Integrating intracellular nanovesicles into integrin trafficking pathways and beyond

[thumbnail of WRAP-integrating-intracellular-nanovesicles-into-integrin-trafficking-pathways-beyond-Royle-2022.pdf]
Preview
PDF
WRAP-integrating-intracellular-nanovesicles-into-integrin-trafficking-pathways-beyond-Royle-2022.pdf - Published Version - Requires a PDF viewer.
Available under License Creative Commons Attribution 4.0.

Download (3MB) | Preview

Request Changes to record.

Abstract

Membrane traffic controls the movement of proteins and lipids from one cellular compartment to another using a system of transport vesicles. Intracellular nanovesicles (INVs) are a newly described class of transport vesicles. These vesicles are small, carry diverse cargo, and are involved in multiple trafficking steps including anterograde traffic and endosomal recycling. An example of a biological process that they control is cell migration and invasion, due to their role in integrin recycling. In this review, we describe what is known so far about these vesicles. We discuss how INVs may integrate into established membrane trafficking pathways using integrin recycling as an example. We speculate where in the cell INVs have the potential to operate and we identify key questions for future investigation.

Item Type: Journal Article
Subjects: Q Science > QH Natural history > QH426 Genetics
Divisions: Faculty of Science, Engineering and Medicine > Medicine > Warwick Medical School > Biomedical Sciences > Cell & Developmental Biology
Faculty of Science, Engineering and Medicine > Medicine > Warwick Medical School > Biomedical Sciences
Faculty of Science, Engineering and Medicine > Medicine > Warwick Medical School
SWORD Depositor: Library Publications Router
Library of Congress Subject Headings (LCSH): Biological transport -- Regulation, Cell migration, Integrins, Cell adhesion molecules, Proteins -- Physiological transport
Journal or Publication Title: Cellular and Molecular Life Sciences
Publisher: Springer International Publishing
ISSN: 1420-9071
Official Date: 3 June 2022
Dates:
Date
Event
3 June 2022
Published
11 May 2022
Accepted
Volume: 79
Number: 6
Article Number: 335
DOI: 10.1007/s00018-022-04371-6
Status: Peer Reviewed
Publication Status: Published
Access rights to Published version: Open Access (Creative Commons open licence)
Date of first compliant deposit: 9 August 2022
Date of first compliant Open Access: 16 August 2022
RIOXX Funder/Project Grant:
Project/Grant ID
RIOXX Funder Name
Funder ID
BB/V003062/1
UK Research and Innovation
URI: https://wrap.warwick.ac.uk/166730/

Export / Share Citation


Request changes or add full text files to a record

Repository staff actions (login required)

View Item View Item