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External push and internal pull forces recruit curvature sensing N-BAR domain proteins to the plasma membrane
Many of the more than 20 mammalian proteins with N-BAR domains(1-2) control cell architecture(3) and endocytosis(4-5) by associating with curved sections of the plasma membrane (PM)(6). It is not well understood whether N-BAR proteins are recruited directly by processes that mechanically curve the P...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2012
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3519285/ https://www.ncbi.nlm.nih.gov/pubmed/22750946 http://dx.doi.org/10.1038/ncb2533 |
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author | Galic, Milos Jeong, Sangmoo Tsai, Feng-Chiao Joubert, Lydia-Marie Wu, Yi I. Hahn, Klaus M. Cui, Yi Meyer, Tobias |
author_facet | Galic, Milos Jeong, Sangmoo Tsai, Feng-Chiao Joubert, Lydia-Marie Wu, Yi I. Hahn, Klaus M. Cui, Yi Meyer, Tobias |
author_sort | Galic, Milos |
collection | PubMed |
description | Many of the more than 20 mammalian proteins with N-BAR domains(1-2) control cell architecture(3) and endocytosis(4-5) by associating with curved sections of the plasma membrane (PM)(6). It is not well understood whether N-BAR proteins are recruited directly by processes that mechanically curve the PM or indirectly by PM-associated adaptor proteins that recruit proteins with N-BAR domains that then induce membrane curvature. Here, we show that externally-induced inward deformation of the PM by cone-shaped nanostructures (Nanocones) and internally-induced inward deformation by contracting actin cables both trigger recruitment of isolated N-BAR domains to the curved PM. Markedly, live-cell imaging in adherent cells showed selective recruitment of full length N-BAR proteins and isolated N-BAR domains to PM sub-regions above Nanocone stripes. Electron microscopy confirmed that N-BAR domains are recruited to local membrane sites curved by Nanocones. We further showed that N-BAR domains are periodically recruited to curved PM sites during local lamellipodia retraction in the front of migrating cells. Recruitment required Myosin II-generated force applied to PM connected actin cables. Together, our study shows that N-BAR domains can be directly recruited to the PM by external push or internal pull forces that locally curve the PM. |
format | Online Article Text |
id | pubmed-3519285 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
record_format | MEDLINE/PubMed |
spelling | pubmed-35192852013-02-01 External push and internal pull forces recruit curvature sensing N-BAR domain proteins to the plasma membrane Galic, Milos Jeong, Sangmoo Tsai, Feng-Chiao Joubert, Lydia-Marie Wu, Yi I. Hahn, Klaus M. Cui, Yi Meyer, Tobias Nat Cell Biol Article Many of the more than 20 mammalian proteins with N-BAR domains(1-2) control cell architecture(3) and endocytosis(4-5) by associating with curved sections of the plasma membrane (PM)(6). It is not well understood whether N-BAR proteins are recruited directly by processes that mechanically curve the PM or indirectly by PM-associated adaptor proteins that recruit proteins with N-BAR domains that then induce membrane curvature. Here, we show that externally-induced inward deformation of the PM by cone-shaped nanostructures (Nanocones) and internally-induced inward deformation by contracting actin cables both trigger recruitment of isolated N-BAR domains to the curved PM. Markedly, live-cell imaging in adherent cells showed selective recruitment of full length N-BAR proteins and isolated N-BAR domains to PM sub-regions above Nanocone stripes. Electron microscopy confirmed that N-BAR domains are recruited to local membrane sites curved by Nanocones. We further showed that N-BAR domains are periodically recruited to curved PM sites during local lamellipodia retraction in the front of migrating cells. Recruitment required Myosin II-generated force applied to PM connected actin cables. Together, our study shows that N-BAR domains can be directly recruited to the PM by external push or internal pull forces that locally curve the PM. 2012-07-01 2012-08 /pmc/articles/PMC3519285/ /pubmed/22750946 http://dx.doi.org/10.1038/ncb2533 Text en Users may view, print, copy, download and 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 Galic, Milos Jeong, Sangmoo Tsai, Feng-Chiao Joubert, Lydia-Marie Wu, Yi I. Hahn, Klaus M. Cui, Yi Meyer, Tobias External push and internal pull forces recruit curvature sensing N-BAR domain proteins to the plasma membrane |
title | External push and internal pull forces recruit curvature sensing N-BAR domain proteins to the plasma membrane |
title_full | External push and internal pull forces recruit curvature sensing N-BAR domain proteins to the plasma membrane |
title_fullStr | External push and internal pull forces recruit curvature sensing N-BAR domain proteins to the plasma membrane |
title_full_unstemmed | External push and internal pull forces recruit curvature sensing N-BAR domain proteins to the plasma membrane |
title_short | External push and internal pull forces recruit curvature sensing N-BAR domain proteins to the plasma membrane |
title_sort | external push and internal pull forces recruit curvature sensing n-bar domain proteins to the plasma membrane |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3519285/ https://www.ncbi.nlm.nih.gov/pubmed/22750946 http://dx.doi.org/10.1038/ncb2533 |
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