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Genetic and Structure-Function Studies of Missense Mutations in Human Endothelial Lipase

Endothelial lipase (EL) plays a pivotal role in HDL metabolism. We sought to characterize EL and its interaction with HDL as well as its natural variants genetically, functionally and structurally. We screened our biethnic population sample (n = 802) for selected missense mutations (n = 5) and ident...

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Autores principales: Razzaghi, Hamid, Tempczyk-Russell, Anna, Haubold, Kurt, Santorico, Stephanie A., Shokati, Touraj, Christians, Uwe, Churchill, Mair E. A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3607615/
https://www.ncbi.nlm.nih.gov/pubmed/23536757
http://dx.doi.org/10.1371/journal.pone.0055716
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author Razzaghi, Hamid
Tempczyk-Russell, Anna
Haubold, Kurt
Santorico, Stephanie A.
Shokati, Touraj
Christians, Uwe
Churchill, Mair E. A.
author_facet Razzaghi, Hamid
Tempczyk-Russell, Anna
Haubold, Kurt
Santorico, Stephanie A.
Shokati, Touraj
Christians, Uwe
Churchill, Mair E. A.
author_sort Razzaghi, Hamid
collection PubMed
description Endothelial lipase (EL) plays a pivotal role in HDL metabolism. We sought to characterize EL and its interaction with HDL as well as its natural variants genetically, functionally and structurally. We screened our biethnic population sample (n = 802) for selected missense mutations (n = 5) and identified T111I as the only common variant. Multiple linear regression analyses in Hispanic subjects revealed an unexpected association between T111I and elevated LDL-C (p-value = 0.012) and total cholesterol (p-value = 0.004). We examined lipase activity of selected missense mutants (n = 10) and found different impacts on EL function, ranging from normal to complete loss of activity. EL-HDL lipidomic analyses indicated that EL has a defined remodeling of HDL without exhaustion of the substrate and a distinct and preference for several fatty acids that are lipid mediators and known for their potent pro- and anti-inflammatory properties. Structural studies using homology modeling revealed a novel α/β motif in the C-domain, unique to EL. The EL dimer was found to have the flexibility to expand and to bind various sizes of HDL particles. The likely impact of the all known missense mutations (n = 18) on the structure of EL was examined using molecular modeling and the impact they may have on EL lipase activity using a novel structure-function slope based on their structural free energy differences. The results of this multidisciplinary approach delineated the impact of EL and its variants on HDL. Moreover, the results suggested EL to have the capacity to modulate vascular health through its role in fatty acid-based signaling pathways.
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spelling pubmed-36076152013-03-27 Genetic and Structure-Function Studies of Missense Mutations in Human Endothelial Lipase Razzaghi, Hamid Tempczyk-Russell, Anna Haubold, Kurt Santorico, Stephanie A. Shokati, Touraj Christians, Uwe Churchill, Mair E. A. PLoS One Research Article Endothelial lipase (EL) plays a pivotal role in HDL metabolism. We sought to characterize EL and its interaction with HDL as well as its natural variants genetically, functionally and structurally. We screened our biethnic population sample (n = 802) for selected missense mutations (n = 5) and identified T111I as the only common variant. Multiple linear regression analyses in Hispanic subjects revealed an unexpected association between T111I and elevated LDL-C (p-value = 0.012) and total cholesterol (p-value = 0.004). We examined lipase activity of selected missense mutants (n = 10) and found different impacts on EL function, ranging from normal to complete loss of activity. EL-HDL lipidomic analyses indicated that EL has a defined remodeling of HDL without exhaustion of the substrate and a distinct and preference for several fatty acids that are lipid mediators and known for their potent pro- and anti-inflammatory properties. Structural studies using homology modeling revealed a novel α/β motif in the C-domain, unique to EL. The EL dimer was found to have the flexibility to expand and to bind various sizes of HDL particles. The likely impact of the all known missense mutations (n = 18) on the structure of EL was examined using molecular modeling and the impact they may have on EL lipase activity using a novel structure-function slope based on their structural free energy differences. The results of this multidisciplinary approach delineated the impact of EL and its variants on HDL. Moreover, the results suggested EL to have the capacity to modulate vascular health through its role in fatty acid-based signaling pathways. Public Library of Science 2013-03-25 /pmc/articles/PMC3607615/ /pubmed/23536757 http://dx.doi.org/10.1371/journal.pone.0055716 Text en © 2013 Razzaghi 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
Razzaghi, Hamid
Tempczyk-Russell, Anna
Haubold, Kurt
Santorico, Stephanie A.
Shokati, Touraj
Christians, Uwe
Churchill, Mair E. A.
Genetic and Structure-Function Studies of Missense Mutations in Human Endothelial Lipase
title Genetic and Structure-Function Studies of Missense Mutations in Human Endothelial Lipase
title_full Genetic and Structure-Function Studies of Missense Mutations in Human Endothelial Lipase
title_fullStr Genetic and Structure-Function Studies of Missense Mutations in Human Endothelial Lipase
title_full_unstemmed Genetic and Structure-Function Studies of Missense Mutations in Human Endothelial Lipase
title_short Genetic and Structure-Function Studies of Missense Mutations in Human Endothelial Lipase
title_sort genetic and structure-function studies of missense mutations in human endothelial lipase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3607615/
https://www.ncbi.nlm.nih.gov/pubmed/23536757
http://dx.doi.org/10.1371/journal.pone.0055716
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