Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/1453
Title: ATP-dependent membrane remodeling links EHD1 functions to endocytic recycling
Authors: DEO, RAUNAQ
KUSHWAH, MANISH S.
KAMERKAR, SUKRUT C.
Kadam, Nagesh Y.
Dar, Srishti
Babu, Kavita
Srivastava, Anant Kumar
PUCADYIL, THOMAS J.
Dept. of Biology
Keywords: Real-Time Analysis
Conformational-Changes
Structural Insights
plasma-membrane
Dynamin
Proteins
Fission
Curvature
Compartment
Mechanisms
TOC-DEC-2018
2018
Issue Date: Dec-2018
Publisher: Nature Publishing Group
Citation: Nature Communications, 5.
Abstract: Endocytic and recycling pathways generate cargo-laden transport carriers by membrane fission. Classical dynamins, which generate transport carriers during endocytosis, constrict and cause fission of membrane tubes in response to GTP hydrolysis. Relatively, less is known about the ATP-binding Eps15-homology domain-containing protein1 (EHD1), a dynamin family member that functions at the endocytic-recycling compartment. Here, we show using cross complementation assays in C. elegans that EHD1’s membrane binding and ATP hydrolysis activities are necessary for endocytic recycling. Further, we show that ATP-bound EHD1 forms membrane-active scaffolds that bulge tubular model membranes. ATP hydrolysis promotes scaffold self-assembly, causing the bulge to extend and thin down intermediate regions on the tube. On tubes below 25 nm in radius, such thinning leads to scission. Molecular dynamics simulations corroborate this scission pathway. Deletion of N-terminal residues causes defects in stable scaffolding, scission and endocytic recycling. Thus, ATP hydrolysis-dependent membrane remodeling links EHD1 functions to endocytic recycling.
URI: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/1453
https://doi.org/10.1038/s41467-018-07586-z
ISSN: 2041-1723
Appears in Collections:JOURNAL ARTICLES

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