Regulated targeting of the monotopic hairpin membrane protein Erg1 requires the GET pathway

2022 | journal article; research paper. A publication with affiliation to the University of Göttingen.

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​Regulated targeting of the monotopic hairpin membrane protein Erg1 requires the GET pathway​
Farkas, Á.; Urlaub, H. ; Bohnsack, K. E. & Schwappach, B. ​ (2022) 
Journal of Cell Biology221(6) art. e202201036​.​ DOI: https://doi.org/10.1083/jcb.202201036 

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Authors
Farkas, Ákos; Urlaub, Henning ; Bohnsack, Katherine E.; Schwappach, Blanche 
Abstract
The guided entry of tail-anchored proteins (GET) pathway targets C-terminally anchored transmembrane proteins and protects cells from lipotoxicity. Here, we reveal perturbed ergosterol production in ∆get3 cells and demonstrate the sensitivity of GET pathway mutants to the sterol synthesis inhibiting drug terbinafine. Our data uncover a key enzyme of sterol synthesis, the hairpin membrane protein squalene monooxygenase (Erg1), as a non-canonical GET pathway client, thus rationalizing the lipotoxicity phenotypes of GET pathway mutants. Get3 recognizes the hairpin targeting element of Erg1 via its classical client-binding pocket. Intriguingly, we find that the GET pathway is especially important for the acute upregulation of Erg1 induced by low sterol conditions. We further identify several other proteins anchored to the endoplasmic reticulum (ER) membrane exclusively via a hairpin as putative clients of the GET pathway. Our findings emphasize the necessity of dedicated targeting pathways for high-efficiency targeting of particular clients during dynamic cellular adaptation and highlight hairpin proteins as a potential novel class of GET clients.
Issue Date
2022
Journal
Journal of Cell Biology 
Project
SFB 1190: Transportmaschinen und Kontaktstellen zellulärer Kompartimente 
SFB 1190 | P04: Der GET-Rezeptor als ein Eingangstor zum ER und sein Zusammenspiel mit GET bodies 
SFB 1190 | Z02: Massenspektrometrie-basierte Proteomanalyse 
EXC 2067: Multiscale Bioimaging 
Working Group
RG K. Bohnsack (RNA Metabolism) 
RG Schwappach (Membrane Protein Biogenesis) 
ISSN
0021-9525
eISSN
1540-8140
Language
English
Sponsor
Deutsche Forschungsgemeinschaft
Germany’s Excellence Strategy
Max Planck Foundation
Deutsche Forschungsgemeinschaft

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