Literature DB >> 28104888

Root diffusion barrier control by a vasculature-derived peptide binding to the SGN3 receptor.

Verónica G Doblas1, Elwira Smakowska-Luzan2, Satoshi Fujita1, Julien Alassimone1, Marie Barberon1, Mathias Madalinski3, Youssef Belkhadir4, Niko Geldner5.   

Abstract

The root endodermis forms its extracellular diffusion barrier by developing ringlike impregnations called Casparian strips. A factor responsible for their establishment is the SCHENGEN3/GASSHO1 (SGN3/GSO1) receptor-like kinase. Its loss of function causes discontinuous Casparian strips. SGN3 also mediates endodermal overlignification of other Casparian strip mutants. Yet, without ligand, SGN3 function remained elusive. Here we report that schengen2 (sgn2) is defective in an enzyme sulfating peptide ligands. On the basis of this observation, we identified two stele-expressed peptides (CASPARIAN STRIP INTEGRITY FACTORS, CIF1/2) that complement sgn2 at nanomolar concentrations and induce Casparian strip mislocalization as well as overlignification-all of which depend on SGN3. Direct peptide binding to recombinant SGN3 identifies these peptides as SGN3 ligands. We speculate that CIF1/2-SGN3 is part of a barrier surveillance system, evolved to guarantee effective sealing of the supracellular Casparian strip network.
Copyright © 2017, American Association for the Advancement of Science.

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Year:  2017        PMID: 28104888     DOI: 10.1126/science.aaj1562

Source DB:  PubMed          Journal:  Science        ISSN: 0036-8075            Impact factor:   47.728


  59 in total

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