| Literature DB >> 25074439 |
Magdalena M Julkowska1, Fionn McLoughlin, Carlos S Galvan-Ampudia, Johanna M Rankenberg, Dorota Kawa, Maria Klimecka, Michel A Haring, Teun Munnik, Edgar E Kooijman, Christa Testerink.
Abstract
Phosphatidic acid (PA) is an important signalling lipid involved in various stress-induced signalling cascades. Two SnRK2 protein kinases (SnRK2.4 and SnRK2.10), previously identified as PA-binding proteins, are shown here to prefer binding to PA over other anionic phospholipids and to associate with cellular membranes in response to salt stress in Arabidopsis roots. A 42 amino acid sequence was identified as the primary PA-binding domain (PABD) of SnRK2.4. Unlike the full-length SnRK2.4, neither the PABD-YFP fusion protein nor the SnRK2.10 re-localized into punctate structures upon salt stress treatment, showing that additional domains of the SnRK2.4 protein are required for its re-localization during salt stress. Within the PABD, five basic amino acids, conserved in class 1 SnRK2s, were found to be necessary for PA binding. Remarkably, plants overexpressing the PABD, but not a non-PA-binding mutant version, showed a severe reduction in root growth. Together, this study biochemically characterizes the PA-SnRK2.4 interaction and shows that functionality of the SnRK2.4 PABD affects root development.Entities:
Keywords: SnRK2.10; phosphatidic acid; phospholipid binding; root system architecture
Mesh:
Substances:
Year: 2014 PMID: 25074439 DOI: 10.1111/pce.12421
Source DB: PubMed Journal: Plant Cell Environ ISSN: 0140-7791 Impact factor: 7.228