|  Help  |  About  |  Contact Us

Publication : DRP1 levels determine the apoptotic threshold during embryonic differentiation through a mitophagy-dependent mechanism.

First Author  Pernaute B Year  2022
Journal  Dev Cell Volume  57
Issue  11 Pages  1316-1330.e7
PubMed ID  35597240 Mgi Jnum  J:325556
Mgi Id  MGI:7286409 Doi  10.1016/j.devcel.2022.04.020
Citation  Pernaute B, et al. (2022) DRP1 levels determine the apoptotic threshold during embryonic differentiation through a mitophagy-dependent mechanism. Dev Cell 57(11):1316-1330.e7
abstractText  The changes that drive differentiation facilitate the emergence of abnormal cells that need to be removed before they contribute to further development or the germline. Consequently, in mice in the lead-up to gastrulation, approximately 35% of embryonic cells are eliminated. This elimination is caused by hypersensitivity to apoptosis, but how it is regulated is poorly understood. Here, we show that upon exit of naive pluripotency, mouse embryonic stem cells lower their mitochondrial apoptotic threshold, and this increases their sensitivity to cell death. We demonstrate that this enhanced apoptotic response is induced by a decrease in mitochondrial fission due to a reduction in the activity of dynamin-related protein 1 (DRP1). Furthermore, we show that in naive pluripotent cells, DRP1 prevents apoptosis by promoting mitophagy. In contrast, during differentiation, reduced mitophagy levels facilitate apoptosis. Together, these results indicate that during early mammalian development, DRP1 regulation of mitophagy determines the apoptotic response.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

8 Bio Entities

0 Expression