trappc11 is required for protein glycosylation in zebrafish and humans

Author:

DeRossi Charles12,Vacaru Ana12,Rafiq Ruhina12,Cinaroglu Ayca12,Imrie Dru13,Nayar Shikha4,Baryshnikova Anastasia5,Milev Miroslav P.6,Stanga Daniela6,Kadakia Dhara1,Gao Ningguo7,Chu Jaime4,Freeze Hudson H.8,Lehrman Mark A.7,Sacher Michael69,Sadler Kirsten C.123

Affiliation:

1. Department of Medicine, Division of Liver Diseases, Icahn School of Medicine at Mount Sinai, New York, NY 10029

2. Department of Developmental and Regenerative Biology, Icahn School of Medicine at Mount Sinai, New York, NY 10029

3. Graduate School of Biomedical Sciences, Icahn School of Medicine at Mount Sinai, New York, NY 10029

4. Department of Pediatrics and Mindich Institute for Child Health, Icahn School of Medicine at Mount Sinai, New York, NY 10029

5. Lewis-Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ 08544

6. Department of Biology, Concordia University, Montreal, QC H4B 1R6, Canada

7. Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas, TX 75390

8. Sanford Children’s Health Research Center, Sanford Burnham Prebys Medical Discovery Institute, La Jolla, CA 92037

9. Department of Anatomy and Cell Biology, McGill University, Montreal, QC H3A 0C7, Canada

Abstract

Activation of the unfolded protein response (UPR) can be either adaptive or pathological. We term the pathological UPR that causes fatty liver disease a “stressed UPR.” Here we investigate the mechanism of stressed UPR activation in zebrafish bearing a mutation in the trappc11 gene, which encodes a component of the transport protein particle (TRAPP) complex. trappc11 mutants are characterized by secretory pathway defects, reflecting disruption of the TRAPP complex. In addition, we uncover a defect in protein glycosylation in trappc11 mutants that is associated with reduced levels of lipid-linked oligosaccharides (LLOs) and compensatory up-regulation of genes in the terpenoid biosynthetic pathway that produces the LLO anchor dolichol. Treating wild-type larvae with terpenoid or LLO synthesis inhibitors phenocopies the stressed UPR seen in trappc11 mutants and is synthetically lethal with trappc11 mutation. We propose that reduced LLO level causing hypoglycosylation is a mechanism of stressed UPR induction in trappc11 mutants. Of importance, in human cells, depletion of TRAPPC11, but not other TRAPP components, causes protein hypoglycosylation, and lipid droplets accumulate in fibroblasts from patients with the TRAPPC11 mutation. These data point to a previously unanticipated and conserved role for TRAPPC11 in LLO biosynthesis and protein glycosylation in addition to its established function in vesicle trafficking.

Publisher

American Society for Cell Biology (ASCB)

Subject

Cell Biology,Molecular Biology

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