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Transient Fcho1/2⋅Eps15/R⋅AP-2 Nanoclusters Prime the AP-2 Clathrin Adaptor for Cargo Binding

Clathrin-coated vesicles form by rapid assembly of discrete coat constituents into a cargo-sorting lattice. How the sequential phases of coat construction are choreographed is unclear, but transient protein-protein interactions mediated by short interaction motifs are pivotal. We show that arrayed A...

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Autores principales: Ma, Li, Umasankar, Perunthottathu K., Wrobel, Antoni G., Lymar, Anastasia, McCoy, Airlie J., Holkar, Sachin S., Jha, Anupma, Pradhan-Sundd, Tirthadipa, Watkins, Simon C., Owen, David J., Traub, Linton M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4921775/
https://www.ncbi.nlm.nih.gov/pubmed/27237791
http://dx.doi.org/10.1016/j.devcel.2016.05.003
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author Ma, Li
Umasankar, Perunthottathu K.
Wrobel, Antoni G.
Lymar, Anastasia
McCoy, Airlie J.
Holkar, Sachin S.
Jha, Anupma
Pradhan-Sundd, Tirthadipa
Watkins, Simon C.
Owen, David J.
Traub, Linton M.
author_facet Ma, Li
Umasankar, Perunthottathu K.
Wrobel, Antoni G.
Lymar, Anastasia
McCoy, Airlie J.
Holkar, Sachin S.
Jha, Anupma
Pradhan-Sundd, Tirthadipa
Watkins, Simon C.
Owen, David J.
Traub, Linton M.
author_sort Ma, Li
collection PubMed
description Clathrin-coated vesicles form by rapid assembly of discrete coat constituents into a cargo-sorting lattice. How the sequential phases of coat construction are choreographed is unclear, but transient protein-protein interactions mediated by short interaction motifs are pivotal. We show that arrayed Asp-Pro-Phe (DPF) motifs within the early-arriving endocytic pioneers Eps15/R are differentially decoded by other endocytic pioneers Fcho1/2 and AP-2. The structure of an Eps15/R⋅Fcho1 μ-homology domain complex reveals a spacing-dependent DPF triad, bound in a mechanistically distinct way from the mode of single DPF binding to AP-2. Using cells lacking FCHO1/2 and with Eps15 sequestered from the plasma membrane, we establish that without these two endocytic pioneers, AP-2 assemblies are fleeting and endocytosis stalls. Thus, distinct DPF-based codes within the unstructured Eps15/R C terminus direct the assembly of temporary Fcho1/2⋅Eps15/R⋅AP-2 ternary complexes to facilitate conformational activation of AP-2 by the Fcho1/2 interdomain linker to promote AP-2 cargo engagement.
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spelling pubmed-49217752016-07-12 Transient Fcho1/2⋅Eps15/R⋅AP-2 Nanoclusters Prime the AP-2 Clathrin Adaptor for Cargo Binding Ma, Li Umasankar, Perunthottathu K. Wrobel, Antoni G. Lymar, Anastasia McCoy, Airlie J. Holkar, Sachin S. Jha, Anupma Pradhan-Sundd, Tirthadipa Watkins, Simon C. Owen, David J. Traub, Linton M. Dev Cell Article Clathrin-coated vesicles form by rapid assembly of discrete coat constituents into a cargo-sorting lattice. How the sequential phases of coat construction are choreographed is unclear, but transient protein-protein interactions mediated by short interaction motifs are pivotal. We show that arrayed Asp-Pro-Phe (DPF) motifs within the early-arriving endocytic pioneers Eps15/R are differentially decoded by other endocytic pioneers Fcho1/2 and AP-2. The structure of an Eps15/R⋅Fcho1 μ-homology domain complex reveals a spacing-dependent DPF triad, bound in a mechanistically distinct way from the mode of single DPF binding to AP-2. Using cells lacking FCHO1/2 and with Eps15 sequestered from the plasma membrane, we establish that without these two endocytic pioneers, AP-2 assemblies are fleeting and endocytosis stalls. Thus, distinct DPF-based codes within the unstructured Eps15/R C terminus direct the assembly of temporary Fcho1/2⋅Eps15/R⋅AP-2 ternary complexes to facilitate conformational activation of AP-2 by the Fcho1/2 interdomain linker to promote AP-2 cargo engagement. Cell Press 2016-06-06 /pmc/articles/PMC4921775/ /pubmed/27237791 http://dx.doi.org/10.1016/j.devcel.2016.05.003 Text en © 2016 The Authors. Published by Elsevier Inc. http://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
Ma, Li
Umasankar, Perunthottathu K.
Wrobel, Antoni G.
Lymar, Anastasia
McCoy, Airlie J.
Holkar, Sachin S.
Jha, Anupma
Pradhan-Sundd, Tirthadipa
Watkins, Simon C.
Owen, David J.
Traub, Linton M.
Transient Fcho1/2⋅Eps15/R⋅AP-2 Nanoclusters Prime the AP-2 Clathrin Adaptor for Cargo Binding
title Transient Fcho1/2⋅Eps15/R⋅AP-2 Nanoclusters Prime the AP-2 Clathrin Adaptor for Cargo Binding
title_full Transient Fcho1/2⋅Eps15/R⋅AP-2 Nanoclusters Prime the AP-2 Clathrin Adaptor for Cargo Binding
title_fullStr Transient Fcho1/2⋅Eps15/R⋅AP-2 Nanoclusters Prime the AP-2 Clathrin Adaptor for Cargo Binding
title_full_unstemmed Transient Fcho1/2⋅Eps15/R⋅AP-2 Nanoclusters Prime the AP-2 Clathrin Adaptor for Cargo Binding
title_short Transient Fcho1/2⋅Eps15/R⋅AP-2 Nanoclusters Prime the AP-2 Clathrin Adaptor for Cargo Binding
title_sort transient fcho1/2⋅eps15/r⋅ap-2 nanoclusters prime the ap-2 clathrin adaptor for cargo binding
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4921775/
https://www.ncbi.nlm.nih.gov/pubmed/27237791
http://dx.doi.org/10.1016/j.devcel.2016.05.003
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