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Updated: Aug 5, 2025

Measuring Mitochondrial Function of Naïve and Effector CD8 T Cells
Published on: March 28, 2025
Impaired Integrated Stress Response and Mitochondrial Integrity Modulate Genotoxic Stress Impact and Lower the
Mihaela Temelie1, Rubab Talpur2, Marta Dominguez-Prieto2
1Department of Life and Environmental Physics, Horia Hulubei National Institute for R&D in Physics and Nuclear Engineering, Reactorului 30, P.O. Box MG-6, 077125 Magurele, Romania.
Abstract:
Mitochondria-nucleus communication during stress dictates cellular fate with consequences on the etiopathology of multiple age-related diseases. Impaired mitochondrial quality control through loss of function of the mitochondrial protease HtrA2 associates with accumulation of damaged mitochondria and triggers the integrated stress response, implicating the transcription factor CHOP. Here we have employed a combined model of impaired mitochondria quality control, namely HtrA2 loss of function, and/or integrated stress response, namely CHOP loss of function, and genotoxicity to address the distinctive roles of these cellular components in modulating intracellular and intercellular responses. The genotoxic agents employed were cancer therapeutic agents such as irradiation with X-ray and protons or treatment with the radiomimetic bleomycin. The irradiation had an enhanced effect in inducing DNA damage in cells with CHOP loss of function, while the bleomycin treatment induced more DNA damage in all the transgenic cells as compared to the control. The genetic modifications impaired the transmission of DNA damage signalling intercellularly. Furthermore, we have dissected the signalling pathways modulated by irradiation in selected genotypes with RNA sequencing analysis. We identified that loss of HtrA2 and CHOP function, respectively, lowers the threshold where irradiation may induce the activation of innate immune responses via cGAS-STING; this may have a significant impact on decisions for combined therapeutic approaches for various diseases.
Insights
Mitochondrial protease HtrA2 and transcription factor CHOP loss impairs cellular stress responses. This impacts DNA damage signaling and innate immunity activation, crucial for age-related diseases and cancer therapy.
Area of Science:
- Cellular Biology
- Molecular Biology
- Genetics
Background:
- Mitochondria-nucleus communication is vital for cellular fate and age-related diseases.
- Impaired mitochondrial quality control (HtrA2 loss) and integrated stress response (CHOP loss) contribute to disease.
- Understanding these pathways is key to developing effective therapies.
Purpose of the Study:
- To investigate the distinct roles of HtrA2 and CHOP in cellular responses to genotoxicity.
- To analyze intracellular and intercellular signaling in response to DNA damage.
- To identify how these genetic modifications affect innate immune activation.
Main Methods:
- Utilized HtrA2 and CHOP loss-of-function models.
- Applied genotoxic agents: X-ray, proton irradiation, and bleomycin.
- Performed RNA sequencing to analyze signaling pathways.
Main Results:
- Irradiation induced more DNA damage in CHOP-deficient cells; bleomycin induced damage in all modified cells.
- Genetic modifications hindered intercellular DNA damage signaling.
- Loss of HtrA2 or CHOP function lowered the threshold for cGAS-STING innate immune activation by irradiation.
Conclusions:
- HtrA2 and CHOP play critical roles in cellular stress response and DNA damage signaling.
- Impaired mitochondrial quality control and stress response affect intercellular communication.
- Findings suggest potential for novel therapeutic strategies targeting innate immunity in diseases.
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