Cargando…

The modulatory role of sulfated and non-sulfated small molecule heparan sulfate-glycomimetics in endothelial dysfunction: absolute structural clarification, molecular docking and simulated dynamics, SAR analyses and ADMET studies

The conceptual technology of small molecule glycomimetics, exemplified by compounds C1–4, has shown promising protective effects against lipid-induced endothelial dysfunction, restorative effects on diabetic endothelial colony forming cells, and preventative effects on downstream vascular calcificat...

Descripción completa

Detalles Bibliográficos
Autores principales: Gill, Daniel M., R. Povinelli, Ana Paula, Zazeri, Gabriel, Shamir, Sabrina A., Mahmoud, Ayman M., Wilkinson, Fiona L., Alexander, M. Yvonne, L. Cornelio, Marinonio, Jones, Alan M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8152814/
https://www.ncbi.nlm.nih.gov/pubmed/34124676
http://dx.doi.org/10.1039/d0md00366b
_version_ 1783698674227871744
author Gill, Daniel M.
R. Povinelli, Ana Paula
Zazeri, Gabriel
Shamir, Sabrina A.
Mahmoud, Ayman M.
Wilkinson, Fiona L.
Alexander, M. Yvonne
L. Cornelio, Marinonio
Jones, Alan M.
author_facet Gill, Daniel M.
R. Povinelli, Ana Paula
Zazeri, Gabriel
Shamir, Sabrina A.
Mahmoud, Ayman M.
Wilkinson, Fiona L.
Alexander, M. Yvonne
L. Cornelio, Marinonio
Jones, Alan M.
author_sort Gill, Daniel M.
collection PubMed
description The conceptual technology of small molecule glycomimetics, exemplified by compounds C1–4, has shown promising protective effects against lipid-induced endothelial dysfunction, restorative effects on diabetic endothelial colony forming cells, and preventative effects on downstream vascular calcification amongst other important in vitro and ex vivo studies. We report the optimised synthesis of an array of 17 small molecule glycomimetics, including the regio-, enantio- and diastereo-meric sulfated scaffolds of a hit structure along with novel desulfated examples. For the first time, the absolute stereochemical configurations of C1–4 have been clarified based on an identified and consistent anomaly with the Sharpless asymmetric dihydroxylation reaction. We have investigated the role and importance of sulfation pattern, location, regioisomers, and spatial orientation of distal sulfate groups on the modulation of endothelial dysfunction through their interaction with hepatocyte growth factor (HGF). In silico studies demonstrated the key interactions the persulfated glycomimetics make with HGF and revealed the importance of both sulfate density and positioning (both point chirality and vector) to biological activity. In vitro biological data of the most efficient binding motifs, along with desulfated comparators, support the modulatory effects of sulfated small molecule glycomimetics in the downstream signaling cascade of endothelial dysfunction. In vitro absorption, distribution, metabolism, elimination and toxicity (ADMET) data demonstrate the glycomimetic approach to be a promising approach for hit-to-lead studies.
format Online
Article
Text
id pubmed-8152814
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher RSC
record_format MEDLINE/PubMed
spelling pubmed-81528142021-06-11 The modulatory role of sulfated and non-sulfated small molecule heparan sulfate-glycomimetics in endothelial dysfunction: absolute structural clarification, molecular docking and simulated dynamics, SAR analyses and ADMET studies Gill, Daniel M. R. Povinelli, Ana Paula Zazeri, Gabriel Shamir, Sabrina A. Mahmoud, Ayman M. Wilkinson, Fiona L. Alexander, M. Yvonne L. Cornelio, Marinonio Jones, Alan M. RSC Med Chem Chemistry The conceptual technology of small molecule glycomimetics, exemplified by compounds C1–4, has shown promising protective effects against lipid-induced endothelial dysfunction, restorative effects on diabetic endothelial colony forming cells, and preventative effects on downstream vascular calcification amongst other important in vitro and ex vivo studies. We report the optimised synthesis of an array of 17 small molecule glycomimetics, including the regio-, enantio- and diastereo-meric sulfated scaffolds of a hit structure along with novel desulfated examples. For the first time, the absolute stereochemical configurations of C1–4 have been clarified based on an identified and consistent anomaly with the Sharpless asymmetric dihydroxylation reaction. We have investigated the role and importance of sulfation pattern, location, regioisomers, and