The lysosomal disease caused by mutant VPS33A

Author:

Pavlova Elena V1ORCID,Shatunov Aleksey2,Wartosch Lena3,Moskvina Alena I4,Nikolaeva Lena E4,Bright Nicholas A3,Tylee Karen L5,Church Heather J5,Ballabio Andrea6,Luzio J Paul3,Cox Timothy M1

Affiliation:

1. Department of Medicine, University of Cambridge, Cambridge, UK

2. Department of Basic and Clinical Neuroscience, Maurice Wohl Clinical Neuroscience Institute, King’s College London, London, UK

3. Cambridge Institute for Medical Research and Department of Clinical Biochemistry, Wellcome Trust/MRC Building, University of Cambridge, Cambridge, UK

4. Paediatric Centre, National Medical Centre of the Republic of Sakha, Yakutsk, Russia

5. Willink Biochemical Genetics Unit, Genomic Diagnostics Laboratory, Manchester Centre for Genomic Medicine, Central Manchester University Hospitals NHS Foundation Trust, St Mary's Hospital, Manchester, UK

6. Telethon Institute of Genetics and Medicine, Pozzuoli, Italy

Abstract

AbstractA rare lysosomal disease resembling a mucopolysaccharidosis with unusual systemic features, including renal disease and platelet dysfunction, caused by the defect in a conserved region of the VPS33A gene on human chromosome 12q24.31, occurs in Yakuts—a nomadic Turkic ethnic group of Southern Siberia. VPS33A is a core component of the class C core vacuole/endosome tethering (CORVET) and the homotypic fusion and protein sorting (HOPS) complexes, which have essential functions in the endocytic pathway. Here we show that cultured fibroblasts from patients with this disorder have morphological changes: vacuolation with disordered endosomal/lysosomal compartments and—common to sphingolipid diseases—abnormal endocytic trafficking of lactosylceramide. Urine glycosaminoglycan studies revealed a pathological excess of sialylated conjugates as well as dermatan and heparan sulphate. Lipidomic screening showed elevated β-D-galactosylsphingosine with unimpaired activity of cognate lysosomal hydrolases. The 3D crystal structure of human VPS33A predicts that replacement of arginine 498 by tryptophan will de-stabilize VPS33A folding. We observed that the missense mutation reduced the abundance of full-length VPS33A and other components of the HOPS and CORVET complexes. Treatment of HeLa cells stably expressing the mutant VPS33A with a proteasome inhibitor rescued the mutant protein from degradation. We propose that the disease is due to diminished intracellular abundance of intact VPS33A. Exposure of patient-derived fibroblasts to the clinically approved proteasome inhibitor, bortezomib, or inhibition of glucosylceramide synthesis with eliglustat, partially corrected the impaired lactosylceramide trafficking defect and immediately suggest therapeutic avenues to explore in this fatal orphan disease.

Funder

Wellcome Trust

National Institute for Health Research

Wellcome Trust Strategic Award

Medical Research Council

National Institute for Health Research Cambridge Biomedical Research Centre and Research

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology,General Medicine

Reference80 articles.

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4. A novel RING finger protein complex essential for a late step in protein transport to the yeast vacuole;Rieder;Mol. Biol. Cell.,1997

5. A Ypt/Rab effector complex containing the Sec1 homolog Vps33p is required for homotypic vacuole fusion;Seals;Proc. Natl. Acad. Sci. U. S. A.,2000

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