The ER membrane protein complex (EMC) promotes biogenesis of sterol-related enzymes maintaining cholesterol homeostasis

Author:

Volkmar Norbert1,Thezenas Maria-Laetitia2,Louie Sharon M.3,Juszkiewicz Szymon4ORCID,Nomura Daniel K.3ORCID,Hegde Ramanujan S.4ORCID,Kessler Benedikt M.2ORCID,Christianson John C.15ORCID

Affiliation:

1. Ludwig Institute for Cancer Research, University of Oxford, ORCRB, Headington, Oxford, OX3 7DQ, UK

2. Target Discovery Institute (TDI) Mass Spectrometry Laboratory, Nuffield Department of Medicine, University of Oxford, Headington, Oxford, OX3 7DQ, UK

3. Dept. of Chemistry, Molecular and Cell Biology, and Nutritional Sciences and Toxicology, University of California-Berkeley, Berkeley, CA, 94720, USA

4. MRC Laboratory of Molecular Biology, Francis Crick Avenue, Cambridge CB2 0QH, UK

5. Oxford Centre for Translational Myeloma Research, NDORMS, University of Oxford, Botnar Bldg., Headington, Oxford, OX3 7LD, UK

Abstract

The eukaryotic endoplasmic reticulum (ER) membrane contains essential complexes that oversee protein biogenesis and lipid metabolism, impacting nearly all aspects of cell physiology. The ER Membrane protein Complex (EMC) is a newly described transmembrane domain (TMD) insertase linked with various phenotypes, but whose clients and cellular responsibilities remain incompletely understood. We report that EMC-deficiency limits the cellular boundaries defining cholesterol tolerance, reflected by diminished viability with limiting or excessive extracellular cholesterol. Lipidomic and proteomic analyses revealed defective biogenesis and concomitant loss of the TMD-containing ER-resident enzymes sterol-O-acyltransferase 1 (SOAT1) and squalene synthase (SQS), which serve strategic roles in adapting cells to changes in cholesterol availability. Insertion of the weakly hydrophobic tail-anchor (TA) of SQS into the ER membrane by the EMC ensures sufficient flux through the sterol biosynthetic pathway while biogenesis of polytopic SOAT1 promoted by the EMC provides cells with the ability to store free cholesterol as inert cholesteryl esters. By facilitating insertion of TMDs that permit essential mammalian sterol-regulating enzymes to mature accurately, the EMC is an important biogenic determinant of cellular robustness to fluctuations in cholesterol availability.

Funder

Medical Research Council

National Institutes of Health

John Fell Fund, University of Oxford

Wellcome Trust

Publisher

The Company of Biologists

Subject

Cell Biology

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