| Literature DB >> 30065742 |
Chris White-Gloria1, Jayde J Johnson1, Kayla Marritt1, Amr Kataya1,2, Ahmad Vahab1, Greg B Moorhead1.
Abstract
Phospho-proteomic studies have confirmed that phosphorylation is a common mechanism to regulate protein function in the chloroplast, including the enzymes of starch metabolism. In addition to the photosynthetic machinery protein kinases (STN7 and STN8) and their cognate protein phosphatases PPH1 (TAP38) and PBCP, multiple other protein kinases and phosphatases have now been localized to the chloroplast. Here, we build a framework for understanding protein kinases and phosphatases, their regulation, and potential roles in starch metabolism. We also catalog mapped phosphorylation sites on proteins of chloroplast starch metabolism to illustrate the potential and mostly unknown roles of protein phosphorylation in the regulation of starch biology.Entities:
Keywords: PP2C; SLP1; STN7; STN8; TAP38; casein kinase 2; chloroplast; protein phosphatase
Year: 2018 PMID: 30065742 PMCID: PMC6056723 DOI: 10.3389/fpls.2018.01032
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
Chloroplastic protein phosphatases of Arabidopsis thaliana.
| Name | AGI code (or GenBank) | Type | Localization | Reference |
|---|---|---|---|---|
| PR1 | AT4G21210 | Phosphotransferase | Chloroplast | |
| SLP1 | AT1G07010 | PPP | Chloroplast | |
| PP2C | AT1G07160 | PP2C | Chloroplast | |
| AP2C1 | AT2G30020 | PP2C | Chloroplast | |
| PP2C62 | AT4G33500 | PP2C | Chloroplast | |
| PP2C14 | AT1G67820 | PP2C | Chloroplast | |
| PBCP | AT2G30170 | PP2C | Chloroplast | |
| TAP38/PPH1 | AT4G27800 | PP2C | Chloroplast | |
| PP2C52 | AT4G03415 | PP2C | Chloroplast | |