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Evidence for lifespan extension and delayed age–related biomarkers in insulin receptor substrate 1 null mice

Colin Selman, Steven J. Lingard, Agharul I. Choudhury, Rachel L. Batterham, Marc Claret, Melanie Clements, Faruk Ramadani, Klaus Okkenhaug, Eugene F. Schuster, Eric Blanc, Matthew D. W. Piper, Hind Al‐Qassab, John R. Speakman, Danielle Carmignac, Iain C. A. F. Robinson

The FASEB Journal · 2007 · ▲ 545 citations

Abstract

Recent evidence suggests that alterations in insulin/insulin–like growth factor 1 (IGF1) signaling (IIS) can increase mammalian life span. For example, in several mouse mutants, impairment of the growth hormone (GH)/IGF1 axis increases life span and also insulin sensitivity. However, the intracellular signaling route to altered mammalian aging remains unclear. We therefore measured the life span of mice lacking either insulin receptor substrate (IRS) 1 or 2, the major intracellular effectors of the IIS receptors. Our provisional results indicate that female Irs1 –/– mice are long–lived. Furthermore, they displayed resistance to a range of age–sensitive markers of aging including skin, bone, immune, and motor dysfunction. These improvements in health were seen despite mild, lifelong insulin resistance. Thus, enhanced insulin sensitivity is not a prerequisite for IIS mutant longevity. Irs1 –/– female mice also displayed normal anterior pituitary function, distinguishing them from long–lived somatotrophic axis mutants. In contrast, Irs2 –/– mice were short–lived, whereas Irs1 –/– and Irs2 +/– mice of both sexes showed normal life spans. Our results therefore suggest that IRS1 signaling is an evolutionarily conserved pathway regulating mammalian life span and may be a point of intervention for therapies with the potential to delay age–related processes.—Selman, C., Lingard, S., Choudhury, A. I., Batterham, A. L., Claret, M., Clements, M., Ramadani, F., Okkenhaug, K., Schuster, E., Blanc, E., Piper, M. D., Al‐Qassab, H., Speakman, J. R., Carmignac, D., Robinson, I. C. A., Thornton, J. M., Gems, D., Partridge, L., Withers, D. J. Evidence for lifespan extension and delayed age‐related biomarkers in insulin receptor substrate 1 null mice. FASEB J . 22, 807–818 (2008)

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OpenAlex
DOI
10.1096/fj.07-9261com
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2026-07-22 MST

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APA
Selman, C., Lingard, S.J., Choudhury, A.I., Batterham, R.L., Claret, M., Clements, M., Ramadani, F., Okkenhaug, K., Schuster, E.F., Blanc, E., Piper, M.D.W., Al‐Qassab, H., Speakman, J.R., Carmignac, D., Robinson, I.C.A.F., Thornton, J.M., Gems, D., Partridge, L., &amp; Withers, D.J. (2007). Evidence for lifespan extension and delayed age–related biomarkers in insulin receptor substrate 1 null mice. <em>The FASEB Journal</em>. https://doi.org/10.1096/fj.07-9261com
Vancouver
Selman C, Lingard SJ, Choudhury AI, Batterham RL, Claret M, Clements M, et al. Evidence for lifespan extension and delayed age–related biomarkers in insulin receptor substrate 1 null mice. The FASEB Journal. 2007. doi:10.1096/fj.07-9261com.
BibTeX
@article{colin2007Eviden, title = {Evidence for lifespan extension and delayed age–related biomarkers in insulin receptor substrate 1 null mice}, author = {Colin Selman and Steven J. Lingard and Agharul I. Choudhury and Rachel L. Batterham and Marc Claret and Melanie Clements and Faruk Ramadani and Klaus Okkenhaug and Eugene F. Schuster and Eric Blanc and Matthew D. W. Piper and Hind Al‐Qassab and John R. Speakman and Danielle Carmignac and Iain C. A. F. Robinson and Janet M. Thornton and David Gems and Linda Partridge and Dominic J. Withers}, journal = {The FASEB Journal}, year = {2007}, doi = {10.1096/fj.07-9261com}, }

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