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Albumin-mediated alteration of plasma zinc speciation by fatty acids modulates blood clotting in type-2 diabetes

Zn(2+) is an essential regulator of coagulation and is released from activated platelets. In plasma, the free Zn(2+) concentration is fine-tuned through buffering by human serum albumin (HSA). Importantly, the ability of HSA to bind/buffer Zn(2+) is compromised by co-transported non-esterified fatty...

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Autores principales: Sobczak, Amélie I. S., Katundu, Kondwani G. H., Phoenix, Fladia A., Khazaipoul, Siavash, Yu, Ruitao, Lampiao, Fanuel, Stefanowicz, Fiona, Blindauer, Claudia A., Pitt, Samantha J., Smith, Terry K., Ajjan, Ramzi A., Stewart, Alan J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179462/
https://www.ncbi.nlm.nih.gov/pubmed/34163679
http://dx.doi.org/10.1039/d0sc06605b
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author Sobczak, Amélie I. S.
Katundu, Kondwani G. H.
Phoenix, Fladia A.
Khazaipoul, Siavash
Yu, Ruitao
Lampiao, Fanuel
Stefanowicz, Fiona
Blindauer, Claudia A.
Pitt, Samantha J.
Smith, Terry K.
Ajjan, Ramzi A.
Stewart, Alan J.
author_facet Sobczak, Amélie I. S.
Katundu, Kondwani G. H.
Phoenix, Fladia A.
Khazaipoul, Siavash
Yu, Ruitao
Lampiao, Fanuel
Stefanowicz, Fiona
Blindauer, Claudia A.
Pitt, Samantha J.
Smith, Terry K.
Ajjan, Ramzi A.
Stewart, Alan J.
author_sort Sobczak, Amélie I. S.
collection PubMed
description Zn(2+) is an essential regulator of coagulation and is released from activated platelets. In plasma, the free Zn(2+) concentration is fine-tuned through buffering by human serum albumin (HSA). Importantly, the ability of HSA to bind/buffer Zn(2+) is compromised by co-transported non-esterified fatty acids (NEFAs). Given the role of Zn(2+) in blood clot formation, we hypothesise that Zn(2+) displacement from HSA by NEFAs in certain conditions (such as type 2 diabetes mellitus, T2DM) impacts on the cellular and protein arms of coagulation. To test this hypothesis, we assessed the extent to which increasing concentrations of a range of medium- and long-chain NEFAs reduced Zn(2+)-binding ability of HSA. Amongst the NEFAs tested, palmitate (16 : 0) and stearate (18 : 0) were the most effective at suppressing zinc-binding, whilst the mono-unsaturated palmitoleate (16 : 1c9) was markedly less effective. Assessment of platelet aggregation and fibrin clotting parameters in purified systems and in pooled plasma suggested that the HSA-mediated impact of the model NEFA myristate on zinc speciation intensified the effects of Zn(2+) alone. The effects of elevated Zn(2+) alone on fibrin clot density and fibre thickness in a purified protein system were mirrored in samples from T2DM patients, who have derranged NEFA metabolism. Crucially, T2DM individuals had increased total plasma NEFAs compared to controls, with the concentrations of key saturated (myristate, palmitate, stearate) and mono-unsaturated (oleate, cis-vaccenate) NEFAs positively correlating with clot density. Collectively, these data strongly support the concept that elevated NEFA levels contribute to altered coagulation in T2DM through dysregulation of plasma zinc speciation.
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spelling pubmed-81794622021-06-22 Albumin-mediated alteration of plasma zinc speciation by fatty acids modulates blood clotting in type-2 diabetes Sobczak, Amélie I. S. Katundu, Kondwani G. H. Phoenix, Fladia A. Khazaipoul, Siavash Yu, Ruitao Lampiao, Fanuel Stefanowicz, Fiona Blindauer, Claudia A. Pitt, Samantha J. Smith, Terry K. Ajjan, Ramzi A. Stewart, Alan J. Chem Sci Chemistry Zn(2+) is an essential regulator of coagulation and is released from activated platelets. In plasma, the free Zn(2+) concentration is fine-tuned through buffering by human serum albumin (HSA). Importantly, the ability of HSA to bind/buffer Zn(2+) is compromised by co-transported non-esterified fatty acids (NEFAs). Given the role of Zn(2+) in blood clot formation, we hypothesise that Zn(2+) displacement from HSA by NEFAs in certain conditions (such as type 2 diabetes mellitus, T2DM) impacts on the cellular and protein arms of coagulation. To test this hypothesis, we assessed the extent to which increasing concentrations of a range of medium- and long-chain NEFAs reduced Zn(2+)-binding ability of HSA. Amongst the NEFAs tested, palmitate (16 : 0) and stearate (18 : 0) were the most effective at suppressing zinc-binding, whilst the mono-unsaturated palmitoleate (16 : 1c9) was markedly less effective. Assessment of platelet aggregation and fibrin clotting parameters in purified systems and in pooled plasma suggested that the HSA-mediated impact of the model NEFA myristate on zinc speciation intensified the effects of Zn(2+) alone. The effects of elevated Zn(2+) alone on fibrin clot density and fibre thickness in a purified protein system were mirrored in samples from T2DM patients, who have derranged NEFA metabolism. Crucially, T2DM individuals had increased total plasma NEFAs compared to controls, with the concentrations of key saturated (myristate, palmitate, stearate) and mono-unsaturated (oleate, cis-vaccenate) NEFAs positively correlating with clot density. Collectively, these data strongly support the concept that elevated NEFA levels contribute to altered coagulation in T2DM through dysregulation of plasma zinc speciation. The Royal Society of Chemistry 2021-02-01 /pmc/articles/PMC8179462/ /pubmed/34163679 http://dx.doi.org/10.1039/d0sc06605b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Sobczak, Amélie I. S.
Katundu, Kondwani G. H.
Phoenix, Fladia A.
Khazaipoul, Siavash
Yu, Ruitao
Lampiao, Fanuel
Stefanowicz, Fiona
Blindauer, Claudia A.
Pitt, Samantha J.
Smith, Terry K.
Ajjan, Ramzi A.
Stewart, Alan J.
Albumin-mediated alteration of plasma zinc speciation by fatty acids modulates blood clotting in type-2 diabetes
title Albumin-mediated alteration of plasma zinc speciation by fatty acids modulates blood clotting in type-2 diabetes
title_full Albumin-mediated alteration of plasma zinc speciation by fatty acids modulates blood clotting in type-2 diabetes
title_fullStr Albumin-mediated alteration of plasma zinc speciation by fatty acids modulates blood clotting in type-2 diabetes
title_full_unstemmed Albumin-mediated alteration of plasma zinc speciation by fatty acids modulates blood clotting in type-2 diabetes
title_short Albumin-mediated alteration of plasma zinc speciation by fatty acids modulates blood clotting in type-2 diabetes
title_sort albumin-mediated alteration of plasma zinc speciation by fatty acids modulates blood clotting in type-2 diabetes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179462/
https://www.ncbi.nlm.nih.gov/pubmed/34163679
http://dx.doi.org/10.1039/d0sc06605b
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