CASEIN KINASE1-LIKE PROTEIN2 Regulates Actin Filament Stability and Stomatal Closure via Phosphorylation of Actin Depolymerizing Factor
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Summary
The results suggest that CKL2 regulates actin filament reorganization and stomatal closure mainly through phosphorylation of ADF.
- Type
- article
- Published
- 2016-06-01
- Cited by
- 104
- References
- 110
- OpenAlex
- https://openalex.org/W27268429
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:43108327
Keywords
Plan (archaeology), Computer science, Geography
References
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- Identification of Two 17-kDa Rat Parotid Gland Phosphoproteins, Subjects for Dephosphorylation upon β-Adrenergic Stimulation, as Destrin- and Cofilin-like Proteins (*)
Cited by
- Battening Down the Hatches: A Role for CASEIN KINASE1-LIKE PROTEIN2 in Stomatal Closure[OPEN]
- Phosphorylation of GENOMES UNCOUPLED 4 Alters Stimulation of Mg Chelatase Activity in Angiosperms1[OPEN]
- Dynamic Phosphoproteome Analysis of Seedling Leaves in Brachypodium distachyon L. Reveals Central Phosphorylated Proteins Involved in the Drought Stress Response
- Plant actin depolymerizing factor: actin microfilament disassembly and more
- Malus domestica ADF1 severs actin filaments in growing pollen tubes.
- Plant Actin-Depolymerizing Factors Possess Opposing Biochemical Properties Arising from Key Amino Acid Changes throughout Evolution[OPEN]
- Actin filament reorganisation controlled by the SCAR/WAVE complex mediates stomatal response to darkness
- The tumor suppressor CYLD controls epithelial morphogenesis and homeostasis by regulating mitotic spindle behavior and adherens junction assembly.
- Direct Comparison of the Performance of Commonly Employed In Vivo F-actin Markers (Lifeact-YFP, YFP-mTn and YFP-FABD2) in Tobacco Pollen Tubes
- Characterization of a novel EB1 acetylation site important for the regulation of microtubule dynamics and cargo recruitment
- Novel actin-binding-proteins in plants
- Quantitative Phosphoproteomic Analysis Provides Insight into the Response to Short-Term Drought Stress in Ammopiptanthus mongolicus Roots
- Molecular mechanisms underlying stress response and adaptation
- Activation of ROP6 GTPase by Phosphatidylglycerol in Arabidopsis
- Apple S-RNase interacts with an actin-binding protein, MdMVG, to reduce pollen tube growth by inhibiting its actin-severing activity at the early stage of self-pollination induction.
- Mechanisms of Salt Tolerance in Halophytes: Current Understanding and Recent Advances
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- Universal Plant Phosphoproteomics Workflow and Its Application to Tomato Signaling in Response to Cold Stress*
- Transcriptomic analysis of drought stress responses of sea buckthorn (Hippophae rhamnoidessubsp. sinensis) by RNA-Seq
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