Decreased basal chloride secretion and altered cystic fibrosis transmembrane conductance regulatory protein, Villin, GLUT5 protein expression in jejunum from leptin-deficient mice

Lana Leung, Jonathan Kang, Esa Rayyan, Ashesh Bhakta, Brennan Barrett, David Larsen, Ryan Jelinek, Justin Willey, Scott Cochran, Tom L Broderick, Layla Al-NakkashDepartment of Physiology, Arizona College of Osteopathic Medicine, Midwestern University, Glendale, AZ, USAAbstract: Patients with diabet...

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Main Authors: Leung L, Kang J, Rayyan E, Bhakta A, Barrett B, Larsen D, Jelinek R, Willey J, Cochran S, Broderick TL, Al-Nakkash L
Format: Article
Language:English
Published: Dove Medical Press 2014-07-01
Series:Diabetes, Metabolic Syndrome and Obesity : Targets and Therapy
Online Access:http://www.dovepress.com/decreased-basal-chloride-secretion-and-altered-cystic-fibrosis-transme-peer-reviewed-article-DMSO
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spelling doaj-db2b9a13f70b4441a71b81109df5ae022020-11-25T01:04:18ZengDove Medical PressDiabetes, Metabolic Syndrome and Obesity : Targets and Therapy1178-70072014-07-012014default32133017678Decreased basal chloride secretion and altered cystic fibrosis transmembrane conductance regulatory protein, Villin, GLUT5 protein expression in jejunum from leptin-deficient miceLeung LKang JRayyan EBhakta ABarrett BLarsen DJelinek RWilley JCochran SBroderick TLAl-Nakkash L Lana Leung, Jonathan Kang, Esa Rayyan, Ashesh Bhakta, Brennan Barrett, David Larsen, Ryan Jelinek, Justin Willey, Scott Cochran, Tom L Broderick, Layla Al-NakkashDepartment of Physiology, Arizona College of Osteopathic Medicine, Midwestern University, Glendale, AZ, USAAbstract: Patients with diabetes and obesity are at increased risk of developing disturbances in intestinal function. In this study, we characterized jejunal function in the clinically relevant leptin-deficient ob/ob mouse, a model of diabetes and obesity. We measured transepithelial short circuit current (Isc), across freshly isolated segments of jejunum from 12-week-old ob/ob and lean C57BL/6J (female and male) mice. The basal Isc was significantly decreased (~30%) in the ob/ob mice (66.5±5.7 µA/cm2 [n=20]) (P< 0.05) compared with their lean counterparts (95.1±9.1 µA/cm2 [n=19]). Inhibition with clotrimazole (100 µM, applied bilaterally) was significantly reduced in the ob/ob mice (−7.92%±3.67% [n=15]) (P<0.05) compared with the lean mice (10.44%±7.92% [n=15]), indicating a decreased contribution of Ca2+-activated K+ (KCa) channels in the ob/ob mice. Inhibition with ouabain (100 µM, applied serosally) was significantly reduced in the ob/ob mice (1.40%±3.61%, n=13) (P< 0.05) versus the lean mice (18.93%±3.76% [n=18]), suggesting a potential defect in the Na+/K+-adenosine triphosphate (ATP)ase pump with leptin-deficiency. Expression of cystic fibrosis transmembrane conductance regulatory protein (CFTR) (normalized to glyceraldehyde-3-phosphate dehydrogenase [GAPDH]) was significantly decreased ~twofold (P<0.05) in the ob/ob mice compared with the leans, whilst crypt depth was unchanged. Villi length was significantly increased by ~25% (P<0.05) in the ob/ob mice compared with the leans and was associated with an increase in Villin and GLUT5 expression. GLUT2 and SGLT-1 expression were both unchanged. Our data suggests that reduced basal jejunal Isc in ob/ob mice is likely a consequence of reduced CFTR expression and decreased activity of the basolateral KCa channel and Na+/K+-ATPase. Understanding intestinal dysfunctions in ob/ob jejunum may allow for the development of novel drug targets to treat obesity and diabetes.Keywords: intestinal secretion, transport, ob/ob, obese, diabetes, small intestinehttp://www.dovepress.com/decreased-basal-chloride-secretion-and-altered-cystic-fibrosis-transme-peer-reviewed-article-DMSO
collection DOAJ
language English
format Article
sources DOAJ
author Leung L
Kang J
Rayyan E
Bhakta A
Barrett B
Larsen D
Jelinek R
Willey J
Cochran S
Broderick TL
Al-Nakkash L
spellingShingle Leung L
Kang J
Rayyan E
Bhakta A
Barrett B
Larsen D
Jelinek R
Willey J
Cochran S
Broderick TL
