bioRxiv · 10.1101/2022.03.10.483773
A critical role for heme synthesis and succinate in the regulation of pluripotent states transitions
Abstract
Using embryonic stem cells (ESCs) in regenerative medicine or in disease modeling requires a complete understanding of these cells. Two main distinct developmental states of ESCs have been stabilized in vitro, a naive pre-implantation stage and a primed post-implantation stage. Based on two recently published CRISPR-Cas9 knockout functional screens, we show here that the exit of the naive state is impaired upon heme biosynthesis pathway blockade, linked to the incapacity to activate MAPK- and TGF{beta}-dependent signaling pathways. In addition, heme synthesis inhibition promotes the acquisition of 2 cell-like cells in a heme-independent manner caused by a mitochondrial succinate accumulation and leakage out of the cell. We further demonstrate that extra-cellular succinate acts as a paracrine/autocrine signal, able to trigger the 2C-like reprogramming through the activation of its plasma membrane receptor, SUCNR1. Overall, this study unveils a new mechanism underlying the maintenance of pluripotency under the control of heme synthesis.
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Detraux, D., Caruso, M., Feller, L., Meurant, S., Fransolet, M., Mathieu, J., Arnould, T., Renard, P.. 2022-03-11. A critical role for heme synthesis and succinate in the regulation of pluripotent states transitions. https://doi.org/10.1101/2022.03.10.483773
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