Senescence-induced cellular reprogramming drives cnidarian whole-body regeneration.
Cell Rep
; 42(7): 112687, 2023 07 25.
Article
em En
| MEDLINE
| ID: mdl-37392741
Cell fate stability is essential to maintaining "law and order" in complex animals. However, high stability comes at the cost of reduced plasticity and, by extension, poor regenerative ability. This evolutionary trade-off has resulted in most modern animals being rather simple and regenerative or complex and non-regenerative. The mechanisms mediating cellular plasticity and allowing for regeneration remain unknown. We show that signals emitted by senescent cells can destabilize the differentiated state of neighboring somatic cells, reprogramming them into stem cells that are capable of driving whole-body regeneration in the cnidarian Hydractinia symbiolongicarpus. Pharmacological or genetic inhibition of senescence prevents reprogramming and regeneration. Conversely, induction of transient ectopic senescence in a regenerative context results in supernumerary stem cells and faster regeneration. We propose that senescence signaling is an ancient mechanism mediating cellular plasticity. Understanding the senescence environment that promotes cellular reprogramming could provide an avenue to enhance regeneration.
Palavras-chave
Texto completo:
1
Base de dados:
MEDLINE
Assunto principal:
Cnidários
Limite:
Animals
Idioma:
En
Revista:
Cell Rep
Ano de publicação:
2023
Tipo de documento:
Article
País de afiliação:
Irlanda