Cargando…

The TPLATE complex mediates membrane bending during plant clathrin–mediated endocytosis

Clathrin-mediated endocytosis is the major route of entry of cargos into cells and thus underpins many physiological processes. During endocytosis, an area of flat membrane is remodeled by proteins to create a spherical vesicle against intracellular forces. The protein machinery which mediates this...

Descripción completa

Detalles Bibliográficos
Autores principales: Johnson, Alexander, Dahhan, Dana A., Gnyliukh, Nataliia, Kaufmann, Walter A., Zheden, Vanessa, Costanzo, Tommaso, Mahou, Pierre, Hrtyan, Mónika, Wang, Jie, Aguilera-Servin, Juan, Van Damme, Daniël, Beaurepaire, Emmanuel, Loose, Martin, Bednarek, Sebastian Y., Friml, Jiří
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8691179/
https://www.ncbi.nlm.nih.gov/pubmed/34907016
http://dx.doi.org/10.1073/pnas.2113046118
_version_ 1784618754046427136
author Johnson, Alexander
Dahhan, Dana A.
Gnyliukh, Nataliia
Kaufmann, Walter A.
Zheden, Vanessa
Costanzo, Tommaso
Mahou, Pierre
Hrtyan, Mónika
Wang, Jie
Aguilera-Servin, Juan
Van Damme, Daniël
Beaurepaire, Emmanuel
Loose, Martin
Bednarek, Sebastian Y.
Friml, Jiří
author_facet Johnson, Alexander
Dahhan, Dana A.
Gnyliukh, Nataliia
Kaufmann, Walter A.
Zheden, Vanessa
Costanzo, Tommaso
Mahou, Pierre
Hrtyan, Mónika
Wang, Jie
Aguilera-Servin, Juan
Van Damme, Daniël
Beaurepaire, Emmanuel
Loose, Martin
Bednarek, Sebastian Y.
Friml, Jiří
author_sort Johnson, Alexander
collection PubMed
description Clathrin-mediated endocytosis is the major route of entry of cargos into cells and thus underpins many physiological processes. During endocytosis, an area of flat membrane is remodeled by proteins to create a spherical vesicle against intracellular forces. The protein machinery which mediates this membrane bending in plants is unknown. However, it is known that plant endocytosis is actin independent, thus indicating that plants utilize a unique mechanism to mediate membrane bending against high-turgor pressure compared to other model systems. Here, we investigate the TPLATE complex, a plant-specific endocytosis protein complex. It has been thought to function as a classical adaptor functioning underneath the clathrin coat. However, by using biochemical and advanced live microscopy approaches, we found that TPLATE is peripherally associated with clathrin-coated vesicles and localizes at the rim of endocytosis events. As this localization is more fitting to the protein machinery involved in membrane bending during endocytosis, we examined cells in which the TPLATE complex was disrupted and found that the clathrin structures present as flat patches. This suggests a requirement of the TPLATE complex for membrane bending during plant clathrin–mediated endocytosis. Next, we used in vitro biophysical assays to confirm that the TPLATE complex possesses protein domains with intrinsic membrane remodeling activity. These results redefine the role of the TPLATE complex and implicate it as a key component of the evolutionarily distinct plant endocytosis mechanism, which mediates endocytic membrane bending against the high-turgor pressure in plant cells.
format Online
Article
Text
id pubmed-8691179
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-86911792022-01-21 The TPLATE complex mediates membrane bending during plant clathrin–mediated endocytosis Johnson, Alexander Dahhan, Dana A. Gnyliukh, Nataliia Kaufmann, Walter A. Zheden, Vanessa Costanzo, Tommaso Mahou, Pierre Hrtyan, Mónika Wang, Jie Aguilera-Servin, Juan Van Damme, Daniël Beaurepaire, Emmanuel Loose, Martin Bednarek, Sebastian Y. Friml, Jiří Proc Natl Acad Sci U S A Biological Sciences Clathrin-mediated endocytosis is the major route of entry of cargos into cells and thus underpins many physiological processes. During endocytosis, an area of flat membrane is remodeled by proteins to create a spherical vesicle against intracellular forces. The protein machinery which mediates this membrane bending in plants is unknown. However, it is known that plant endocytosis is actin independent, thus indicating that plants utilize a unique mechanism to mediate membrane bending against high-turgor pressure compared to other model systems. Here, we investigate the TPLATE complex, a plant-specific endocytosis protein complex. It has been thought to function as a classical adaptor functioning underneath the clathrin coat. However, by using biochemical and advanced live microscopy approaches, we found that TPLATE is peripherally associated with clathrin-coated vesicles and localizes at the rim of endocytosis events. As this localization is more fitting to the protein machinery involved in membrane bending during endocytosis, we examined cells in which the TPLATE complex was disrupted and found that the clathrin structures present as flat patches. This suggests a requirement of the TPLATE complex for membrane bending during plant clathrin–mediated endocytosis. Next, we used in vitro biophysical assays to confirm that the TPLATE complex possesses protein domains with intrinsic membrane remodeling activity. These results redefine the role of the TPLATE complex and implicate it as a key component of the evolutionarily distinct plant endocytosis mechanism, which mediates endocytic membrane bending against the high-turgor pressure in plant cells. National Academy of Sciences 2021-12-14 2021-12-21 /pmc/articles/PMC8691179/ /pubmed/34907016 http://dx.doi.org/10.1073/pnas.2113046118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Johnson, Alexander
Dahhan, Dana A.
Gnyliukh, Nataliia
Kaufmann, Walter A.
Zheden, Vanessa
Costanzo, Tommaso
Mahou, Pierre
Hrtyan, Mónika
Wang, Jie
Aguilera-Servin, Juan
Van Damme, Daniël
Beaurepaire, Emmanuel
Loose, Martin
Bednarek, Sebastian Y.
Friml, Jiří
The TPLATE complex mediates membrane bending during plant clathrin–mediated endocytosis
title The TPLATE complex mediates membrane bending during plant clathrin–mediated endocytosis
title_full The TPLATE complex mediates membrane bending during plant clathrin–mediated endocytosis
title_fullStr The TPLATE complex mediates membrane bending during plant clathrin–mediated endocytosis
title_full_unstemmed The TPLATE complex mediates membrane bending during plant clathrin–mediated endocytosis
title_short The TPLATE complex mediates membrane bending during plant clathrin–mediated endocytosis
title_sort tplate complex mediates membrane bending during plant clathrin–mediated endocytosis
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8691179/
https://www.ncbi.nlm.nih.gov/pubmed/34907016
http://dx.doi.org/10.1073/pnas.2113046118
work_keys_str_mv AT johnsonalexander thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT dahhandanaa thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT gnyliukhnataliia thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT kaufmannwaltera thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT zhedenvanessa thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT costanzotommaso thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT mahoupierre thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT hrtyanmonika thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT wangjie thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT aguileraservinjuan thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT vandammedaniel thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT beaurepaireemmanuel thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT loosemartin thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT bednareksebastiany thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT frimljiri thetplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT johnsonalexander tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT dahhandanaa tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT gnyliukhnataliia tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT kaufmannwaltera tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT zhedenvanessa tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT costanzotommaso tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT mahoupierre tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT hrtyanmonika tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT wangjie tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT aguileraservinjuan tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT vandammedaniel tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT beaurepaireemmanuel tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT loosemartin tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT bednareksebastiany tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis
AT frimljiri tplatecomplexmediatesmembranebendingduringplantclathrinmediatedendocytosis