E4orf1 Enhances Glucose Uptake Independent of Proximal Insulin Signaling.

Impaired proximal insulin signaling is often present in diabetes. Hence, approaches to enhance glucose disposal independent of proximal insulin signaling are desirable. Evidence indicates that Adenovirus-derived E4orf1 protein may offer such an approach. This study determined if E4orf1 improves insu...

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Main Authors: Ha-Na Na, Vijay Hegde, Olga Dubuisson, Nikhil V Dhurandhar
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4990264?pdf=render
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spelling doaj-7fa232b38d054860b36bb615c3d11acd2020-11-25T01:14:51ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01118e016127510.1371/journal.pone.0161275E4orf1 Enhances Glucose Uptake Independent of Proximal Insulin Signaling.Ha-Na NaVijay HegdeOlga DubuissonNikhil V DhurandharImpaired proximal insulin signaling is often present in diabetes. Hence, approaches to enhance glucose disposal independent of proximal insulin signaling are desirable. Evidence indicates that Adenovirus-derived E4orf1 protein may offer such an approach. This study determined if E4orf1 improves insulin sensitivity and downregulates proximal insulin signaling in vivo and enhances cellular glucose uptake independent of proximal insulin signaling in vitro. High fat fed mice were injected with a retrovirus plasmid expressing E4orf1, or a null vector. E4orf1 significantly improved insulin sensitivity in response to a glucose load. Yet, their proximal insulin signaling in fat depots was impaired, as indicated by reduced tyrosine phosphorylation of insulin receptor (IR), and significantly increased abundance of ectonucleotide pyrophosphatase/phosphodiesterase-1 (ENPP1). In 3T3-L1 pre-adipocytes E4orf1 expression impaired proximal insulin signaling. Whereas, treatment with rosiglitazone reduced ENPP1 abundance. Unaffected by IR-KD (insulin receptor knockdown) with siRNA, E4orf1 significantly up-regulated distal insulin signaling pathway and enhanced cellular glucose uptake. In vivo, E4orf1 impairs proximal insulin signaling in fat depots yet improves glycemic control. This is probably explained by the ability of E4orf1 to promote cellular glucose uptake independent of proximal insulin signaling. E4orf1 may provide a therapeutic template to enhance glucose disposal in the presence of impaired proximal insulin signaling.http://europepmc.org/articles/PMC4990264?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ha-Na Na
Vijay Hegde
Olga Dubuisson
Nikhil V Dhurandhar
spellingShingle Ha-Na Na
Vijay Hegde
Olga Dubuisson
Nikhil V Dhurandhar
E4orf1 Enhances Glucose Uptake Independent of Proximal Insulin Signaling.
PLoS ONE
author_facet Ha-Na Na
Vijay Hegde
Olga Dubuisson
Nikhil V Dhurandhar
author_sort Ha-Na Na
title E4orf1 Enhances Glucose Uptake Independent of Proximal Insulin Signaling.
title_short E4orf1 Enhances Glucose Uptake Independent of Proximal Insulin Signaling.
title_full E4orf1 Enhances Glucose Uptake Independent of Proximal Insulin Signaling.
title_fullStr E4orf1 Enhances Glucose Uptake Independent of Proximal Insulin Signaling.
title_full_unstemmed E4orf1 Enhances Glucose Uptake Independent of Proximal Insulin Signaling.
title_sort e4orf1 enhances glucose uptake independent of proximal insulin signaling.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description Impaired proximal insulin signaling is often present in diabetes. Hence, approaches to enhance glucose disposal independent of proximal insulin signaling are desirable. Evidence indicates that Adenovirus-derived E4orf1 protein may offer such an approach. This study determined if E4orf1 improves insulin sensitivity and downregulates proximal insulin signaling in vivo and enhances cellular glucose uptake independent of proximal insulin signaling in vitro. High fat fed mice were injected with a retrovirus plasmid expressing E4orf1, or a null vector. E4orf1 significantly improved insulin sensitivity in response to a glucose load. Yet, their proximal insulin signaling in fat depots was impaired, as indicated by reduced tyrosine phosphorylation of insulin receptor (IR), and significantly increased abundance of ectonucleotide pyrophosphatase/phosphodiesterase-1 (ENPP1). In 3T3-L1 pre-adipocytes E4orf1 expression impaired proximal insulin signaling. Whereas, treatment with rosiglitazone reduced ENPP1 abundance. Unaffected by IR-KD (insulin receptor knockdown) with siRNA, E4orf1 significantly up-regulated distal insulin signaling pathway and enhanced cellular glucose uptake. In vivo, E4orf1 impairs proximal insulin signaling in fat depots yet improves glycemic control. This is probably explained by the ability of E4orf1 to promote cellular glucose uptake independent of proximal insulin signaling. E4orf1 may provide a therapeutic template to enhance glucose disposal in the presence of impaired proximal insulin signaling.
url http://europepmc.org/articles/PMC4990264?pdf=render
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