microRNA-449a reduces growth hormone-stimulated senescent cell burden through PI3K-mTOR signaling

Author:

Noureddine Sarah1ORCID,Nie Jia2ORCID,Schneider Augusto3ORCID,Menon Vinal4,Fliesen Zoubeida5,Dhahbi Joseph5,Victoria Berta1ORCID,Oyer Jeremiah1,Robles-Carrillo Liza1,Nunes Allancer Divino De Carvalho14,Ashiqueali Sarah1,Janusz Artur16,Copik Alicja1,Robbins Paul D.4,Musi Nicolas278,Masternak Michal M.19

Affiliation:

1. Burnett School of Biomedical Sciences, College of Medicine, University of Central Florida, Orlando, FL 32827

2. Sam and Ann Barshop Insititute for Longevity and Aging Studies, University of Texas Health Science Center at San Antonio, San Antonio, TX 78229

3. Faculdade de Nutrição, Universidade Federal de Pelotas, 96010-610 Pelotas, Brazil

4. Institute on the Biology of Aging and Metabolism, Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, MN 55455

5. Department of Medical Education, School of Medicine, California University of Science & Medicine, Colton, CA 92324

6. Celon Pharma Innovative Drugs Research & Development Department, Celon Pharma S.A., 05-152 Kazun Nowy, Poland

7. San Antonio Geriatric Research Education and Clinical Center (GRECC), South Texas Veterans Health Care System, San Antonio, TX 78229

8. Department of Medicine, Cedars Sinai Medical Center, LA 90048

9. Department of Head and Neck Surgery, Poznan University of Medical Sciences, 60-355 Poznan, Poland

Abstract

Cellular senescence, a hallmark of aging, has been implicated in the pathogenesis of many major age-related disorders, including neurodegeneration, atherosclerosis, and metabolic disease. Therefore, investigating novel methods to reduce or delay the accumulation of senescent cells during aging may attenuate age-related pathologies. microRNA-449a-5p (miR-449a) is a small, noncoding RNA down-regulated with age in normal mice but maintained in long-living growth hormone (GH)-deficient Ames Dwarf (df/df) mice. We found increased fibroadipogenic precursor cells, adipose-derived stem cells, and miR-449a levels in visceral adipose tissue of long-living df/df mice. Gene target analysis and our functional study with miR-449a-5p have revealed its potential as a serotherapeutic. Here, we test the hypothesis that miR-449a reduces cellular senescence by targeting senescence-associated genes induced in response to strong mitogenic signals and other damaging stimuli. We demonstrated that GH downregulates miR-449a expression and accelerates senescence while miR-449a upregulation using mimetics reduces senescence, primarily through targeted reduction of p16 Ink4a , p21 Cip1 , and the PI3K-mTOR signaling pathway. Our results demonstrate that miR-449a is important in modulating key signaling pathways that control cellular senescence and the progression of age-related pathologies.

Funder

HHS | National Institutes of Health

HHS | NIH | National Institute of Diabetes and Digestive and Kidney Diseases

HHS | NIH | National Institute on Aging

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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