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Updated: Nov 11, 2025

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Published on: January 25, 2017
CGAS is a micronucleophagy receptor for the clearance of micronuclei
Mengmeng Zhao1,2, Fei Wang1,2, Juehui Wu1,2
1Shanghai TB Key Laboratory, Shanghai Pulmonary Hospital, Tongji University School of Medicine, Shanghai, China.
Abstract:
Micronuclei are constantly considered as a marker of genome instability and very recently found to be a trigger of innate immune responses. An increased frequency of micronuclei is associated with many diseases, but the mechanism underlying the regulation of micronuclei homeostasis remains largely unknown. Here, we report that CGAS (cyclic GMP-AMP synthase), a known regulator of DNA sensing and DNA repair, reduces the abundance of micronuclei under genotoxic stress in an autophagy-dependent manner. CGAS accumulates in the autophagic machinery and directly interacts with MAP1LC3B/LC3B in a manner dependent upon its MAP1LC3-interacting region (LIR). Importantly, the interaction is essential for MAP1LC3 recruitment to micronuclei and subsequent clearance of micronuclei via autophagy (micronucleophagy) in response to genotoxic stress. Moreover, in contrast to its DNA sensing function to activate micronuclei-driven inflammation, CGAS-mediated micronucleophagy blunts the production of cyclic GMP-AMP (cGAMP) induced by genotoxic stress. We therefore conclude that CGAS is a receptor for the selective autophagic clearance of micronuclei and uncovered an unprecedented role of CGAS in micronuclei homeostasis to dampen innate immune surveillance.Abbreviations: ATG: autophagy-related; CGAS: cyclic GMP-AMP synthase; CQ: chloroquine; GABARAP: GABA type A receptor-associated protein; GFP: green fluorescent protein; LAMP1: lysosomal associated membrane protein 1; LAMP2: lysosomal associated membrane protein 2; LIR, MAP1LC3-interacting region; MAP1LC3B/LC3B: microtubule associated protein 1 light chain 3 beta; NDZ: nocodazole; STING1: stimulator of interferon response cGAMP interactor 1.
Insights
Cyclic GMP-AMP synthase (CGAS) clears micronuclei through autophagy, a process called micronucleophagy. This mechanism reduces genome instability and dampens innate immune responses during genotoxic stress.
Area of Science:
- Cell Biology
- Genetics
- Immunology
Background:
- Micronuclei are indicators of genome instability and can trigger immune responses.
- Mechanisms regulating micronuclei homeostasis are not fully understood.
- Cyclic GMP-AMP synthase (CGAS) is involved in DNA sensing and repair.
Purpose of the Study:
- To investigate the role of CGAS in micronuclei homeostasis.
- To elucidate the mechanism by which CGAS regulates micronuclei abundance.
- To understand how CGAS influences innate immune responses related to micronuclei.
Main Methods:
- Investigated CGAS localization and interaction with autophagy proteins (MAP1LC3B/LC3B).
- Utilized autophagy-dependent assays to study micronuclei clearance.
- Assessed cyclic GMP-AMP (cGAMP) production under genotoxic stress.
Main Results:
- CGAS accumulates in autophagic machinery and interacts with MAP1LC3B/LC3B via its LIR motif.
- This interaction is crucial for recruiting MAP1LC3B/LC3B to micronuclei for clearance (micronucleophagy).
- CGAS-mediated micronucleophagy reduces cGAMP production, thereby dampening inflammation.
Conclusions:
- CGAS acts as a receptor for selective autophagic clearance of micronuclei.
- CGAS plays a novel role in maintaining micronuclei homeostasis.
- CGAS-mediated micronucleophagy suppresses innate immune surveillance triggered by genotoxic stress.
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