Al-Nakkash L
Decreased basal chloride secretion and altered cystic fibrosis transmembrane conductance regulatory protein, Villin, GLUT5 protein expression in jejunum from leptin-deficient mice
Diabetes, Metabolic Syndrome and Obesity : Targets and Therapy
author_facet Leung L
Kang J
Rayyan E
Bhakta A
Barrett B
Larsen D
Jelinek R
Willey J
Cochran S
Broderick TL
Al-Nakkash L
author_sort Leung L
title Decreased basal chloride secretion and altered cystic fibrosis transmembrane conductance regulatory protein, Villin, GLUT5 protein expression in jejunum from leptin-deficient mice
title_short Decreased basal chloride secretion and altered cystic fibrosis transmembrane conductance regulatory protein, Villin, GLUT5 protein expression in jejunum from leptin-deficient mice
title_full Decreased basal chloride secretion and altered cystic fibrosis transmembrane conductance regulatory protein, Villin, GLUT5 protein expression in jejunum from leptin-deficient mice
title_fullStr Decreased basal chloride secretion and altered cystic fibrosis transmembrane conductance regulatory protein, Villin, GLUT5 protein expression in jejunum from leptin-deficient mice
title_full_unstemmed Decreased basal chloride secretion and altered cystic fibrosis transmembrane conductance regulatory protein, Villin, GLUT5 protein expression in jejunum from leptin-deficient mice
title_sort decreased basal chloride secretion and altered cystic fibrosis transmembrane conductance regulatory protein, villin, glut5 protein expression in jejunum from leptin-deficient mice
publisher Dove Medical Press
series Diabetes, Metabolic Syndrome and Obesity : Targets and Therapy
issn 1178-7007
publishDate 2014-07-01
description Lana Leung, Jonathan Kang, Esa Rayyan, Ashesh Bhakta, Brennan Barrett, David Larsen, Ryan Jelinek, Justin Willey, Scott Cochran, Tom L Broderick, Layla Al-NakkashDepartment of Physiology, Arizona College of Osteopathic Medicine, Midwestern University, Glendale, AZ, USAAbstract: Patients with diabetes and obesity are at increased risk of developing disturbances in intestinal function. In this study, we characterized jejunal function in the clinically relevant leptin-deficient ob/ob mouse, a model of diabetes and obesity. We measured transepithelial short circuit current (Isc), across freshly isolated segments of jejunum from 12-week-old ob/ob and lean C57BL/6J (female and male) mice. The basal Isc was significantly decreased (~30%) in the ob/ob mice (66.5±5.7 µA/cm2 [n=20]) (P< 0.05) compared with their lean counterparts (95.1±9.1 µA/cm2 [n=19]). Inhibition with clotrimazole (100 µM, applied bilaterally) was significantly reduced in the ob/ob mice (−7.92%±3.67% [n=15]) (P<0.05) compared with the lean mice (10.44%±7.92% [n=15]), indicating a decreased contribution of Ca2+-activated K+ (KCa) channels in the ob/ob mice. Inhibition with ouabain (100 µM, applied serosally) was significantly reduced in the ob/ob mice (1.40%±3.61%, n=13) (P< 0.05) versus the lean mice (18.93%±3.76% [n=18]), suggesting a potential defect in the Na+/K+-adenosine triphosphate (ATP)ase pump with leptin-deficiency. Expression of cystic fibrosis transmembrane conductance regulatory protein (CFTR) (normalized to glyceraldehyde-3-phosphate dehydrogenase [GAPDH]) was significantly decreased ~twofold (P<0.05) in the ob/ob mice compared with the leans, whilst crypt depth was unchanged. Villi length was significantly increased by ~25% (P<0.05) in the ob/ob mice compared with the leans and was associated with an increase in Villin and GLUT5 expression. GLUT2 and SGLT-1 expression were both unchanged. Our data suggests that reduced basal jejunal Isc in ob/ob mice is likely a consequence of reduced CFTR expression and decreased activity of the basolateral KCa channel and Na+/K+-ATPase. Understanding intestinal dysfunctions in ob/ob jejunum may allow for the development of novel drug targets to treat obesity and diabetes.Keywords: intestinal secretion, transport, ob/ob, obese, diabetes, small intestine
url http://www.dovepress.com/decreased-basal-chloride-secretion-and-altered-cystic-fibrosis-transme-peer-reviewed-article-DMSO
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