Cargando…

A SOSEKI-based coordinate system interprets global polarity cues in Arabidopsis

Multicellular development requires coordinated cell polarization relative to body axes, and translation to oriented cell division1–3. In plants, it is unknown how cell polarities are connected to organismal axes and translated to division. Here, we identify Arabidopsis SOSEKI (SOK) proteins that int...

Descripción completa

Detalles Bibliográficos
Autores principales: Yoshida, Saiko, van der Schuren, Alja, van Dop, Maritza, van Galen, Luc, Saiga, Shunsuke, Adibi, Milad, Möller, Barbara, ten Hove, Colette A., Marhavy, Peter, Smith, Richard, Friml, Jiri, Weijers, Dolf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6420093/
https://www.ncbi.nlm.nih.gov/pubmed/30737509
http://dx.doi.org/10.1038/s41477-019-0363-6
_version_ 1783404055367778304
author Yoshida, Saiko
van der Schuren, Alja
van Dop, Maritza
van Galen, Luc
Saiga, Shunsuke
Adibi, Milad
Möller, Barbara
ten Hove, Colette A.
Marhavy, Peter
Smith, Richard
Friml, Jiri
Weijers, Dolf
author_facet Yoshida, Saiko
van der Schuren, Alja
van Dop, Maritza
van Galen, Luc
Saiga, Shunsuke
Adibi, Milad
Möller, Barbara
ten Hove, Colette A.
Marhavy, Peter
Smith, Richard
Friml, Jiri
Weijers, Dolf
author_sort Yoshida, Saiko
collection PubMed
description Multicellular development requires coordinated cell polarization relative to body axes, and translation to oriented cell division1–3. In plants, it is unknown how cell polarities are connected to organismal axes and translated to division. Here, we identify Arabidopsis SOSEKI (SOK) proteins that integrate apical-basal and radial organismal axes to localize to polar cell edges. Localization does not depend on tissue context, requires cell wall integrity and is defined by a transferrable, protein-specific motif. A Domain of Unknown Function in SOK proteins resembles the DIX oligomerization domain in the animal Dishevelled polarity regulator. The DIX-like domain self-interacts and is required for edge localization and for influencing division orientation, together with a second domain that defines the polar membrane domain. Our work shows that SOK proteins locally interpret global polarity cues and can influence cell division orientation. Furthermore, this work reveals that despite fundamental differences, cell polarity mechanisms in plants and animals converge upon a similar protein domain.
format Online
Article
Text
id pubmed-6420093
institution National Center for Biotechnology Information
language English
publishDate 2019
record_format MEDLINE/PubMed
spelling pubmed-64200932019-08-08 A SOSEKI-based coordinate system interprets global polarity cues in Arabidopsis Yoshida, Saiko van der Schuren, Alja van Dop, Maritza van Galen, Luc Saiga, Shunsuke Adibi, Milad Möller, Barbara ten Hove, Colette A. Marhavy, Peter Smith, Richard Friml, Jiri Weijers, Dolf Nat Plants Article Multicellular development requires coordinated cell polarization relative to body axes, and translation to oriented cell division1–3. In plants, it is unknown how cell polarities are connected to organismal axes and translated to division. Here, we identify Arabidopsis SOSEKI (SOK) proteins that integrate apical-basal and radial organismal axes to localize to polar cell edges. Localization does not depend on tissue context, requires cell wall integrity and is defined by a transferrable, protein-specific motif. A Domain of Unknown Function in SOK proteins resembles the DIX oligomerization domain in the animal Dishevelled polarity regulator. The DIX-like domain self-interacts and is required for edge localization and for influencing division orientation, together with a second domain that defines the polar membrane domain. Our work shows that SOK proteins locally interpret global polarity cues and can influence cell division orientation. Furthermore, this work reveals that despite fundamental differences, cell polarity mechanisms in plants and animals converge upon a similar protein domain. 2019-02-08 2019-02 /pmc/articles/PMC6420093/ /pubmed/30737509 http://dx.doi.org/10.1038/s41477-019-0363-6 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Yoshida, Saiko
van der Schuren, Alja
van Dop, Maritza
van Galen, Luc
Saiga, Shunsuke
Adibi, Milad
Möller, Barbara
ten Hove, Colette A.
Marhavy, Peter
Smith, Richard
Friml, Jiri
Weijers, Dolf
A SOSEKI-based coordinate system interprets global polarity cues in Arabidopsis
title A SOSEKI-based coordinate system interprets global polarity cues in Arabidopsis
title_full A SOSEKI-based coordinate system interprets global polarity cues in Arabidopsis
title_fullStr A SOSEKI-based coordinate system interprets global polarity cues in Arabidopsis
title_full_unstemmed A SOSEKI-based coordinate system interprets global polarity cues in Arabidopsis
title_short A SOSEKI-based coordinate system interprets global polarity cues in Arabidopsis
title_sort soseki-based coordinate system interprets global polarity cues in arabidopsis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6420093/
https://www.ncbi.nlm.nih.gov/pubmed/30737509
http://dx.doi.org/10.1038/s41477-019-0363-6
work_keys_str_mv AT yoshidasaiko asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT vanderschurenalja asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT vandopmaritza asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT vangalenluc asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT saigashunsuke asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT adibimilad asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT mollerbarbara asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT tenhovecolettea asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT marhavypeter asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT smithrichard asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT frimljiri asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT weijersdolf asosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT yoshidasaiko sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT vanderschurenalja sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT vandopmaritza sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT vangalenluc sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT saigashunsuke sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT adibimilad sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT mollerbarbara sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT tenhovecolettea sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT marhavypeter sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT smithrichard sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT frimljiri sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis
AT weijersdolf sosekibasedcoordinatesysteminterpretsglobalpolaritycuesinarabidopsis