Insulin receptor substrate 2 is required for testicular development.

Insulin receptor substrate (IRS) proteins are key mediators of insulin and insulin-like growth factor (IGF) signalling. In mice, deletion of Irs1 is associated with profound growth retardation and increased longevity whereas Irs2-deficiency causes diabetes and female infertility. Clinical studies su...

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Main Authors: Richard J Griffeth, Jose Carretero, Deborah J Burks
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3669358?pdf=render
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author Richard J Griffeth
Jose Carretero
Deborah J Burks
author_facet Richard J Griffeth
Jose Carretero
Deborah J Burks
author_sort Richard J Griffeth
collection DOAJ
description Insulin receptor substrate (IRS) proteins are key mediators of insulin and insulin-like growth factor (IGF) signalling. In mice, deletion of Irs1 is associated with profound growth retardation and increased longevity whereas Irs2-deficiency causes diabetes and female infertility. Clinical studies suggest that diabetes and obesity diminish male fertility. However, the role of IRS proteins in male reproduction is unknown. We observed that testis weight is reduced by 45% in Irs2-deficient mice as compared with control males. The weight of these organs in Irs1(-/-) males was similar to controls; however, since Irs1-deficient mice are 50% smaller, testis weight:body weight was increased in this model. Neonatal Irs2(-/-) mice also exhibited reduced testicular size, suggesting that impairments in this model occur during development. Histological examination of testicular cross sections from Irs2(-/-) mice revealed normal cellular associations without obvious abnormalities in the seminiferous epithelium. Reduced testicular weight was associated with fewer Sertoli cells, spermatogonia, spermatocytes, elongated spermatids, and epididymal spermatozoa. However, Leydig cell number and the concentration of serum testosterone were equivalent between Irs2-deficient and control males. Testicular weight was reduced similarly in non-diabetic and diabetic Irs2(-/-) mice, indicating that hyperglycemia does not compound the effects of Irs2 deletion on impaired testis development. Expression of Irs1, Irs3, and Irs4 was comparable between experimental groups. Collectively, our results demonstrate that IRS2 plays a critical role in testicular development, potentially by mediating IGF1 signalling during embryonic and early postnatal development.
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spelling doaj.art-7d651c4c49c64b8f8fba2642b25516e42022-12-22T01:42:58ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0185e6210310.1371/journal.pone.0062103Insulin receptor substrate 2 is required for testicular development.Richard J GriffethJose CarreteroDeborah J BurksInsulin receptor substrate (IRS) proteins are key mediators of insulin and insulin-like growth factor (IGF) signalling. In mice, deletion of Irs1 is associated with profound growth retardation and increased longevity whereas Irs2-deficiency causes diabetes and female infertility. Clinical studies suggest that diabetes and obesity diminish male fertility. However, the role of IRS proteins in male reproduction is unknown. We observed that testis weight is reduced by 45% in Irs2-deficient mice as compared with control males. The weight of these organs in Irs1(-/-) males was similar to controls; however, since Irs1-deficient mice are 50% smaller, testis weight:body weight was increased in this model. Neonatal Irs2(-/-) mice also exhibited reduced testicular size, suggesting that impairments in this model occur during development. Histological examination of testicular cross sections from Irs2(-/-) mice revealed normal cellular associations without obvious abnormalities in the seminiferous epithelium. Reduced testicular weight was associated with fewer Sertoli cells, spermatogonia, spermatocytes, elongated spermatids, and epididymal spermatozoa. However, Leydig cell number and the concentration of serum testosterone were equivalent between Irs2-deficient and control males. Testicular weight was reduced similarly in non-diabetic and diabetic Irs2(-/-) mice, indicating that hyperglycemia does not compound the effects of Irs2 deletion on impaired testis development. Expression of Irs1, Irs3, and Irs4 was comparable between experimental groups. Collectively, our results demonstrate that IRS2 plays a critical role in testicular development, potentially by mediating IGF1 signalling during embryonic and early postnatal development.http://europepmc.org/articles/PMC3669358?pdf=render
spellingShingle Richard J Griffeth
Jose Carretero
Deborah J Burks
Insulin receptor substrate 2 is required for testicular development.
PLoS ONE
title Insulin receptor substrate 2 is required for testicular development.
title_full Insulin receptor substrate 2 is required for testicular development.
title_fullStr Insulin receptor substrate 2 is required for testicular development.
title_full_unstemmed Insulin receptor substrate 2 is required for testicular development.
title_short Insulin receptor substrate 2 is required for testicular development.
title_sort insulin receptor substrate 2 is required for testicular development
url http://europepmc.org/articles/PMC3669358?pdf=render
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AT deborahjburks insulinreceptorsubstrate2isrequiredfortesticulardevelopment