Decreased GPIHBP1 protein levels in visceral adipose tissue partly underlie the hypertriglyceridemic phenotype in insulin resistance.

GPIHBP1 is a protein localized at the endothelial cell surface that facilitates triglyceride (TG) lipolysis by binding lipoprotein lipase (LPL). Whether Glycosyl Phosphatidyl Inositol high density lipoprotein binding protein 1 (GPIHBP1) function is impaired and may underlie the hyperTG phenotype obs...

Full description

Bibliographic Details
Main Authors: R Preethi Surendran, Shanti D Udayyapan, Mercedes Clemente-Postigo, Stefan R Havik, Alinda W M Schimmel, Fransisco Tinahones, Max Nieuwdorp, Geesje M Dallinga-Thie
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC6224034?pdf=render
id doaj-cc63b146c6084a3396df03125c01ce75
record_format Article
spelling doaj-cc63b146c6084a3396df03125c01ce752020-11-25T01:19:59ZengPublic Library of Science (PLoS)PLoS ONE1932-62032018-01-011311e020585810.1371/journal.pone.0205858Decreased GPIHBP1 protein levels in visceral adipose tissue partly underlie the hypertriglyceridemic phenotype in insulin resistance.R Preethi SurendranShanti D UdayyapanMercedes Clemente-PostigoStefan R HavikAlinda W M SchimmelFransisco TinahonesMax NieuwdorpGeesje M Dallinga-ThieGPIHBP1 is a protein localized at the endothelial cell surface that facilitates triglyceride (TG) lipolysis by binding lipoprotein lipase (LPL). Whether Glycosyl Phosphatidyl Inositol high density lipoprotein binding protein 1 (GPIHBP1) function is impaired and may underlie the hyperTG phenotype observed in type 2 diabetes is not yet established. To elucidate the mechanism underlying impaired TG homeostasis in insulin resistance state we studied the effect of insulin on GPIHBP1 protein expression in human microvascular endothelial cells (HMVEC) under flow conditions. Next, we assessed visceral adipose tissue GPIHBP1 protein expression in type 2 diabetes Lepr db/db mouse model as well as in subjects with ranging levels of insulin resistance. We report that insulin reduces the expression of GPIHBP1 protein in HMVECs. Furthermore, GPIHBP1 protein expression in visceral adipose tissue in Lepr db/db mice is significantly reduced as is the active monomeric form of GPIHBP1 as compared to Leprdb/m mice. A similar decrease in GPIHBP1 protein was observed in subjects with increased body weight. GPIHBP1 protein expression was negatively associated with insulin and HOMA-IR. In conclusion, our data suggest that decreased GPIHBP1 availability in insulin resistant state may hamper peripheral lipolysis capacity.http://europepmc.org/articles/PMC6224034?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author R Preethi Surendran
Shanti D Udayyapan
Mercedes Clemente-Postigo
Stefan R Havik
Alinda W M Schimmel
Fransisco Tinahones
Max Nieuwdorp
Geesje M Dallinga-Thie
spellingShingle R Preethi Surendran
Shanti D Udayyapan
Mercedes Clemente-Postigo
Stefan R Havik
Alinda W M Schimmel
Fransisco Tinahones
Max Nieuwdorp
Geesje M Dallinga-Thie
Decreased GPIHBP1 protein levels in visceral adipose tissue partly underlie the hypertriglyceridemic phenotype in insulin resistance.
PLoS ONE
author_facet R Preethi Surendran
Shanti D Udayyapan
Mercedes Clemente-Postigo
Stefan R Havik
Alinda W M Schimmel
Fransisco Tinahones
Max Nieuwdorp
Geesje M Dallinga-Thie
author_sort R Preethi Surendran
title Decreased GPIHBP1 protein levels in visceral adipose tissue partly underlie the hypertriglyceridemic phenotype in insulin resistance.
title_short Decreased GPIHBP1 protein levels in visceral adipose tissue partly underlie the hypertriglyceridemic phenotype in insulin resistance.
title_full Decreased GPIHBP1 protein levels in visceral adipose tissue partly underlie the hypertriglyceridemic phenotype in insulin resistance.
title_fullStr Decreased GPIHBP1 protein levels in visceral adipose tissue partly underlie the hypertriglyceridemic phenotype in insulin resistance.
title_full_unstemmed Decreased GPIHBP1 protein levels in visceral adipose tissue partly underlie the hypertriglyceridemic phenotype in insulin resistance.
title_sort decreased gpihbp1 protein levels in visceral adipose tissue partly underlie the hypertriglyceridemic phenotype in insulin resistance.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2018-01-01
description GPIHBP1 is a protein localized at the endothelial cell surface that facilitates triglyceride (TG) lipolysis by binding lipoprotein lipase (LPL). Whether Glycosyl Phosphatidyl Inositol high density lipoprotein binding protein 1 (GPIHBP1) function is impaired and may underlie the hyperTG phenotype observed in type 2 diabetes is not yet established. To elucidate the mechanism underlying impaired TG homeostasis in insulin resistance state we studied the effect of insulin on GPIHBP1 protein expression in human microvascular endothelial cells (HMVEC) under flow conditions. Next, we assessed visceral adipose tissue GPIHBP1 protein expression in type 2 diabetes Lepr db/db mouse model as well as in subjects with ranging levels of insulin resistance. We report that insulin reduces the expression of GPIHBP1 protein in HMVECs. Furthermore, GPIHBP1 protein expression in visceral adipose tissue in Lepr db/db mice is significantly reduced as is the active monomeric form of GPIHBP1 as compared to Leprdb/m mice. A similar decrease in GPIHBP1 protein was observed in subjects with increased body weight. GPIHBP1 protein expression was negatively associated with insulin and HOMA-IR. In conclusion, our data suggest that decreased GPIHBP1 availability in insulin resistant state may hamper peripheral lipolysis capacity.
url http://europepmc.org/articles/PMC6224034?pdf=render
work_keys_str_mv AT rpreethisurendran decreasedgpihbp1proteinlevelsinvisceraladiposetissuepartlyunderliethehypertriglyceridemicphenotypeininsulinresistance
AT shantidudayyapan decreasedgpihbp1proteinlevelsinvisceraladiposetissuepartlyunderliethehypertriglyceridemicphenotypeininsulinresistance
AT mercedesclementepostigo decreasedgpihbp1proteinlevelsinvisceraladiposetissuepartlyunderliethehypertriglyceridemicphenotypeininsulinresistance
AT stefanrhavik decreasedgpihbp1proteinlevelsinvisceraladiposetissuepartlyunderliethehypertriglyceridemicphenotypeininsulinresistance
AT alindawmschimmel decreasedgpihbp1proteinlevelsinvisceraladiposetissuepartlyunderliethehypertriglyceridemicphenotypeininsulinresistance
AT fransiscotinahones decreasedgpihbp1proteinlevelsinvisceraladiposetissuepartlyunderliethehypertriglyceridemicphenotypeininsulinresistance
AT maxnieuwdorp decreasedgpihbp1proteinlevelsinvisceraladiposetissuepartlyunderliethehypertriglyceridemicphenotypeininsulinresistance
AT geesjemdallingathie decreasedgpihbp1proteinlevelsinvisceraladiposetissuepartlyunderliethehypertriglyceridemicphenotypeininsulinresistance
_version_ 1725136104409006080