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AGC kinases and MAB4/MEL proteins maintain PIN polarity by limiting lateral diffusion in plant cells

Polar subcellular localization of the PIN exporters of the phytohormone auxin is a key determinant of directional, intercellular auxin transport and thus a central topic of both plant cell and developmental biology. Arabidopsis mutants lacking PID, a kinase that phosphorylates PINs, or the MAB4/MEL...

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Autores principales: Glanc, Matouš, Van Gelderen, Kasper, Hoermayer, Lukas, Tan, Shutang, Naramoto, Satoshi, Zhang, Xixi, Domjan, David, Včelařová, Ludmila, Hauschild, Robert, Johnson, Alexander, de Koning, Edward, van Dop, Maritza, Rademacher, Eike, Janson, Stef, Wei, Xiaoyu, Molnár, Gergely, Fendrych, Matyáš, De Rybel, Bert, Offringa, Remko, Friml, Jiří
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8112251/
https://www.ncbi.nlm.nih.gov/pubmed/33705718
http://dx.doi.org/10.1016/j.cub.2021.02.028
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author Glanc, Matouš
Van Gelderen, Kasper
Hoermayer, Lukas
Tan, Shutang
Naramoto, Satoshi
Zhang, Xixi
Domjan, David
Včelařová, Ludmila
Hauschild, Robert
Johnson, Alexander
de Koning, Edward
van Dop, Maritza
Rademacher, Eike
Janson, Stef
Wei, Xiaoyu
Molnár, Gergely
Fendrych, Matyáš
De Rybel, Bert
Offringa, Remko
Friml, Jiří
author_facet Glanc, Matouš
Van Gelderen, Kasper
Hoermayer, Lukas
Tan, Shutang
Naramoto, Satoshi
Zhang, Xixi
Domjan, David
Včelařová, Ludmila
Hauschild, Robert
Johnson, Alexander
de Koning, Edward
van Dop, Maritza
Rademacher, Eike
Janson, Stef
Wei, Xiaoyu
Molnár, Gergely
Fendrych, Matyáš
De Rybel, Bert
Offringa, Remko
Friml, Jiří
author_sort Glanc, Matouš
collection PubMed
description Polar subcellular localization of the PIN exporters of the phytohormone auxin is a key determinant of directional, intercellular auxin transport and thus a central topic of both plant cell and developmental biology. Arabidopsis mutants lacking PID, a kinase that phosphorylates PINs, or the MAB4/MEL proteins of unknown molecular function display PIN polarity defects and phenocopy pin mutants, but mechanistic insights into how these factors convey PIN polarity are missing. Here, by combining protein biochemistry with quantitative live-cell imaging, we demonstrate that PINs, MAB4/MELs, and AGC kinases interact in the same complex at the plasma membrane. MAB4/MELs are recruited to the plasma membrane by the PINs and in concert with the AGC kinases maintain PIN polarity through limiting lateral diffusion-based escape of PINs from the polar domain. The PIN-MAB4/MEL-PID protein complex has self-reinforcing properties thanks to positive feedback between AGC kinase-mediated PIN phosphorylation and MAB4/MEL recruitment. We thus uncover the molecular mechanism by which AGC kinases and MAB4/MEL proteins regulate PIN localization and plant development.
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spelling pubmed-81122512021-05-14 AGC kinases and MAB4/MEL proteins maintain PIN polarity by limiting lateral diffusion in plant cells Glanc, Matouš Van Gelderen, Kasper Hoermayer, Lukas Tan, Shutang Naramoto, Satoshi Zhang, Xixi Domjan, David Včelařová, Ludmila Hauschild, Robert Johnson, Alexander de Koning, Edward van Dop, Maritza Rademacher, Eike Janson, Stef Wei, Xiaoyu Molnár, Gergely Fendrych, Matyáš De Rybel, Bert Offringa, Remko Friml, Jiří Curr Biol Article Polar subcellular localization of the PIN exporters of the phytohormone auxin is a key determinant of directional, intercellular auxin transport and thus a central topic of both plant cell and developmental biology. Arabidopsis mutants lacking PID, a kinase that phosphorylates PINs, or the MAB4/MEL proteins of unknown molecular function display PIN polarity defects and phenocopy pin mutants, but mechanistic insights into how these factors convey PIN polarity are missing. Here, by combining protein biochemistry with quantitative live-cell imaging, we demonstrate that PINs, MAB4/MELs, and AGC kinases interact in the same complex at the plasma membrane. MAB4/MELs are recruited to the plasma membrane by the PINs and in concert with the AGC kinases maintain PIN polarity through limiting lateral diffusion-based escape of PINs from the polar domain. The PIN-MAB4/MEL-PID protein complex has self-reinforcing properties thanks to positive feedback between AGC kinase-mediated PIN phosphorylation and MAB4/MEL recruitment. We thus uncover the molecular mechanism by which AGC kinases and MAB4/MEL proteins regulate PIN localization and plant development. Cell Press 2021-05-10 /pmc/articles/PMC8112251/ /pubmed/33705718 http://dx.doi.org/10.1016/j.cub.2021.02.028 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Glanc, Matouš
Van Gelderen, Kasper
Hoermayer, Lukas
Tan, Shutang
Naramoto, Satoshi
Zhang, Xixi
Domjan, David
Včelařová, Ludmila
Hauschild, Robert
Johnson, Alexander
de Koning, Edward
van Dop, Maritza
Rademacher, Eike
Janson, Stef
Wei, Xiaoyu
Molnár, Gergely
Fendrych, Matyáš
De Rybel, Bert
Offringa, Remko
Friml, Jiří
AGC kinases and MAB4/MEL proteins maintain PIN polarity by limiting lateral diffusion in plant cells
title AGC kinases and MAB4/MEL proteins maintain PIN polarity by limiting lateral diffusion in plant cells
title_full AGC kinases and MAB4/MEL proteins maintain PIN polarity by limiting lateral diffusion in plant cells
title_fullStr AGC kinases and MAB4/MEL proteins maintain PIN polarity by limiting lateral diffusion in plant cells
title_full_unstemmed AGC kinases and MAB4/MEL proteins maintain PIN polarity by limiting lateral diffusion in plant cells
title_short AGC kinases and MAB4/MEL proteins maintain PIN polarity by limiting lateral diffusion in plant cells
title_sort agc kinases and mab4/mel proteins maintain pin polarity by limiting lateral diffusion in plant cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8112251/
https://www.ncbi.nlm.nih.gov/pubmed/33705718
http://dx.doi.org/10.1016/j.cub.2021.02.028
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