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◇ bioRxiv2026-08-27· synthetic biology

DIPTAR: A synthetic biology platform for functional interrogation of protein degradation

P. M. Exconder, W. Yoo, M. Kulkarni, A. B. Mahale, B. E. Myers, R. C. Patio, C. M. Bourne, B. M. Discher, C. Y. Taabazuing

原始摘要(英文原文)· Original abstract
Protein degradation regulates cellular homeostasis, yet many degradation events are difficult to study because they lack a readily selectable phenotype. Here, we develop Degradation-Induced Pyroptosis TArgeting Receptors (DIPTAR), a modular synthetic biology platform that couples protein degradation to CARD8-mediated pyroptosis. Using HIF-1 as a model substrate, we show that DIPTAR faithfully reports oxygen-dependent VHL-mediated degradation and enables pooled CRISPR screening to identify established and previously unrecognized regulators of HIF-1 stability. DIPTAR is functional across multiple cell types and can be programmed with diverse proteins, including BRD4, I{kappa}B, and p53, to convert distinct degradation stimuli into a common pyroptotic output. DIPTAR also detects pathogen-mediated perturbations of host degradation pathways, including both inhibition and induction of degradation-dependent signaling. By converting protein degradation into a robust selectable phenotype, DIPTAR provides a scalable platform for functional genetic discovery, interrogation of degradation pathways, degrader characterization, and investigation of host-pathogen interactions.
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