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Published on: November 30, 2022
Autophagy protein Ulk1 promotes mitochondrial apoptosis through reactive oxygen species
Subhadip Mukhopadhyay1, Durgesh Nandini Das1, Prashanta Kumar Panda1
1Department of Life Science, National Institute of Technology, Rourkela, Odisha, India.
Abstract:
Regardless of rapid progression in the field of autophagy, it remains a challenging task to understand the cross talk with apoptosis. In this study, we overexpressed Ulk1 in HeLa cells and evaluated the apoptosis-inducing potential of the Ulk1 gene in the presence of cisplatin. The gain of function of Ulk1 gene showed a decline in cell viability and colony formation in HeLa cells. The Ulk1-overexpressing cells showed higher apoptotic attributes by an increase in the percentage of annexin V, escalated expression of Bax/Bcl2 ratio, and caspase-9, -3/7 activities. Further, reactive oxygen species (ROS) generation was found to be much higher in HeLa-Ulk1 than in the mock group. Scavenging the ROS by N-acetyl-L-cysteine increased cell viability and colony number as well as mitochondrial membrane potential (MMP). Our data showed that Ulk1 on entering into mitochondria inhibits the manganese dismutase activity and intensifies the mitochondrial superoxide level. The Ulk1-triggered autophagy (particularly mitophagy) resulted in a fall in ATP; thus the nonmitophagic mitochondria overwork the electron-transport cycle to replenish energy demand and are inadvertently involved in ROS overproduction that led to apoptosis. In this present investigation, our results decipher a previously unrecognized perspective of apoptosis induction by a key autophagy protein Ulk1 that may contribute to identification of its tumor-suppressor properties through dissecting the connection among cellular bioenergetics, ROS, and MMP.
Insights
Overexpressing Ulk1 protein induces apoptosis in HeLa cells by increasing reactive oxygen species (ROS) and affecting mitochondrial function. This suggests Ulk1 may have tumor-suppressor properties.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Autophagy and apoptosis crosstalk is complex and not fully understood.
- Ulk1 is a key protein in initiating autophagy.
Purpose of the Study:
- To investigate the apoptosis-inducing potential of Ulk1 in HeLa cells.
- To explore the role of Ulk1 in cellular bioenergetics, ROS production, and mitochondrial function.
Main Methods:
- Overexpression of Ulk1 in HeLa cells.
- Assays for cell viability, colony formation, apoptosis markers (Annexin V, Bax/Bcl2 ratio, caspase activity).
- Measurement of reactive oxygen species (ROS) and mitochondrial membrane potential (MMP).
Main Results:
- Ulk1 overexpression reduced cell viability and colony formation.
- Increased apoptotic markers, ROS generation, and mitochondrial superoxide levels were observed.
- Ulk1 inhibited manganese dismutase activity in mitochondria, leading to ROS overproduction and apoptosis.
Conclusions:
- Ulk1 induces apoptosis through ROS generation and mitochondrial dysfunction.
- Ulk1's role in mitophagy impacts ATP levels and energy demand.
- Ulk1 exhibits potential tumor-suppressor properties by linking cellular bioenergetics, ROS, and MMP.
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