Literature DB >> 32397251

14-3-3 Proteins and Other Candidates form Protein-Protein Interactions with the Cytosolic C-terminal End of SOS1 Affecting Its Transport Activity.

Kerstin Duscha1, Cristina Martins Rodrigues1, Maria Müller1, Ruth Wartenberg1, Larry Fliegel2, Joachim W Deitmer3, Martin Jung4, Richard Zimmermann4, H Ekkehard Neuhaus1.   

Abstract

The plasma membrane transporter SOS1 (SALT-OVERLY SENSITIVE1) is vital for plant survival under salt stress. SOS1 activity is tightly regulated, but little is known about the underlying mechanism. SOS1 contains a cytosolic, autoinhibitory C-terminal tail (abbreviated as SOS1 C-term), which is targeted by the protein kinase SOS2 to trigger its transport activity. Here, to identify additional binding proteins that regulate SOS1 activity, we synthesized the SOS1 C-term domain and used it as bait to probe Arabidopsis thaliana cell extracts. Several 14-3-3 proteins, which function in plant salt tolerance, specifically bound to and interacted with the SOS1 C-term. Compared to wild-type plants, when exposed to salt stress, Arabidopsis plants overexpressing SOS1 C-term showed improved salt tolerance, significantly reduced Na+ accumulation in leaves, reduced induction of the salt-responsive gene WRKY25, decreased soluble sugar, starch, and proline levels, less impaired inflorescence formation and increased biomass. It appears that overexpressing SOS1 C-term leads to the sequestration of inhibitory 14-3-3 proteins, allowing SOS1 to be more readily activated and leading to increased salt tolerance. We propose that the SOS1 C-term binds to previously unknown proteins such as 14-3-3 isoforms, thereby regulating salt tolerance. This finding uncovers another regulatory layer of the plant salt tolerance program.

Entities:  

Keywords:  14-3-3 proteins; Arabidopsis; membrane transporter; salt tolerance; salt-overly sensitive (SOS1)

Mesh:

Substances:

Year:  2020        PMID: 32397251      PMCID: PMC7246916          DOI: 10.3390/ijms21093334

Source DB:  PubMed          Journal:  Int J Mol Sci        ISSN: 1422-0067            Impact factor:   5.923


  54 in total

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8.  Functional characterization of Arabidopsis NaCl-inducible WRKY25 and WRKY33 transcription factors in abiotic stresses.

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  2 in total

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Review 2.  Molecular Mechanisms of Plant Responses to Salt Stress.

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Journal:  Front Plant Sci       Date:  2022-06-27       Impact factor: 6.627

  2 in total

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