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Lysosomal Cholesterol Accumulation Contributes to the Movement Phenotypes Associated with NUS1 Haploinsufficiency

PURPOSE: Variants in NUS1 are associated with a congenital disorder of glycosylation, developmental and epileptic encephalopathies, and are possible contributors to Parkinson’s disease pathogenesis. How the diverse functions of the NUS1-encoded Nogo B receptor (NgBR) relate to these different phenot...

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Autores principales: Yu, Seok-Ho, Wang, Tong, Wiggins, Kali, Louie, Raymond J., Merino, Emilio F., Skinner, Cindy, Cassera, Maria B., Meagher, Kirsten, Goldberg, Paul, Rismanchi, Neggy, Chen, Dillon, Lyons, Michael J., Flanagan-Steet, Heather, Steet, Richard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8263489/
https://www.ncbi.nlm.nih.gov/pubmed/33731878
http://dx.doi.org/10.1038/s41436-021-01137-6
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author Yu, Seok-Ho
Wang, Tong
Wiggins, Kali
Louie, Raymond J.
Merino, Emilio F.
Skinner, Cindy
Cassera, Maria B.
Meagher, Kirsten
Goldberg, Paul
Rismanchi, Neggy
Chen, Dillon
Lyons, Michael J.
Flanagan-Steet, Heather
Steet, Richard
author_facet Yu, Seok-Ho
Wang, Tong
Wiggins, Kali
Louie, Raymond J.
Merino, Emilio F.
Skinner, Cindy
Cassera, Maria B.
Meagher, Kirsten
Goldberg, Paul
Rismanchi, Neggy
Chen, Dillon
Lyons, Michael J.
Flanagan-Steet, Heather
Steet, Richard
author_sort Yu, Seok-Ho
collection PubMed
description PURPOSE: Variants in NUS1 are associated with a congenital disorder of glycosylation, developmental and epileptic encephalopathies, and are possible contributors to Parkinson’s disease pathogenesis. How the diverse functions of the NUS1-encoded Nogo B receptor (NgBR) relate to these different phenotypes is largely unknown. We present three patients with de novo heterozygous variants in NUS1 that cause a complex movement disorder, define pathogenic mechanisms in cells and zebrafish, and identify possible therapy. METHODS: Comprehensive functional studies were performed using patient fibroblasts, and a zebrafish model mimicking NUS1 haploinsufficiency. RESULTS: We show that de novo NUS1 variants reduce NgBR and Niemann-Pick type C2 (NPC2) protein amount, impair dolichol biosynthesis, and cause lysosomal cholesterol accumulation. Reducing nus1 expression 50% in zebrafish embryos causes abnormal swim behaviors, cholesterol accumulation in the nervous system and impaired turnover of lysosomal membrane proteins. Reduction of cholesterol buildup with 2-hydroxypropyl-ß-cyclodextrin significantly alleviates lysosomal proteolysis and motility defects. CONCLUSIONS: Our results demonstrate that these NUS1 variants cause multiple lysosomal phenotypes in cells. We show that the movement deficits associated with nus1 reduction in zebrafish arise in part from defective efflux of cholesterol from lysosomes, suggesting that treatments targeting cholesterol accumulation could be therapeutic.
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spelling pubmed-82634892021-09-17 Lysosomal Cholesterol Accumulation Contributes to the Movement Phenotypes Associated with NUS1 Haploinsufficiency Yu, Seok-Ho Wang, Tong Wiggins, Kali Louie, Raymond J. Merino, Emilio F. Skinner, Cindy Cassera, Maria B. Meagher, Kirsten Goldberg, Paul Rismanchi, Neggy Chen, Dillon Lyons, Michael J. Flanagan-Steet, Heather Steet, Richard Genet Med Article PURPOSE: Variants in NUS1 are associated with a congenital disorder of glycosylation, developmental and epileptic encephalopathies, and are possible contributors to Parkinson’s disease pathogenesis. How the diverse functions of the NUS1-encoded Nogo B receptor (NgBR) relate to these different phenotypes is largely unknown. We present three patients with de novo heterozygous variants in NUS1 that cause a complex movement disorder, define pathogenic mechanisms in cells and zebrafish, and identify possible therapy. METHODS: Comprehensive functional studies were performed using patient fibroblasts, and a zebrafish model mimicking NUS1 haploinsufficiency. RESULTS: We show that de novo NUS1 variants reduce NgBR and Niemann-Pick type C2 (NPC2) protein amount, impair dolichol biosynthesis, and cause lysosomal cholesterol accumulation. Reducing nus1 expression 50% in zebrafish embryos causes abnormal swim behaviors, cholesterol accumulation in the nervous system and impaired turnover of lysosomal membrane proteins. Reduction of cholesterol buildup with 2-hydroxypropyl-ß-cyclodextrin significantly alleviates lysosomal proteolysis and motility defects. CONCLUSIONS: Our results demonstrate that these NUS1 variants cause multiple lysosomal phenotypes in cells. We show that the movement deficits associated with nus1 reduction in zebrafish arise in part from defective efflux of cholesterol from lysosomes, suggesting that treatments targeting cholesterol accumulation could be therapeutic. 2021-03-17 2021-07 /pmc/articles/PMC8263489/ /pubmed/33731878 http://dx.doi.org/10.1038/s41436-021-01137-6 Text en http://www.nature.com/authors/editorial_policies/license.html#termsUsers may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Yu, Seok-Ho
Wang, Tong
Wiggins, Kali
Louie, Raymond J.
Merino, Emilio F.
Skinner, Cindy
Cassera, Maria B.
Meagher, Kirsten
Goldberg, Paul
Rismanchi, Neggy
Chen, Dillon
Lyons, Michael J.
Flanagan-Steet, Heather
Steet, Richard
Lysosomal Cholesterol Accumulation Contributes to the Movement Phenotypes Associated with NUS1 Haploinsufficiency
title Lysosomal Cholesterol Accumulation Contributes to the Movement Phenotypes Associated with NUS1 Haploinsufficiency
title_full Lysosomal Cholesterol Accumulation Contributes to the Movement Phenotypes Associated with NUS1 Haploinsufficiency
title_fullStr Lysosomal Cholesterol Accumulation Contributes to the Movement Phenotypes Associated with NUS1 Haploinsufficiency
title_full_unstemmed Lysosomal Cholesterol Accumulation Contributes to the Movement Phenotypes Associated with NUS1 Haploinsufficiency
title_short Lysosomal Cholesterol Accumulation Contributes to the Movement Phenotypes Associated with NUS1 Haploinsufficiency
title_sort lysosomal cholesterol accumulation contributes to the movement phenotypes associated with nus1 haploinsufficiency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8263489/
https://www.ncbi.nlm.nih.gov/pubmed/33731878
http://dx.doi.org/10.1038/s41436-021-01137-6
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