ERLIN1/2 scaffolds bridge TMUB1 and RNF170 and restrict cholesterol esterification to regulate the secretory pathway

Author:

Veronese Matteo12,Kallabis Sebastian12,Kaczmarek Alexander Tobias12ORCID,Das Anushka12ORCID,Robers Lennart12,Schumacher Simon23,Lofrano Alessia12,Brodesser Susanne23ORCID,Müller Stefan2,Hofmann Kay1ORCID,Krüger Marcus124,Rugarli Elena I124ORCID

Affiliation:

1. Institute for Genetics, University of Cologne

2. Cologne Excellence Cluster on Cellular Stress Responses in Aging-Associated Diseases (CECAD), Cologne, Germany

3. Faculty of Medicine and University Hospital Cologne, Cologne, Germany

4. Center for Molecular Medicine (CMMC), University of Cologne

Abstract

Complexes of ERLIN1 and ERLIN2 (ER lipid raft–associated 1 and 2) form large ring-like cup-shaped structures on the endoplasmic reticulum (ER) membrane and serve as platforms to bind cholesterol and E3 ubiquitin ligases, potentially defining functional nanodomains. Here, we show that ERLIN scaffolds mediate the interaction between the full-length isoform of TMUB1 (transmembrane and ubiquitin-like domain–containing 1) and RNF170 (RING finger protein 170). We identify a luminal N-terminal conserved region in TMUB1 and RNF170, which is required for this interaction. Three-dimensional modelling shows that this conserved motif binds the stomatin/prohibitin/flotillin/HflKC domain of two adjacent ERLIN subunits at different interfaces. Protein variants that preclude these interactions have been previously linked to hereditary spastic paraplegia. Using omics-based approaches in combination with phenotypic characterization of HeLa cells lacking both ERLINs, we demonstrate a role of ERLIN scaffolds in limiting cholesterol esterification, thereby favouring cholesterol transport from the ER to the Golgi apparatus and regulating Golgi morphology and the secretory pathway.

Funder

Deutsche Forschungsgemeinschaft

Walter and Monika Neupert Foundation

Publisher

Life Science Alliance, LLC

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