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Glucosamine amends CNS pathology in mucopolysaccharidosis IIIC mouse expressing misfolded HGSNAT

The majority of mucopolysaccharidosis IIIC (MPS IIIC) patients have missense variants causing misfolding of heparan sulfate acetyl-CoA:α-glucosaminide N-acetyltransferase (HGSNAT), which are potentially treatable with pharmacological chaperones. To test this approach, we generated a novel Hgsnat(P30...

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Autores principales: Pan, Xuefang, Taherzadeh, Mahsa, Bose, Poulomee, Heon-Roberts, Rachel, Nguyen, Annie L.A., Xu, TianMeng, Pará, Camila, Yamanaka, Yojiro, Priestman, David A., Platt, Frances M., Khan, Shaukat, Fnu, Nidhi, Tomatsu, Shunji, Morales, Carlos R., Pshezhetsky, Alexey V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9204472/
https://www.ncbi.nlm.nih.gov/pubmed/35704026
http://dx.doi.org/10.1084/jem.20211860
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author Pan, Xuefang
Taherzadeh, Mahsa
Bose, Poulomee
Heon-Roberts, Rachel
Nguyen, Annie L.A.
Xu, TianMeng
Pará, Camila
Yamanaka, Yojiro
Priestman, David A.
Platt, Frances M.
Khan, Shaukat
Fnu, Nidhi
Tomatsu, Shunji
Morales, Carlos R.
Pshezhetsky, Alexey V.
author_facet Pan, Xuefang
Taherzadeh, Mahsa
Bose, Poulomee
Heon-Roberts, Rachel
Nguyen, Annie L.A.
Xu, TianMeng
Pará, Camila
Yamanaka, Yojiro
Priestman, David A.
Platt, Frances M.
Khan, Shaukat
Fnu, Nidhi
Tomatsu, Shunji
Morales, Carlos R.
Pshezhetsky, Alexey V.
author_sort Pan, Xuefang
collection PubMed
description The majority of mucopolysaccharidosis IIIC (MPS IIIC) patients have missense variants causing misfolding of heparan sulfate acetyl-CoA:α-glucosaminide N-acetyltransferase (HGSNAT), which are potentially treatable with pharmacological chaperones. To test this approach, we generated a novel Hgsnat(P304L) mouse model expressing misfolded HGSNAT Pro304Leu variant. Hgsnat(P304L) mice present deficits in short-term and working/spatial memory 2–4 mo earlier than previously described constitutive knockout Hgsnat-Geo mice. Hgsnat(P304L) mice also show augmented severity of neuroimmune response, synaptic deficits, and neuronal storage of misfolded proteins and gangliosides compared with Hgsnat-Geo mice. Expression of misfolded human Pro311Leu HGSNAT protein in cultured hippocampal Hgsnat-Geo neurons further reduced levels of synaptic proteins. Memory deficits and majority of brain pathology were rescued in mice receiving HGSNAT chaperone, glucosamine. Our data for the first time demonstrate dominant-negative effects of misfolded HGSNAT Pro304Leu variant and show that they are treatable by oral administration of glucosamine. This suggests that patients affected with mutations preventing normal folding of the enzyme can benefit from chaperone therapy.
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spelling pubmed-92044722023-02-01 Glucosamine amends CNS pathology in mucopolysaccharidosis IIIC mouse expressing misfolded HGSNAT Pan, Xuefang Taherzadeh, Mahsa Bose, Poulomee Heon-Roberts, Rachel Nguyen, Annie L.A. Xu, TianMeng Pará, Camila Yamanaka, Yojiro Priestman, David A. Platt, Frances M. Khan, Shaukat Fnu, Nidhi Tomatsu, Shunji Morales, Carlos R. Pshezhetsky, Alexey V. J Exp Med Article The majority of mucopolysaccharidosis IIIC (MPS IIIC) patients have missense variants causing misfolding of heparan sulfate acetyl-CoA:α-glucosaminide N-acetyltransferase (HGSNAT), which are potentially treatable with pharmacological chaperones. To test this approach, we generated a novel Hgsnat(P304L) mouse model expressing misfolded HGSNAT Pro304Leu variant. Hgsnat(P304L) mice present deficits in short-term and working/spatial memory 2–4 mo earlier than previously described constitutive knockout Hgsnat-Geo mice. Hgsnat(P304L) mice also show augmented severity of neuroimmune response, synaptic deficits, and neuronal storage of misfolded proteins and gangliosides compared with Hgsnat-Geo mice. Expression of misfolded human Pro311Leu HGSNAT protein in cultured hippocampal Hgsnat-Geo neurons further reduced levels of synaptic proteins. Memory deficits and majority of brain pathology were rescued in mice receiving HGSNAT chaperone, glucosamine. Our data for the first time demonstrate dominant-negative effects of misfolded HGSNAT Pro304Leu variant and show that they are treatable by oral administration of glucosamine. This suggests that patients affected with mutations preventing normal folding of the enzyme can benefit from chaperone therapy. Rockefeller University Press 2022-06-15 /pmc/articles/PMC9204472/ /pubmed/35704026 http://dx.doi.org/10.1084/jem.20211860 Text en © 2022 Pan et al. https://creativecommons.org/licenses/by-nc-sa/4.0/http://www.rupress.org/terms/This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms/). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 International license, as described at https://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Pan, Xuefang
Taherzadeh, Mahsa
Bose, Poulomee
Heon-Roberts, Rachel
Nguyen, Annie L.A.
Xu, TianMeng
Pará, Camila
Yamanaka, Yojiro
Priestman, David A.
Platt, Frances M.
Khan, Shaukat
Fnu, Nidhi
Tomatsu, Shunji
Morales, Carlos R.
Pshezhetsky, Alexey V.
Glucosamine amends CNS pathology in mucopolysaccharidosis IIIC mouse expressing misfolded HGSNAT
title Glucosamine amends CNS pathology in mucopolysaccharidosis IIIC mouse expressing misfolded HGSNAT
title_full Glucosamine amends CNS pathology in mucopolysaccharidosis IIIC mouse expressing misfolded HGSNAT
title_fullStr Glucosamine amends CNS pathology in mucopolysaccharidosis IIIC mouse expressing misfolded HGSNAT
title_full_unstemmed Glucosamine amends CNS pathology in mucopolysaccharidosis IIIC mouse expressing misfolded HGSNAT
title_short Glucosamine amends CNS pathology in mucopolysaccharidosis IIIC mouse expressing misfolded HGSNAT
title_sort glucosamine amends cns pathology in mucopolysaccharidosis iiic mouse expressing misfolded hgsnat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9204472/
https://www.ncbi.nlm.nih.gov/pubmed/35704026
http://dx.doi.org/10.1084/jem.20211860
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