Identification of Structural Features of Condensed Tannins That Affect Protein Aggregation.

A diverse panel of condensed tannins was used to resolve the confounding effects of size and subunit composition seen previously in tannin-protein interactions. Turbidimetry revealed that size in terms of mean degree of polymerisation (mDP) or average molecular weight (amw) was the most important ta...

Full description

Bibliographic Details
Main Authors: Honorata M Ropiak, Peter Lachmann, Aina Ramsay, Rebecca J Green, Irene Mueller-Harvey
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5268436?pdf=render
id doaj-7194a29a06b440eda89213548e9a01f7
record_format Article
spelling doaj-7194a29a06b440eda89213548e9a01f72020-11-25T01:30:48ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01121e017076810.1371/journal.pone.0170768Identification of Structural Features of Condensed Tannins That Affect Protein Aggregation.Honorata M RopiakPeter LachmannAina RamsayRebecca J GreenIrene Mueller-HarveyA diverse panel of condensed tannins was used to resolve the confounding effects of size and subunit composition seen previously in tannin-protein interactions. Turbidimetry revealed that size in terms of mean degree of polymerisation (mDP) or average molecular weight (amw) was the most important tannin parameter. The smallest tannin with the relatively largest effect on protein aggregation had an mDP of ~7. The average size was significantly correlated with aggregation of bovine serum albumin, BSA (mDP: r = -0.916; amw: r = -0.925; p<0.01; df = 27), and gelatin (mDP: r = -0.961; amw: r = -0.981; p<0.01; df = 12). The procyanidin/prodelphinidin and cis-/trans-flavan-3-ol ratios gave no significant correlations. Tryptophan fluorescence quenching indicated that procyanidins and cis-flavan-3-ol units contributed most to the tannin interactions on the BSA surface and in the hydrophobic binding pocket (r = 0.677; p<0.05; df = 9 and r = 0.887; p<0.01; df = 9, respectively). Circular dichroism revealed that higher proportions of prodelphinidins decreased the apparent α-helix content (r = -0.941; p<0.01; df = 5) and increased the apparent β-sheet content (r = 0.916; p<0.05; df = 5) of BSA.http://europepmc.org/articles/PMC5268436?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Honorata M Ropiak
Peter Lachmann
Aina Ramsay
Rebecca J Green
Irene Mueller-Harvey
spellingShingle Honorata M Ropiak
Peter Lachmann
Aina Ramsay
Rebecca J Green
Irene Mueller-Harvey
Identification of Structural Features of Condensed Tannins That Affect Protein Aggregation.
PLoS ONE
author_facet Honorata M Ropiak
Peter Lachmann
Aina Ramsay
Rebecca J Green
Irene Mueller-Harvey
author_sort Honorata M Ropiak
title Identification of Structural Features of Condensed Tannins That Affect Protein Aggregation.
title_short Identification of Structural Features of Condensed Tannins That Affect Protein Aggregation.
title_full Identification of Structural Features of Condensed Tannins That Affect Protein Aggregation.
title_fullStr Identification of Structural Features of Condensed Tannins That Affect Protein Aggregation.
title_full_unstemmed Identification of Structural Features of Condensed Tannins That Affect Protein Aggregation.
title_sort identification of structural features of condensed tannins that affect protein aggregation.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description A diverse panel of condensed tannins was used to resolve the confounding effects of size and subunit composition seen previously in tannin-protein interactions. Turbidimetry revealed that size in terms of mean degree of polymerisation (mDP) or average molecular weight (amw) was the most important tannin parameter. The smallest tannin with the relatively largest effect on protein aggregation had an mDP of ~7. The average size was significantly correlated with aggregation of bovine serum albumin, BSA (mDP: r = -0.916; amw: r = -0.925; p<0.01; df = 27), and gelatin (mDP: r = -0.961; amw: r = -0.981; p<0.01; df = 12). The procyanidin/prodelphinidin and cis-/trans-flavan-3-ol ratios gave no significant correlations. Tryptophan fluorescence quenching indicated that procyanidins and cis-flavan-3-ol units contributed most to the tannin interactions on the BSA surface and in the hydrophobic binding pocket (r = 0.677; p<0.05; df = 9 and r = 0.887; p<0.01; df = 9, respectively). Circular dichroism revealed that higher proportions of prodelphinidins decreased the apparent α-helix content (r = -0.941; p<0.01; df = 5) and increased the apparent β-sheet content (r = 0.916; p<0.05; df = 5) of BSA.
url http://europepmc.org/articles/PMC5268436?pdf=render
work_keys_str_mv AT honoratamropiak identificationofstructuralfeaturesofcondensedtanninsthataffectproteinaggregation
AT peterlachmann identificationofstructuralfeaturesofcondensedtanninsthataffectproteinaggregation
AT ainaramsay identificationofstructuralfeaturesofcondensedtanninsthataffectproteinaggregation
AT rebeccajgreen identificationofstructuralfeaturesofcondensedtanninsthataffectproteinaggregation
AT irenemuellerharvey identificationofstructuralfeaturesofcondensedtanninsthataffectproteinaggregation
_version_ 1725089729493336064