| Literature DB >> 28507556 |
Sho Takahashi1, Keina Monda1, Takumi Higaki2, Mimi Hashimoto-Sugimoto3, Juntaro Negi1, Seiichiro Hasezawa2, Koh Iba1.
Abstract
Specific cellular components including products of phosphatidylinositol (PI) metabolism play an important role as signaling molecules in stomatal responses to environmental signals. In this study, pharmacological inhibitors of a set of cellular components, including PI4-kinase (PI4K) and PI3K, were used to investigate stomatal closure in response to CO2, darkness, and abscisic acid (ABA). Treatment with PAO, a specific inhibitor of PI4K, specifically inhibited the stomatal response to CO2 compared with that to darkness and ABA. In contrast, treatment with LY294002, a PI3K-specific inhibitor, specifically inhibited the stomatal response to darkness compared with that to CO2 and ABA. The specific inhibitory effects of PAO and LY294002 were also observed as changes in the spatial density of dot-like structures labeled by green fluorescent protein-tagged PATROL1, a protein that controls stomatal aperture possibly via regulation of H+-ATPase amount in guard cell plasma membranes. Our results suggest an important role for PI4K and PI3K in the CO2 and darkness signal transduction pathways, respectively, that mediate PATROL1 dynamics.Entities:
Keywords: Arabidopsis thaliana; PATROL1; phosphatidylinositol 3-kinase (PI3K); phosphatidylinositol 4-kinase (PI4K); stomata
Year: 2017 PMID: 28507556 PMCID: PMC5410623 DOI: 10.3389/fpls.2017.00677
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
Membrane trafficking inhibitors used in this study.
| Inhibitors | Inhibition targets | Inhibitor effects | Reference |
|---|---|---|---|
| Phenylarsine oxide | PI 4-phosphate (PI4P) | PI4K inhibition | |
| LY294002 | PI3P | PI3K inhibition | |
| LY83583 | Cyclic GMP | Guanylyl cyclase inhibition | |
| W-7 | Calmodulin | Calmodulin inhibition | |
| SNARE complex | SNARE complex dissociation | ||
| Brefeldin A | G protein | GNOM ARF-GEF inhibition | |
| Propyzamide | Microtubule | Microtubule depolymerization | |