Javascript must be enabled to continue!
CASM regulates p62/KEAP1/NRF2 antioxidant responses to lysosome damage
View through CrossRef
Abstract
Effective lysosome function is essential for health, and declines with ageing and disease. Upon lysosome damage, cells mount a complex stress response to restore homeostasis. Membrane ATG8ylation plays a central role, orchestrating lysosome repair, replacement and removal, either directly at the damaged membrane, via CASM (
c
onjugation of
A
TG8s to
s
ingle
m
embranes), or at nascent autophagosomes, during lysophagy. Here, we identify a novel role for CASM in driving an antioxidant response to lysosome stress. Following damage, CASM regulates both lysosome ubiquitination and p62 recruitment. Membrane-associated p62 undergoes S349-phosphorylation, which permits KEAP1 sequestration, thereby releasing master transcription factor, NRF2. Liberated NRF2 translocates to the nucleus and promotes transcription of antioxidant and detoxifying genes, co-ordinating a cytoprotective response, in a CASM-dependent manner. These findings position CASM as a major upstream response to lysosome stress and uncover the p62/KEAP1/NRF2 axis as a novel effector pathway, termed SOLAR (SQSTM1/p62 Oligomer-mediated lysosome antioxidant response).
Highlights
CASM recruits p62/SQSTM1 as an effector protein during lysosome damage
CASM acts upstream to enhance ubiquitination of damaged lysosomes
CASM-recruited p62 engages KEAP1/NRF2 to drive antioxidant gene transcription (SOLAR)
Title: CASM regulates p62/KEAP1/NRF2 antioxidant responses to lysosome damage
Description:
Abstract
Effective lysosome function is essential for health, and declines with ageing and disease.
Upon lysosome damage, cells mount a complex stress response to restore homeostasis.
Membrane ATG8ylation plays a central role, orchestrating lysosome repair, replacement and removal, either directly at the damaged membrane, via CASM (
c
onjugation of
A
TG8s to
s
ingle
m
embranes), or at nascent autophagosomes, during lysophagy.
Here, we identify a novel role for CASM in driving an antioxidant response to lysosome stress.
Following damage, CASM regulates both lysosome ubiquitination and p62 recruitment.
Membrane-associated p62 undergoes S349-phosphorylation, which permits KEAP1 sequestration, thereby releasing master transcription factor, NRF2.
Liberated NRF2 translocates to the nucleus and promotes transcription of antioxidant and detoxifying genes, co-ordinating a cytoprotective response, in a CASM-dependent manner.
These findings position CASM as a major upstream response to lysosome stress and uncover the p62/KEAP1/NRF2 axis as a novel effector pathway, termed SOLAR (SQSTM1/p62 Oligomer-mediated lysosome antioxidant response).
Highlights
CASM recruits p62/SQSTM1 as an effector protein during lysosome damage
CASM acts upstream to enhance ubiquitination of damaged lysosomes
CASM-recruited p62 engages KEAP1/NRF2 to drive antioxidant gene transcription (SOLAR).
Related Results
A Stress-Responsive Transcriptional Factor NRF2 Activates Hematopoietic Stem Cells
A Stress-Responsive Transcriptional Factor NRF2 Activates Hematopoietic Stem Cells
Abstract
KEAP1-NRF2 system is a major regulator of cellular redox balance and xenobiotic metabolism. NRF2 is an inducible transcription factor, and KEAP1 is its nega...
A Mechanism Study on the Antioxidant Pathway of Keap1-Nrf2- ARE Inhibiting Ferroptosis in Dopaminergic Neurons
A Mechanism Study on the Antioxidant Pathway of Keap1-Nrf2- ARE Inhibiting Ferroptosis in Dopaminergic Neurons
Background:
The pathology of Parkinson's disease (PD) indicates that iron deposition
exists in dopaminergic neurons, which may be related to the death of cellular lipid iron peroxi...
Abstract 1702: Loss of KEAP1 promotes R-loop formation independent of NRF2
Abstract 1702: Loss of KEAP1 promotes R-loop formation independent of NRF2
Abstract
This study investigates the mechanism of R-loop formation as a consequence of KEAP1 depletion. R-loops, described as three-stranded nucleic acid structures ...
Oxidative stress sensor Keap1 recognizes HBx protein to activate the Nrf2/ARE signaling pathway, thereby inhibiting hepatitis B virus replication
Oxidative stress sensor Keap1 recognizes HBx protein to activate the Nrf2/ARE signaling pathway, thereby inhibiting hepatitis B virus replication
ABSTRACT
Hepatitis B virus (HBV) infection promotes reactive oxygen species production while paradoxically inducing the expression of antioxidant enzymes. HBV-induced dis...
Loss-of-function mutations in KEAP1 drive lung squamous cell carcinoma progression via KEAP1/NRF2 pathway activation
Loss-of-function mutations in KEAP1 drive lung squamous cell carcinoma progression via KEAP1/NRF2 pathway activation
Abstract
Background and Purpose Targeted therapy has led to dramatic change in the treatment of lung adenocarcinoma, but lung squamous cell carcinoma(LSCC) lacks targeted t...
New Target of Oxidative Stress Regulation in Cochleae:Alternative Splicing of the p62/Sqstm1 gene
New Target of Oxidative Stress Regulation in Cochleae:Alternative Splicing of the p62/Sqstm1 gene
Abstract
To examine the oxidative stress and the antioxidant response of p62-Keap1-Nrf2 pathway in cochleae during age-related hearing loss (ARHL) and noise-induced hearing...
P–117 Bioinformatic analysis of NRF2 in the study of association of NRF2 variant and male infertility related to smoking status
P–117 Bioinformatic analysis of NRF2 in the study of association of NRF2 variant and male infertility related to smoking status
Abstract
Study question
Could Nrf2 polymorphism (–617C>A; rs6721961) and oxidative stress (OS)-induced changes of signatu...
P-117 Pre-selected for an award: Bioinformatic analysis of NRF2 in the study of association of NRF2 variant and male infertility related to smoking status
P-117 Pre-selected for an award: Bioinformatic analysis of NRF2 in the study of association of NRF2 variant and male infertility related to smoking status
Abstract
Study question
Could Nrf2 polymorphism (-617C>A; rs6721961) and oxidative stress (OS)-induced changes of signatu...

