Article
Comparative quantitative proteomics of osmotic signal transduction mutants in Botrytis cinerea explain mutant phenotypes and highlight interaction with cAMP and Ca2+ signalling pathways.
Journal of proteomics - 10 Feb 2020
Kilani Jaafar, Davanture Marlène, Simon Adeline, Zivy Michel, Fillinger Sabine
Abstract excerpt
Signal transduction (ST) is essential for rapid adaptive responses to changing environmental conditions. It acts through rapid post-translational modifications of signalling proteins and downstream effectors that regulate the activity and/or subcellular localisation of target proteins, or the expression of downstream genes. We have performed a quantitative, comparative proteomics study of ST mutants in the...
Topics
- Botrytis
- Calcium Signaling
- Cyclic AMP
- Fungal Proteins
- Mutation
- Osmotic Pressure
- Plant Diseases
- Proteome
- Proteomics
- Signal Transduction
