Cargando…

Role of the Transcription Factor Sox4 in Insulin Secretion and Impaired Glucose Tolerance

OBJECTIVES— To identify, map, clone, and functionally validate a novel mouse model for impaired glucose tolerance and insulin secretion. RESEARCH DESIGN AND METHODS— Haploinsufficiency of the insulin receptor and associated mild insulin resistance has been used to sensitize an N-ethyl-N-nitrosourea...

Descripción completa

Detalles Bibliográficos
Autores principales: Goldsworthy, Michelle, Hugill, Alison, Freeman, Helen, Horner, Emma, Shimomura, Kenju, Bogani, Debora, Pieles, Guido, Mijat, Vesna, Arkell, Ruth, Bhattacharya, Shoumo, Ashcroft, Frances M., Cox, Roger D.
Formato: Texto
Lenguaje:English
Publicado: American Diabetes Association 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2494690/
https://www.ncbi.nlm.nih.gov/pubmed/18477811
http://dx.doi.org/10.2337/db07-0337
_version_ 1782158248979202048
author Goldsworthy, Michelle
Hugill, Alison
Freeman, Helen
Horner, Emma
Shimomura, Kenju
Bogani, Debora
Pieles, Guido
Mijat, Vesna
Arkell, Ruth
Bhattacharya, Shoumo
Ashcroft, Frances M.
Cox, Roger D.
author_facet Goldsworthy, Michelle
Hugill, Alison
Freeman, Helen
Horner, Emma
Shimomura, Kenju
Bogani, Debora
Pieles, Guido
Mijat, Vesna
Arkell, Ruth
Bhattacharya, Shoumo
Ashcroft, Frances M.
Cox, Roger D.
author_sort Goldsworthy, Michelle
collection PubMed
description OBJECTIVES— To identify, map, clone, and functionally validate a novel mouse model for impaired glucose tolerance and insulin secretion. RESEARCH DESIGN AND METHODS— Haploinsufficiency of the insulin receptor and associated mild insulin resistance has been used to sensitize an N-ethyl-N-nitrosourea (ENU) screen to identify novel mutations resulting in impaired glucose tolerance and diabetes. The new impaired glucose tolerance 4 (IGT4) model was selected using an intraperitoneal glucose tolerance test and inheritance of the phenotype confirmed by generation of backcross progeny. Segregation of the phenotype was correlated with genotype information to map the location of the gene and candidates sequenced for mutations. The function of the SRY-related high mobility group (HMG)-box 4 (Sox4) gene in insulin secretion was tested using another ENU allele and by small interfering RNA silencing in insulinoma cells. RESULTS— We describe two allelic autosomal dominant mutations in the highly conserved HMG box of the transcription factor Sox4. Previously associated with pancreas development, Sox4 mutations in the adult mouse result in an insulin secretory defect, which exhibits impaired glucose tolerance in association with insulin receptor(+/−)–induced insulin resistance. Elimination of the Sox4 transcript in INS1 and Min6 cells resulted in the abolition of glucose-stimulated insulin release similar to that observed for silencing of the key metabolic enzyme glucokinase. Intracellular calcium measurements in treated cells indicate that this defect lies downstream of the ATP-sensitive K(+) channel (K(ATP) channel) and calcium influx. CONCLUSIONS— IGT4 represents a novel digenic model of insulin resistance coupled with an insulin secretory defect. The Sox4 gene has a role in insulin secretion in the adult β-cell downstream of the K(ATP) channel.
format Text
id pubmed-2494690
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher American Diabetes Association
record_format MEDLINE/PubMed
spelling pubmed-24946902009-08-01 Role of the Transcription Factor Sox4 in Insulin Secretion and Impaired Glucose Tolerance Goldsworthy, Michelle Hugill, Alison Freeman, Helen Horner, Emma Shimomura, Kenju Bogani, Debora Pieles, Guido Mijat, Vesna Arkell, Ruth Bhattacharya, Shoumo Ashcroft, Frances M. Cox, Roger D. Diabetes Genetics OBJECTIVES— To identify, map, clone, and functionally validate a novel mouse model for impaired glucose tolerance and insulin secretion. RESEARCH DESIGN AND METHODS— Haploinsufficiency of the insulin receptor and associated mild insulin resistance has been used to sensitize an N-ethyl-N-nitrosourea (ENU) screen to identify novel mutations resulting in impaired glucose tolerance and diabetes. The new impaired glucose tolerance 4 (IGT4) model was selected using an intraperitoneal glucose tolerance test and inheritance of the phenotype confirmed by generation of backcross progeny. Segregation of the phenotype was correlated with genotype information to map the location of the gene and candidates sequenced for mutations. The function of the SRY-related high mobility group (HMG)-box 4 (Sox4) gene in insulin secretion was tested using another ENU allele and by small interfering RNA silencing in insulinoma cells. RESULTS— We describe two allelic autosomal dominant mutations in the highly conserved HMG box of the transcription factor Sox4. Previously associated with pancreas development, Sox4 mutations in the adult mouse result in an insulin secretory defect, which exhibits impaired glucose tolerance in association with insulin receptor(+/−)–induced insulin resistance. Elimination of the Sox4 transcript in INS1 and Min6 cells resulted in the abolition of glucose-stimulated insulin release similar to that observed for silencing of the key metabolic enzyme glucokinase. Intracellular calcium measurements in treated cells indicate that this defect lies downstream of the ATP-sensitive K(+) channel (K(ATP) channel) and calcium influx. CONCLUSIONS— IGT4 represents a novel digenic model of insulin resistance coupled with an insulin secretory defect. The Sox4 gene has a role in insulin secretion in the adult β-cell downstream of the K(ATP) channel. American Diabetes Association 2008-08 /pmc/articles/PMC2494690/ /pubmed/18477811 http://dx.doi.org/10.2337/db07-0337 Text en Copyright © 2008, American Diabetes Association Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Genetics
Goldsworthy, Michelle
Hugill, Alison
Freeman, Helen
Horner, Emma
Shimomura, Kenju
Bogani, Debora
Pieles, Guido
Mijat, Vesna
Arkell, Ruth
Bhattacharya, Shoumo
Ashcroft, Frances M.
Cox, Roger D.
Role of the Transcription Factor Sox4 in Insulin Secretion and Impaired Glucose Tolerance
title Role of the Transcription Factor Sox4 in Insulin Secretion and Impaired Glucose Tolerance
title_full Role of the Transcription Factor Sox4 in Insulin Secretion and Impaired Glucose Tolerance
title_fullStr Role of the Transcription Factor Sox4 in Insulin Secretion and Impaired Glucose Tolerance
title_full_unstemmed Role of the Transcription Factor Sox4 in Insulin Secretion and Impaired Glucose Tolerance
title_short Role of the Transcription Factor Sox4 in Insulin Secretion and Impaired Glucose Tolerance
title_sort role of the transcription factor sox4 in insulin secretion and impaired glucose tolerance
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2494690/
https://www.ncbi.nlm.nih.gov/pubmed/18477811
http://dx.doi.org/10.2337/db07-0337
work_keys_str_mv AT goldsworthymichelle roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance
AT hugillalison roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance
AT freemanhelen roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance
AT horneremma roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance
AT shimomurakenju roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance
AT boganidebora roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance
AT pielesguido roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance
AT mijatvesna roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance
AT arkellruth roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance
AT bhattacharyashoumo roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance
AT ashcroftfrancesm roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance
AT coxrogerd roleofthetranscriptionfactorsox4ininsulinsecretionandimpairedglucosetolerance