Proteomic dissection of the chloroplast: Moving beyond photosynthesis
Date
2020
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier B.V.
Abstract
Chloroplast, the photosynthetic machinery, converts photoenergy to ATP and NADPH, which powers the production of carbohydrates from atmospheric CO2 and H2O. It also serves as a major production site of multivariate
pro-defense molecules, and coordinate with other organelles for cell defense. Chloroplast harbors 30–50% of
total cellular proteins, out of which 80% are membrane residents and are difficult to solubilize. While proteome
profiling has illuminated vast areas of biological protein space, a great deal of effort must be invested to understand the proteomic landscape of the chloroplast, which plays central role in photosynthesis, energy metabolism and stress-adaptation. Therefore, characterization of chloroplast proteome would not only provide the
foundation for future investigation of expression and function of chloroplast proteins, but would open up new
avenues for modulation of plant productivity through synchronizing chloroplastic key components. In this review, we summarize the progress that has been made to build new understanding of the chloroplast proteome
and implications of chloroplast dynamicsing generate metabolic energy and modulating stress adaptation.
Description
Accepted date: 5 November 2019
Keywords
Chloroplast, Differentially accumulated proteins, Kranz regulators, Photosynthetic machinery, Proteome landscape, Stress adaptation
Citation
Journal of Proteomics, 212: 103542
