Back to Search Start Over

Acute inactivation of retromer and ESCPE-1 leads to time-resolved defects in endosomal cargo sorting

Authors :
Anis N. K. Anuar
Boris Simonetti
James L. Daly
Peter J. Cullen
Ashley J. Evans
Source :
Evans, A J, Daly, J, Anuar, A N K, Simonetti, B & Cullen, P J 2020, ' Acute inactivation of retromer and ESCPE-1 leads to time-resolved defects in endosomal cargo sorting ', Journal of Cell Science, vol. 133, jcs246033 . https://doi.org/10.1242/jcs.246033, Journal of Cell Science, article-version (VoR) Version of Record
Publication Year :
2020
Publisher :
The Company of Biologists, 2020.

Abstract

Human retromer, a heterotrimer of VPS26 (VPS26A or VPS26B), VPS35 and VPS29, orchestrates the endosomal retrieval of internalised cargo and promotes their cell surface recycling, a prototypical cargo being the glucose transporter GLUT1 (also known as SLC2A1). The role of retromer in the retrograde sorting of the cation-independent mannose 6-phosphate receptor (CI-MPR, also known as IGF2R) from endosomes back to the trans-Golgi network remains controversial. Here, by applying knocksideways technology, we develop a method for acute retromer inactivation. While retromer knocksideways in HeLa and H4 human neuroglioma cells resulted in time-resolved defects in cell surface sorting of GLUT1, we failed to observe a quantifiable defect in CI-MPR sorting. In contrast, knocksideways of the ESCPE-1 complex – a key regulator of retrograde CI-MPR sorting – revealed time-resolved defects in CI-MPR sorting. Together, these data are consistent with a comparatively limited role for retromer in ESCPE-1-mediated CI-MPR retrograde sorting, and establish a methodology for acute retromer and ESCPE-1 inactivation that will aid the time-resolved dissection of their functional roles in endosomal cargo sorting.<br />Summary: Retromer, a master controller of endosomal cargo sorting, is deregulated in neurodegenerative disease. Here, we develop and apply a retromer knocksideways methodology to quantify endosomal cargo sorting upon acute perturbation.

Details

ISSN :
14779137 and 00219533
Volume :
133
Database :
OpenAIRE
Journal :
Journal of Cell Science
Accession number :
edsair.doi.dedup.....2ebd333ea07604df45bea0aa8624046f