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Impairment of insulin signalling in peripheral tissue fails to extend murine lifespan

Troy L. Merry, Doreen Kuhlow, Beate Laube, Doris Pöhlmann, Andreas Pfeiffer, C. Ronald Kahn, Michael Ristow, Kim Zarse

Aging Cell · 2017 · ▲ 33 citations

Abstract

Summary Impaired insulin/ IGF 1 signalling has been shown to extend lifespan in model organisms ranging from yeast to mammals. Here we sought to determine the effect of targeted disruption of the insulin receptor ( IR ) in non‐neuronal tissues of adult mice on the lifespan. We induced hemizygous (Per IRKO +/− ) or homozygous (Per IRKO −/− ) disruption of the IR in peripheral tissue of 15‐weeks‐old mice using a tamoxifen‐inducible Cre transgenic mouse with only peripheral tissue expression, and subsequently monitored glucose metabolism, insulin signalling and spontaneous death rates over 4 years. Complete peripheral IR disruption resulted in a diabetic phenotype with increased blood glucose and plasma insulin levels in young mice. Although blood glucose levels returned to normal, and fat mass was reduced in aged Per IRKO −/− mice, their lifespan was reduced. By contrast, heterozygous disruption had no effect on lifespan. This was despite young male Per IRKO +/− mice showing reduced fat mass and mild increase in hepatic insulin sensitivity. In conflict with findings in metazoans like Caenorhabditis elegans and Drosophila melanogaster , our results suggest that heterozygous impairment of the insulin signalling limited to peripheral tissues of adult mice fails to extend lifespan despite increased systemic insulin sensitivity, while homozygous impairment shortens lifespan.

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Provenance

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OpenAlex
DOI
10.1111/acel.12610
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2026-07-07 MST

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APA
Merry, T.L., Kuhlow, D., Laube, B., Pöhlmann, D., Pfeiffer, A., Kahn, C.R., Ristow, M., &amp; Zarse, K. (2017). Impairment of insulin signalling in peripheral tissue fails to extend murine lifespan. <em>Aging Cell</em>. https://doi.org/10.1111/acel.12610
Vancouver
Merry TL, Kuhlow D, Laube B, Pöhlmann D, Pfeiffer A, Kahn CR, et al. Impairment of insulin signalling in peripheral tissue fails to extend murine lifespan. Aging Cell. 2017. doi:10.1111/acel.12610.
BibTeX
@article{troy2017Impair, title = {Impairment of insulin signalling in peripheral tissue fails to extend murine lifespan}, author = {Troy L. Merry and Doreen Kuhlow and Beate Laube and Doris Pöhlmann and Andreas Pfeiffer and C. Ronald Kahn and Michael Ristow and Kim Zarse}, journal = {Aging Cell}, year = {2017}, doi = {10.1111/acel.12610}, }

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