Proteomics

Dataset Information

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Reduced circulating insulin enhances insulin sensitivity in old mice and extends lifespan


ABSTRACT: The causal relationships between insulin levels, insulin resistance, and longevity are not fully elucidated. Genetic down-regulation of insulin/insulin-like growth factor 1 (Igf1) signaling components can extend invertebrate and mammalian lifespan, but insulin resistance, a natural form of decreased insulin signaling, is associated with greater risk of age-related disease in mammals. We compared Ins2+/- mice to Ins2+/+ littermate controls, on a genetically stable Ins1-null background. Proteomic and transcriptomic analyses of livers from 25 week-old mice suggested potential for healthier aging and altered insulin sensitivity in Ins2+/- mice. Halving Ins2 lowered circulating insulin by 25-34% in aged female mice, without altering Igf1 or circulating Igf1. Remarkably, decreased insulin led to lower fasting glucose and improved insulin sensitivity in aged mice. Moreover, lowered insulin caused significant lifespan extension, observed across two diverse diets. Our study indicates that elevated insulin contributes to age-dependent insulin resistance, and that limiting basal insulin levels can extend lifespan.

OTHER RELATED OMICS DATASETS IN: PRJNA388462

INSTRUMENT(S): Bruker Daltonics instrument model

ORGANISM(S): Mus Musculus (mouse)

TISSUE(S): Liver

SUBMITTER: Jenny Moon  

LAB HEAD: Leonard J. Foster

PROVIDER: PXD006613 | Pride | 2017-07-07

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
Dimethyl_liver_050916txt.zip Other
JC_liver_G10_A10_01_4659.d.zip Other
JC_liver_G1_A1_01_4649.d.zip Other
JC_liver_G2_A2_01_4650.d.zip Other
JC_liver_G3_A3_01_4651.d.zip Other
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Publications

Reduced Circulating Insulin Enhances Insulin Sensitivity in Old Mice and Extends Lifespan.

Templeman Nicole M NM   Flibotte Stephane S   Chik Jenny H L JHL   Sinha Sunita S   Lim Gareth E GE   Foster Leonard J LJ   Nislow Corey C   Johnson James D JD  

Cell reports 20170701 2


The causal relationships between insulin levels, insulin resistance, and longevity are not fully elucidated. Genetic downregulation of insulin/insulin-like growth factor 1 (Igf1) signaling components can extend invertebrate and mammalian lifespan, but insulin resistance, a natural form of decreased insulin signaling, is associated with greater risk of age-related disease in mammals. We compared Ins2<sup>+/-</sup> mice to Ins2<sup>+/+</sup> littermate controls, on a genetically stable Ins1 null b  ...[more]

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