YODA-HSP90 Module Regulates Phosphorylation-Dependent Inactivation of SPEECHLESS to Control Stomatal Development under Acute Heat Stress in Arabidopsis
Jazyk angličtina Země Anglie, Velká Británie Médium print-electronic
Typ dokumentu časopisecké články, práce podpořená grantem
PubMed
31935463
DOI
10.1016/j.molp.2020.01.001
PII: S1674-2052(20)30001-0
Knihovny.cz E-zdroje
- Klíčová slova
- Arabidopsis, HSP90, MAPK, heat stress, stomata,
- MeSH
- Arabidopsis fyziologie MeSH
- buněčná diferenciace MeSH
- buněčné dělení MeSH
- buněčný rodokmen MeSH
- epigeneze genetická MeSH
- fosforylace MeSH
- kotyledon cytologie MeSH
- MAP kinasy kinas (kinas) genetika metabolismus MeSH
- mitogenem aktivované proteinkinasy kinas metabolismus MeSH
- mitogenem aktivované proteinkinasy metabolismus MeSH
- mutace MeSH
- proteiny huseníčku genetika metabolismus MeSH
- proteiny tepelného šoku HSP90 genetika metabolismus MeSH
- průduchy rostlin cytologie růst a vývoj metabolismus MeSH
- reakce na tepelný šok * MeSH
- regulace genové exprese u rostlin MeSH
- signální transdukce MeSH
- transkripční faktory bHLH metabolismus MeSH
- vazba proteinů MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Názvy látek
- AtMPK3 protein, Arabidopsis MeSH Prohlížeč
- MAP kinasy kinas (kinas) MeSH
- mitogenem aktivované proteinkinasy kinas MeSH
- mitogenem aktivované proteinkinasy MeSH
- MPK6 protein, Arabidopsis MeSH Prohlížeč
- proteiny huseníčku MeSH
- proteiny tepelného šoku HSP90 MeSH
- SPEECHLESS protein, Arabidopsis MeSH Prohlížeč
- transkripční faktory bHLH MeSH
- YODA protein, Arabidopsis MeSH Prohlížeč
Stomatal ontogenesis, patterning, and function are hallmarks of environmental plant adaptation, especially to conditions limiting plant growth, such as elevated temperatures and reduced water availability. The specification and distribution of a stomatal cell lineage and its terminal differentiation into guard cells require a master regulatory protein phosphorylation cascade involving the YODA mitogen-activated protein kinase kinase kinase. YODA signaling results in the activation of MITOGEN-ACTIVATED PROTEIN KINASEs (MPK3 and MPK6), which regulate transcription factors, including SPEECHLESS (SPCH). Here, we report that acute heat stress affects the phosphorylation and deactivation of SPCH and modulates stomatal density. By using complementary molecular, genetic, biochemical, and cell biology approaches, we provide solid evidence that HEAT SHOCK PROTEINS 90 (HSP90s) play a crucial role in transducing heat-stress response through the YODA cascade. Genetic studies revealed that YODA and HSP90.1 are epistatic, and they likely function linearly in the same developmental pathway regulating stomata formation. HSP90s interact with YODA, affect its cellular polarization, and modulate the phosphorylation of downstream targets, such as MPK6 and SPCH, under both normal and heat-stress conditions. Thus, HSP90-mediated specification and differentiation of the stomatal cell lineage couples stomatal development to environmental cues, providing an adaptive heat stress response mechanism in plants.
Citace poskytuje Crossref.org
Protein-protein interactions in plant antioxidant defense
HEAT SHOCK PROTEIN 90 proteins and YODA regulate main body axis formation during early embryogenesis
HSP90 chaperones regulate stomatal differentiation under normal and heat stress conditions