Scientific article
OA Policy
English

The ULK1 kinase, a necessary component of the pro-regenerative and anti-aging machinery in Hydra

Published inMechanisms of Ageing and Development, vol. 194, no. 111414
Publication date2021
Abstract

Hydra vulgaris (Hv) has a high regenerative potential and negligible senescence, as its stem cell populations divide continuously. In contrast, the cold-sensitive H. oligactis (Ho_CS) rapidly develop an aging phenotype under stress, with epithelial stem cells deficient for autophagy, unable to maintain their self-renewal. Here we tested in aging, non-aging and regenerating Hydra the activity and regulation of the ULK1 kinase involved in autophagosome formation. In vitro kinase assays show that human ULK1 activity is activated by Hv extracts but repressed by Ho_CS extracts, reflecting the ability or inability of their respective epithelial cells to initiate autophagosome formation. The factors that keep ULK1 inactive in Ho_CS remain uncharacterized. Hv_Basel1 animals exposed to the ULK1 inhibitor SBI-0206965 no longer regenerate their head, indicating that the sustained autophagy flux recorded in regenerating Hv_AEP2 transgenic animals expressing the DsRed-GFP-LC3A autophagy tandem sensor is necessary. The SBI-0206965 treatment also alters the contractility of intact Hv_Basel1 animals, and leads to a progressive reduction of animal size in Hv_AEP2, similarly to what is observed in ULK1(RNAi) animals. We conclude that the evolutionarily-conserved role of ULK1 in autophagy initiation is crucial to maintain a dynamic homeostasis in Hydra, which supports regeneration efficiency and prevents aging.

Keywords
  • Hydramodel system
  • Aging
  • Whole-Body regeneration
  • Autophagy tandem sensor
  • Epithelial stem cells self-renewal
  • SBI-0206965-induced ULK1 inhibition
  • bafilomycin-A1
Research groups
Citation (ISO format)
SUKNOVIC, Nenad Slavko et al. The ULK1 kinase, a necessary component of the pro-regenerative and anti-aging machinery in Hydra. In: Mechanisms of Ageing and Development, 2021, vol. 194, n° 111414. doi: 10.1016/j.mad.2020.111414
Main files (1)
Article (Published version)
Secondary files (2)
Appendix
Summary
Identifiers
Journal ISSN0047-6374
424views
314downloads

Technical informations

Creation07/02/2021 01:13:00
First validation07/02/2021 01:13:00
Update15/03/2023 23:59:36
Status update15/03/2023 23:59:34
Last indexation31/10/2024 21:12:04
All rights reserved by Archive ouverte UNIGE and the University of GenevaunigeBlack