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Updated: Jan 16, 2026

Visualizing Mitophagy with Fluorescent Dyes for Mitochondria and Lysosome
Published on: November 30, 2022
Mitochondrial ROS triggers mitophagy through activating the DNA damage response signaling pathway
Qi-Qiang Guo1,2, Shan-Shan Wang1,2, Xiao-You Jiang1,2
1The College of Basic Medical Science, Health Sciences Institute, China Medical University, Shenyang 110122, Liaoning, China.
Abstract:
The homeostatic link between the production of mitochondrial ROS (mtROS) and mitophagy plays a significant role in how cells respond to various physiological and pathological conditions. However, it remains unclear how cells translate oxidative stress signals into adaptive mitophagy responses. Here, we show that mtROS act as signaling molecules that activate the ataxia-telangiectasia mutated (ATM)-cell cycle checkpoint kinase 2 (CHK2), a DNA damage response (DDR) pathway. When activated, CHK2 regulates three critical steps in mitophagy. First, CHK2 phosphorylates mitochondrial membrane protein ATAD3A at Ser371, which inhibits the transport of PINK1 to the inner mitochondrial membrane and leads to the accumulation of PINK1 and the commencement of mitophagy. Second, activated CHK2 targets the autophagy adaptor OPTN at Ser177 and Ser473, thereby enhancing the targeting of ubiquitinated mitochondria to autophagosomes. Finally, CHK2 phosphorylates Beclin 1 at Ser90 and Ser93, hence promoting the formation of autophagosomal membranes. Consistent with these effects, Chk2-/- mice show impaired mitophagic induction and impaired recovery in a ROS-dependent model of renal ischemia-reperfusion. Our study reveals a mtROS-triggered adaptive pathway that coordinates mitophagic induction, in order to protect cells and tissues exposed to pathophysiological stress-induced damage.
Insights
Mitochondrial ROS activate the ATM-CHK2 DNA damage pathway, initiating mitophagy to clear damaged mitochondria. This pathway is crucial for cellular protection against oxidative stress and tissue damage.
Area of Science:
- Cellular Biology
- Mitochondrial Dynamics
- DNA Damage Response
Background:
- Mitochondrial reactive oxygen species (mtROS) and mitophagy are key in cellular stress responses.
- The precise mechanisms translating oxidative stress into mitophagy remain incompletely understood.
Purpose of the Study:
- To elucidate the signaling pathway linking mtROS production to adaptive mitophagy.
- To identify key molecular players involved in this stress-induced response.
Main Methods:
- Investigated the role of the ATM-CHK2 DNA damage response pathway in mtROS signaling.
- Utilized biochemical assays to determine CHK2 phosphorylation targets in mitophagy.
- Examined mitophagy induction in Chk2 knockout mice under oxidative stress conditions.
Main Results:
- mtROS activate the ATM-CHK2 pathway, which acts as a central regulator of mitophagy.
- CHK2 phosphorylates ATAD3A, OPTN, and Beclin 1, orchestrating PINK1 accumulation, mitochondrial targeting, and autophagosome formation.
- Chk2-/- mice exhibit impaired mitophagy and recovery in a renal ischemia-reperfusion model.
Conclusions:
- A novel mtROS-triggered signaling cascade involving ATM-CHK2 coordinates mitophagy.
- This pathway is essential for cellular and tissue protection against pathophysiological damage.
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