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Updated: Sep 23, 2025

Dissection and Live-Imaging of the Late Embryonic Drosophila Gonad
Published on: October 17, 2020
Cell-cycle exit and stem cell differentiation are coupled through regulation of mitochondrial activity in the
Diego Sainz de la Maza1, Silvana Hof-Michel2, Lee Phillimore1
1Department of Cell and Developmental Biology, University College London, Gower Street, London WC1E 6BT, UK.
Abstract:
Whereas stem and progenitor cells proliferate to maintain tissue homeostasis, fully differentiated cells exit the cell cycle. How cell identity and cell-cycle state are coordinated during differentiation is still poorly understood. The Drosophila testis niche supports germline stem cells and somatic cyst stem cells (CySCs). CySCs give rise to post-mitotic cyst cells, providing a tractable model to study the links between stem cell identity and proliferation. We show that, while cell-cycle progression is required for CySC self-renewal, the E2f1/Dp transcription factor is dispensable for self-renewal but instead must be silenced by the Drosophila retinoblastoma homolog, Rbf, to permit differentiation. Continued E2f1/Dp activity inhibits the expression of genes important for mitochondrial activity. Furthermore, promoting mitochondrial biogenesis rescues the differentiation of CySCs with ectopic E2f1/Dp activity but not their cell-cycle exit. In sum, E2f1/Dp coordinates cell-cycle progression with stem cell identity by regulating the metabolic state of CySCs.
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