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◆ Nature Cell Biology2026-03-01· Autophagy

Time-resolved functional genomics using deep learning reveals global hierarchical control of autophagy

Nathalia Chica, Aram N. Andersen, Sara Orellana-Muñoz, Ignacio Garcia, Aurélie Nguéa P, Sigve Nakken, Pilar Ayuda-Durán, Linda Håkensbakken, Sebastian W. Schultz, Eline Rødningen, Christopher D. Putnam, Manuela Zucknick, Tor Erik Rusten, Jorrit M. Enserink

原始摘要(英文原文)· Original abstract
Recycling of cellular components through autophagy maintains homeostasis in changing nutrient environments. Although its core mechanisms are extensively studied, understanding of its systems-wide dynamic regulation remains limited, particularly regarding how autophagy is inactivated once nutrients are restored. Here we mapped the genetic network that controls activation and inactivation of autophagy during nitrogen changes by combining time-resolved high-content imaging, deep learning and latent feature analysis. This dataset, termed AutoDRY, categorizes 5,919 mutants based on nutrient response kinetics and their contributions to autophagosome formation and clearance. Integrating these profiles with functional and genetic network data uncovered hierarchical and multilayered control of autophagy and revealed multiple new regulatory pathways. Notably, we identified the retrograde pathway as a pivotal time-varying modulator that tunes the expression of core autophagy genes and plays a central role in autophagy inactivation. Together, this study establishes a systems-level resource to guide future investigations of autophagy.
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Time-resolved functional genomics using deep learning reveals global hierarchical control of autophagy — 科研速览 Science Skim