spatial orientation of distal sulfate groups on the modulation of endothelial dysfunction through their interaction with hepatocyte growth factor (HGF). In silico studies demonstrated the key interactions the persulfated glycomimetics make with HGF and revealed the importance of both sulfate density and positioning (both point chirality and vector) to biological activity. In vitro biological data of the most efficient binding motifs, along with desulfated comparators, support the modulatory effects of sulfated small molecule glycomimetics in the downstream signaling cascade of endothelial dysfunction. In vitro absorption, distribution, metabolism, elimination and toxicity (ADMET) data demonstrate the glycomimetic approach to be a promising approach for hit-to-lead studies. RSC 2021-04-23 /pmc/articles/PMC8152814/ /pubmed/34124676 http://dx.doi.org/10.1039/d0md00366b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Gill, Daniel M.
R. Povinelli, Ana Paula
Zazeri, Gabriel
Shamir, Sabrina A.
Mahmoud, Ayman M.
Wilkinson, Fiona L.
Alexander, M. Yvonne
L. Cornelio, Marinonio
Jones, Alan M.
The modulatory role of sulfated and non-sulfated small molecule heparan sulfate-glycomimetics in endothelial dysfunction: absolute structural clarification, molecular docking and simulated dynamics, SAR analyses and ADMET studies
title The modulatory role of sulfated and non-sulfated small molecule heparan sulfate-glycomimetics in endothelial dysfunction: absolute structural clarification, molecular docking and simulated dynamics, SAR analyses and ADMET studies
title_full The modulatory role of sulfated and non-sulfated small molecule heparan sulfate-glycomimetics in endothelial dysfunction: absolute structural clarification, molecular docking and simulated dynamics, SAR analyses and ADMET studies
title_fullStr The modulatory role of sulfated and non-sulfated small molecule heparan sulfate-glycomimetics in endothelial dysfunction: absolute structural clarification, molecular docking and simulated dynamics, SAR analyses and ADMET studies
title_full_unstemmed The modulatory role of sulfated and non-sulfated small molecule heparan sulfate-glycomimetics in endothelial dysfunction: absolute structural clarification, molecular docking and simulated dynamics, SAR analyses and ADMET studies
title_short The modulatory role of sulfated and non-sulfated small molecule heparan sulfate-glycomimetics in endothelial dysfunction: absolute structural clarification, molecular docking and simulated dynamics, SAR analyses and ADMET studies
title_sort modulatory role of sulfated and non-sulfated small molecule heparan sulfate-glycomimetics in endothelial dysfunction: absolute structural clarification, molecular docking and simulated dynamics, sar analyses and admet studies
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8152814/
https://www.ncbi.nlm.nih.gov/pubmed/34124676
http://dx.doi.org/10.1039/d0md00366b
work_keys_str_mv AT gilldanielm themodulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT rpovinellianapaula themodulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT zazerigabriel themodulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT shamirsabrinaa themodulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT mahmoudaymanm themodulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT wilkinsonfional themodulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT alexandermyvonne themodulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT lcorneliomarinonio themodulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT jonesalanm themodulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT gilldanielm modulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT rpovinellianapaula modulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT zazerigabriel modulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT shamirsabrinaa modulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT mahmoudaymanm modulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT wilkinsonfional modulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT alexandermyvonne modulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT lcorneliomarinonio modulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies
AT jonesalanm modulatoryroleofsulfatedandnonsulfatedsmallmoleculeheparansulfateglycomimeticsinendothelialdysfunctionabsolutestructuralclarificationmoleculardockingandsimulateddynamicssaranalysesandadmetstudies