Author
Listed:
- Agian Jeffilano Barinda
(Kobe Pharmaceutical University
Universitas Indonesia)
- Koji Ikeda
(Kobe Pharmaceutical University)
- Dhite Bayu Nugroho
(Kobe Pharmaceutical University)
- Donytra Arby Wardhana
(Kobe Pharmaceutical University)
- Naoto Sasaki
(Kobe Pharmaceutical University)
- Sakiko Honda
(Kyoto Prefectural University Graduate School of Medical Science)
- Ryota Urata
(Kyoto Prefectural University Graduate School of Medical Science)
- Satoaki Matoba
(Kyoto Prefectural University Graduate School of Medical Science)
- Ken-ichi Hirata
(Kobe University Graduate School of Medicine)
- Noriaki Emoto
(Kobe Pharmaceutical University
Kobe University Graduate School of Medicine)
Abstract
Vascular senescence is thought to play a crucial role in an ageing-associated decline of organ functions; however, whether vascular senescence is causally implicated in age-related disease remains unclear. Here we show that endothelial cell (EC) senescence induces metabolic disorders through the senescence-associated secretory phenotype. Senescence-messaging secretomes from senescent ECs induced a senescence-like state and reduced insulin receptor substrate-1 in adipocytes, which thereby impaired insulin signaling. We generated EC-specific progeroid mice that overexpressed the dominant negative form of telomeric repeat-binding factor 2 under the control of the Tie2 promoter. EC-specific progeria impaired systemic metabolic health in mice in association with adipose tissue dysfunction even while consuming normal chow. Notably, shared circulation with EC-specific progeroid mice by parabiosis sufficiently transmitted the metabolic disorders into wild-type recipient mice. Our data provides direct evidence that EC senescence impairs systemic metabolic health, and thus establishes EC senescence as a bona fide risk for age-related metabolic disease.
Suggested Citation
Agian Jeffilano Barinda & Koji Ikeda & Dhite Bayu Nugroho & Donytra Arby Wardhana & Naoto Sasaki & Sakiko Honda & Ryota Urata & Satoaki Matoba & Ken-ichi Hirata & Noriaki Emoto, 2020.
"Endothelial progeria induces adipose tissue senescence and impairs insulin sensitivity through senescence associated secretory phenotype,"
Nature Communications, Nature, vol. 11(1), pages 1-13, December.
Handle:
RePEc:nat:natcom:v:11:y:2020:i:1:d:10.1038_s41467-020-14387-w
DOI: 10.1038/s41467-020-14387-w
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