Differential reliance of CTD-nuclear envelope phosphatase 1 on its regulatory subunit in ER lipid synthesis and storage

Lipin 1 is an ER enzyme that produces diacylglycerol, the lipid intermediate that feeds into the synthesis of glycerophospholipids for membrane expansion or triacylglycerol for storage into lipid droplets. CTD-Nuclear Envelope Phosphatase 1 (CTDNEP1) regulates lipin 1 to restrict ER membrane synthes...

Full description

Saved in:
Bibliographic Details
Published inMolecular biology of the cell Vol. 35; no. 7; p. mbcE23090382
Main Authors Rodríguez, Jake W Carrasquillo, Uche, Onyedikachi, Gao, Shujuan, Lee, Shoken, Airola, Michael V, Bahmanyar, Shirin
Format Journal Article
LanguageEnglish
Published United States The American Society for Cell Biology 01.07.2024
SeriesHighlights from
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:Lipin 1 is an ER enzyme that produces diacylglycerol, the lipid intermediate that feeds into the synthesis of glycerophospholipids for membrane expansion or triacylglycerol for storage into lipid droplets. CTD-Nuclear Envelope Phosphatase 1 (CTDNEP1) regulates lipin 1 to restrict ER membrane synthesis, but a role for CTDNEP1 in lipid storage in mammalian cells is not known. Here, we show that CTDNEP1 is reliant on its binding partner NEP1R1 for its stability and function in limiting ER expansion. CTDNEP1 contains an amphipathic helix at its N-terminus that targets to the ER, nuclear envelope and lipid droplets. We identify key residues at the binding interface of CTDNEP1 and NEP1R1 and show that they facilitate complex formation and . We demonstrate that NEP1R1 binding to CTDNEP1 shields CTDNEP1 from proteasomal degradation to regulate lipin 1 and restrict ER size. Unexpectedly, we found that NEP1R1 is not required for CTDNEP1's role in restricting lipid droplet biogenesis. Thus, the reliance of CTDNEP1 function on NEP1R1 depends on cellular demands for membrane production versus lipid storage. Together, our work provides a framework into understanding how the ER regulates lipid synthesis under different metabolic conditions.
Bibliography:ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 23
NIH (T32 GM722345)
Contributions: J.W.C.R. and S.B. conceived the project. J.W.CR. performed most of the experiments and data analysis. O.U. performed experiments for ER expansion, nuclear solidity and lipin 1 localization in the CTDNEP1-HA stable variants. S.G. performed experiments for protein purification, size exclusion chromatography and p-NPP analysis of CTDNEP1/NEP1R1 in-vitro with M.V.A. supervision. S.L. performed experiments in endogenously tagged CTDNEP1^mAID-HA cells for NEP1R1 RNAi, wrote the IJ Macro and Python scripts for LD analysis. J.W.C.R., M.V.A., and S.B. wrote the manuscript with input from other authors. S.B. and M.V.A supervised the project.
National Institutes of Health (NIH) R01 (GM131004) and National Science Foundation CAREER (1846010)
ISSN:1059-1524
1939-4586
1939-4586
DOI:10.1091/mbc.E23-09-0382