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Reducing Cofilin dosage makes embryos resilient to heat stress

Biel, N.; Rashid, F.; Natua, S.; Wang, T.-Y.; Chou, T.-F.; Nguyen, T. V. P.; Golding, I.; Kalsotra, A.; Sokac, A. M.

2025-01-03 developmental biology
10.1101/2025.01.02.631102 bioRxiv
Show abstract

In addition to regulating the actin cytoskeleton, Cofilin also senses and responds to environmental stress. Cofilin can promote cell survival or death depending on context. Yet, many aspects of Cofilins role in survival need clarification. Here, we show that exposing early Drosophila embryos to mild heat stress (32{degrees}C) induces a Cofilin-mediated Actin Stress Response and upregulation of heat- and ER-stress response genes. However, these responses do not alleviate the negative impacts of heat exposure. Instead, heat stressed embryos show downregulation of hundreds of developmental genes, including determinants of the embryonic body plan, and are less likely to hatch as larvae and adults. Remarkably, reducing Cofilin dosage blunts induction of all stress response pathways, mitigates downregulation of developmental genes, and completely rescues survival. Thus, Cofilin intersects with multiple stress response pathways, and modulates the transcriptomic response to heat stress. Strikingly, Cofilin knockdown emerges as a potent pro-survival manipulation for embryos.

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