm.nih.gov/pubmed/24498401
http://dx.doi.org/10.1371/journal.pone.0087919
_version_ 1782302046120050688
author Sato, Hiroki
Chuang, Victor Tuan Giam
Yamasaki, Keishi
Yamaotsu, Noriyuki
Watanabe, Hiroshi
Nagumo, Kohei
Anraku, Makoto
Kadowaki, Daisuke
Ishima, Yu
Hirono, Shuichi
Otagiri, Masaki
Maruyama, Toru
author_facet Sato, Hiroki
Chuang, Victor Tuan Giam
Yamasaki, Keishi
Yamaotsu, Noriyuki
Watanabe, Hiroshi
Nagumo, Kohei
Anraku, Makoto
Kadowaki, Daisuke
Ishima, Yu
Hirono, Shuichi
Otagiri, Masaki
Maruyama, Toru
author_sort Sato, Hiroki
collection PubMed
description Curcuminoids are a group of compounds with a similar chemical backbone structure but containing different numbers of methoxy groups that have therapeutic potential due to their anti-inflammatory and anti-oxidant properties. They mainly bind to albumin in plasma. These findings influence their body disposition and biological activities. Spectroscopic analysis using site specific probes on human serum albumin (HSA) clearly indicated that curcumin (Cur), demethylcurcumin (Dmc) and bisdemethoxycurcumin (Bdmc) bind to both Site I (sub-site Ia and Ib) and Site II on HSA. At pH 7.4, the binding constants for Site I were relatively comparable between curcuminoids, while the binding constants for Site II at pH 7.4 were increased in order Cur < Dmc < Bdmc. Binding experiments using HSA mutants showed that Trp214 and Arg218 at Site I, and Tyr411 and Arg410 at Site II are involved in the binding of curcuminoids. The molecular docking of all curcuminoids to the Site I pocket showed that curcuminoids stacked with Phe211 and Trp214, and interacted with hydrophobic and aromatic amino acid residues. In contrast, each curcuminoid interacted with Site II in a different manner depending whether a methoxy group was present or absent. A detailed analysis of curcuminoids-albumin interactions would provide valuable information in terms of understanding the pharmacokinetics and the biological activities of this class of compounds.
format Online
Article
Text
id pubmed-3912132
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-39121322014-02-04 Differential Effects of Methoxy Group on the Interaction of Curcuminoids with Two Major Ligand Binding Sites of Human Serum Albumin Sato, Hiroki Chuang, Victor Tuan Giam Yamasaki, Keishi Yamaotsu, Noriyuki Watanabe, Hiroshi Nagumo, Kohei Anraku, Makoto Kadowaki, Daisuke Ishima, Yu Hirono, Shuichi Otagiri, Masaki Maruyama, Toru PLoS One Research Article Curcuminoids are a group of compounds with a similar chemical backbone structure but containing different numbers of methoxy groups that have therapeutic potential due to their anti-inflammatory and anti-oxidant properties. They mainly bind to albumin in plasma. These findings influence their body disposition and biological activities. Spectroscopic analysis using site specific probes on human serum albumin (HSA) clearly indicated that curcumin (Cur), demethylcurcumin (Dmc) and bisdemethoxycurcumin (Bdmc) bind to both Site I (sub-site Ia and Ib) and Site II on HSA. At pH 7.4, the binding constants for Site I were relatively comparable between curcuminoids, while the binding constants for Site II at pH 7.4 were increased in order Cur < Dmc < Bdmc. Binding experiments using HSA mutants showed that Trp214 and Arg218 at Site I, and Tyr411 and Arg410 at Site II are involved in the binding of curcuminoids. The molecular docking of all curcuminoids to the Site I pocket showed that curcuminoids stacked with Phe211 and Trp214, and interacted with hydrophobic and aromatic amino acid residues. In contrast, each curcuminoid interacted with Site II in a different manner depending whether a methoxy group was present or absent. A detailed analysis of curcuminoids-albumin interactions would provide valuable information in terms of understanding the pharmacokinetics and the biological activities of this class of compounds. Public Library of Science 2014-02-03 /pmc/articles/PMC3912132/ /pubmed/24498401 http://dx.doi.org/10.1371/journal.pone.0087919 Text en © 2014 Sato 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
Sato, Hiroki
Chuang, Victor Tuan Giam
Yamasaki, Keishi
Yamaotsu, Noriyuki
Watanabe, Hiroshi
Nagumo, Kohei
Anraku, Makoto
Kadowaki, Daisuke
Ishima, Yu
Hirono, Shuichi
Otagiri, Masaki
Maruyama, Toru
Differential Effects of Methoxy Group on the Interaction of Curcuminoids with Two Major Ligand Binding Sites of Human Serum Albumin
title Differential Effects of Methoxy Group on the Interaction of Curcuminoids with Two Major Ligand Binding Sites of Human Serum Albumin
title_full Differential Effects of Methoxy Group on the Interaction of Curcuminoids with Two Major Ligand Binding Sites of Human Serum Albumin
title_fullStr Differential Effects of Methoxy Group on the Interaction of Curcuminoids with Two Major Ligand Binding Sites of Human Serum Albumin
title_full_unstemmed Differential Effects of Methoxy Group on the Interaction of Curcuminoids with Two Major Ligand Binding Sites of Human Serum Albumin
title_short Differential Effects of Methoxy Group on the Interaction of Curcuminoids with Two Major Ligand Binding Sites of Human Serum Albumin
title_sort differential effects of methoxy group on the interaction of curcuminoids with two major ligand binding sites of human serum albumin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3912132/
https://www.ncbi.nlm.nih.gov/pubmed/24498401
http://dx.doi.org/10.1371/journal.pone.0087919
work_keys_str_mv AT satohiroki differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin
AT chuangvictortuangiam differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin
AT yamasakikeishi differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin
AT yamaotsunoriyuki differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin
AT watanabehiroshi differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin
AT nagumokohei differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin
AT anrakumakoto differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin
AT kadowakidaisuke differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin
AT ishimayu differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin
AT hironoshuichi differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin
AT otagirimasaki differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin
AT maruyamatoru differentialeffectsofmethoxygroupontheinteractionofcurcuminoidswithtwomajorligandbindingsitesofhumanserumalbumin