POLAR-guided signalling complex assembly and localization drive asymmetric cell division.

Houbaert, Anaxi; Zhang, Cheng; Tiwari, Manish; Wang, Kun; de Marcos Serrano, Alberto; Savatin, Daniel V; Urs, Mounashree J; Zhiponova, Miroslava K et al. · Nature · 2018

basic_science · Level V

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Abstract

Stomatal cell lineage is an archetypal example of asymmetric cell division (ACD), which is necessary for plant survival<sup>1-4</sup>. In Arabidopsis thaliana, the GLYCOGEN SYNTHASE KINASE3 (GSK3)/SHAGGY-like kinase BRASSINOSTEROID INSENSITIVE 2 (BIN2) phosphorylates both the mitogen-activated protein kinase (MAPK) signalling module<sup>5,6</sup> and its downstream target, the transcription factor SPEECHLESS (SPCH)<sup>7</sup>, to promote and restrict ACDs, respectively, in the same stomatal lineage cell. However, the mechanisms that balance these mutually exclusive activities remain unclear. Here we identify the plant-specific protein POLAR as a stomatal lineage scaffold for a subset of GSK3-like kinases that confines them to the cytosol and subsequently transiently polarizes them within the cell, together with BREAKING OF ASYMMETRY IN THE STOMATAL LINEAGE (BASL), before ACD. As a result, MAPK signalling is attenuated, enabling SPCH to drive ACD in the nucleus. Moreover, POLAR turnover requires phosphorylation on specific residues, mediated by GSK3. Our study reveals a mechanism by which the scaffolding protein POLAR ensures GSK3 substrate specificity, and could serve as a paradigm for understanding regulation of GSK3 in plants.

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