Expression of Serum Retinol Binding Protein and Transthyretin within Mouse Gastric Ghrelin Cells.

Ghrelin is an orexigenic peptide hormone produced mainly by a distinct group of dispersed endocrine cells located within the gastric oxyntic mucosa. Besides secreted gene products derived from the preproghrelin gene, which include acyl-ghrelin, desacyl-ghrelin and obestatin, ghrelin cells also synth...

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Main Authors: Angela K Walker, Zhi Gong, Won-Mee Park, Jeffrey M Zigman, Ichiro Sakata
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3686803?pdf=render
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spelling doaj-e8f85e95025e4b30910fd0915903dfa12020-11-25T01:47:54ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0186e6488210.1371/journal.pone.0064882Expression of Serum Retinol Binding Protein and Transthyretin within Mouse Gastric Ghrelin Cells.Angela K WalkerZhi GongWon-Mee ParkJeffrey M ZigmanIchiro SakataGhrelin is an orexigenic peptide hormone produced mainly by a distinct group of dispersed endocrine cells located within the gastric oxyntic mucosa. Besides secreted gene products derived from the preproghrelin gene, which include acyl-ghrelin, desacyl-ghrelin and obestatin, ghrelin cells also synthesize the secreted protein nesfatin-1. The main goal of the current study was to identify other proteins secreted from ghrelin cells. An initial gene chip screen using mRNAs derived from highly enriched pools of mouse gastric ghrelin cells demonstrated high levels of serum retinol-binding protein (RBP4) and transthyretin (TTR), both of which are known to circulate in the bloodstream bound to each other. This high expression was confirmed by quantitative RT-PCR using as template mRNA derived from the enriched gastric ghrelin cell pools and from two ghrelin-producing cell lines (SG-1 and PG-1). RBP4 protein also was shown to be secreted into the culture medium of ghrelin cell lines. Neither acute nor chronic caloric restriction had a significant effect on RBP4 mRNA levels within stomachs of C57BL/6J mice, although both manipulations significantly decreased stomach TTR mRNA levels. In vitro studies using PG-1 cells showed no effect on RBP4 release of octanoic acid, epinephrine or norepinephrine, all of which are known to act directly on ghrelin cells to stimulate ghrelin secretion. These data provide new insights into ghrelin cell physiology, and given the known functions of RBP4 and TTR, support an emerging role for the ghrelin cell in blood glucose handling and metabolism.http://europepmc.org/articles/PMC3686803?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Angela K Walker
Zhi Gong
Won-Mee Park
Jeffrey M Zigman
Ichiro Sakata
spellingShingle Angela K Walker
Zhi Gong
Won-Mee Park
Jeffrey M Zigman
Ichiro Sakata
Expression of Serum Retinol Binding Protein and Transthyretin within Mouse Gastric Ghrelin Cells.
PLoS ONE
author_facet Angela K Walker
Zhi Gong
Won-Mee Park
Jeffrey M Zigman
Ichiro Sakata
author_sort Angela K Walker
title Expression of Serum Retinol Binding Protein and Transthyretin within Mouse Gastric Ghrelin Cells.
title_short Expression of Serum Retinol Binding Protein and Transthyretin within Mouse Gastric Ghrelin Cells.
title_full Expression of Serum Retinol Binding Protein and Transthyretin within Mouse Gastric Ghrelin Cells.
title_fullStr Expression of Serum Retinol Binding Protein and Transthyretin within Mouse Gastric Ghrelin Cells.
title_full_unstemmed Expression of Serum Retinol Binding Protein and Transthyretin within Mouse Gastric Ghrelin Cells.
title_sort expression of serum retinol binding protein and transthyretin within mouse gastric ghrelin cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Ghrelin is an orexigenic peptide hormone produced mainly by a distinct group of dispersed endocrine cells located within the gastric oxyntic mucosa. Besides secreted gene products derived from the preproghrelin gene, which include acyl-ghrelin, desacyl-ghrelin and obestatin, ghrelin cells also synthesize the secreted protein nesfatin-1. The main goal of the current study was to identify other proteins secreted from ghrelin cells. An initial gene chip screen using mRNAs derived from highly enriched pools of mouse gastric ghrelin cells demonstrated high levels of serum retinol-binding protein (RBP4) and transthyretin (TTR), both of which are known to circulate in the bloodstream bound to each other. This high expression was confirmed by quantitative RT-PCR using as template mRNA derived from the enriched gastric ghrelin cell pools and from two ghrelin-producing cell lines (SG-1 and PG-1). RBP4 protein also was shown to be secreted into the culture medium of ghrelin cell lines. Neither acute nor chronic caloric restriction had a significant effect on RBP4 mRNA levels within stomachs of C57BL/6J mice, although both manipulations significantly decreased stomach TTR mRNA levels. In vitro studies using PG-1 cells showed no effect on RBP4 release of octanoic acid, epinephrine or norepinephrine, all of which are known to act directly on ghrelin cells to stimulate ghrelin secretion. These data provide new insights into ghrelin cell physiology, and given the known functions of RBP4 and TTR, support an emerging role for the ghrelin cell in blood glucose handling and metabolism.
url http://europepmc.org/articles/PMC3686803?pdf=render
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