Aberrant production of reactive oxygen species (ROS) from dysfunctional mito- chondria leads to oxidative stress and DNA damage, which induces the cellular senescence stress response pathway. This, while exerting strong beneficial suppressive effects on the development of cancer, also contributes to aging and different age-related disorders. Mitophagy is a key mechanism to con- stantly eliminate old and damaged mitochondria, strongly contributing to keep low levels of intracellular ROS. Here, we discuss our recent findings showing the involvement of the atypical MAP kinase family member MAPK15 in controlling the mitophagic process, thereby preventing ROS accumulation, extensive DNA damage and activation of the cellular senescence phenotype.

MAPK15 controls mitochondrial fitness and contributes to prevent cellular senescence

Lorenzo Franci;Giovanni Inzalaco;Mario Chiariello
2022

Abstract

Aberrant production of reactive oxygen species (ROS) from dysfunctional mito- chondria leads to oxidative stress and DNA damage, which induces the cellular senescence stress response pathway. This, while exerting strong beneficial suppressive effects on the development of cancer, also contributes to aging and different age-related disorders. Mitophagy is a key mechanism to con- stantly eliminate old and damaged mitochondria, strongly contributing to keep low levels of intracellular ROS. Here, we discuss our recent findings showing the involvement of the atypical MAP kinase family member MAPK15 in controlling the mitophagic process, thereby preventing ROS accumulation, extensive DNA damage and activation of the cellular senescence phenotype.
2022
Istituto di Fisiologia Clinica - IFC - Sede Secondaria di Siena
cell homeostasis, MAPK, mitophagy, oxidative stress, senescence
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Descrizione: MAPK15 controls mitochondrial fitness andcontributes to prevent cellular senescence
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/518225
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