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Published on: September 12, 2020
Global stress response in a prokaryotic model of DJ-1-associated Parkinsonism
Nadia Messaoudi1, Valérie Gautier, Fatoum Kthiri
1Stress Molecules, Institut Jacques Monod, Université Paris, Paris, France.
Abstract:
YajL is the most closely related Escherichia coli homolog of Parkinsonism-associated protein DJ-1, a protein with a yet-undefined function in the oxidative-stress response. YajL protects cells against oxidative-stress-induced protein aggregation and functions as a covalent chaperone for the thiol proteome, including FeS proteins. To clarify the cellular responses to YajL deficiency, transcriptional profiling of the yajL mutant was performed. Compared to the parental strain, the yajL mutant overexpressed genes coding for chaperones, proteases, chemical chaperone transporters, superoxide dismutases, catalases, peroxidases, components of thioredoxin and glutaredoxin systems, iron transporters, ferritins and FeS cluster biogenesis enzymes, DNA repair proteins, RNA chaperones, and small regulatory RNAs. It also overexpressed the RNA polymerase stress sigma factors sigma S (multiple stresses) and sigma 32 (protein stress) and activated the OxyR and SoxRS oxidative-stress transcriptional regulators, which together trigger the global stress response. The yajL mutant also overexpressed genes involved in septation and adopted a shorter and rounder shape characteristic of stressed bacteria. Biochemical experiments showed that this upregulation of many stress genes resulted in increased expression of stress proteins and improved biochemical function. Thus, protein defects resulting from the yajL mutation trigger the onset of a robust and global stress response in a prokaryotic model of DJ-1-associated Parkinsonism.
Insights
YajL deficiency in E. coli triggers a global stress response, activating protective mechanisms against oxidative damage and protein aggregation. This study reveals YajL
Area of Science:
- Microbiology
- Molecular Biology
- Biochemistry
Background:
- YajL is the closest E. coli homolog to Parkinson's disease-associated DJ-1.
- DJ-1's function in oxidative stress response is not fully understood.
- YajL protects against oxidative stress-induced protein aggregation and chaperones thiol proteome.
Purpose of the Study:
- To elucidate cellular responses to YajL deficiency.
- To understand the role of YajL in the oxidative stress response.
- To investigate the prokaryotic model of DJ-1-associated Parkinsonism.
Main Methods:
- Transcriptional profiling of yajL mutant E. coli.
- Analysis of gene expression changes related to stress response.
- Biochemical assays to assess protein function and expression.
Main Results:
- YajL mutant overexpressed genes for chaperones, proteases, antioxidants, DNA/RNA repair, and iron homeostasis.
- Activation of stress sigma factors (sigma S, sigma 32) and transcriptional regulators (OxyR, SoxRS).
- Upregulation of stress proteins led to improved biochemical function and characteristic stress morphology.
Conclusions:
- YajL deficiency initiates a comprehensive global stress response in E. coli.
- The study provides insights into DJ-1 function and Parkinsonism pathogenesis.
- Cellular defects in YajL mutants activate robust protective mechanisms against oxidative stress.
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