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Alleviation of a polyglucosan storage disorder by enhancement of autophagic glycogen catabolism

This work employs adult polyglucosan body disease (APBD) models to explore the efficacy and mechanism of action of the polyglucosan‐reducing compound 144DG11. APBD is a glycogen storage disorder (GSD) caused by glycogen branching enzyme (GBE) deficiency causing accumulation of poorly branched glycog...

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Autores principales: Kakhlon, Or, Vaknin, Hilla, Mishra, Kumudesh, D’Souza, Jeevitha, Marisat, Monzer, Sprecher, Uri, Wald‐Altman, Shane, Dukhovny, Anna, Raviv, Yuval, Da’adoosh, Benny, Engel, Hamutal, Benhamron, Sandrine, Nitzan, Keren, Sweetat, Sahar, Permyakova, Anna, Mordechai, Anat, Akman, Hasan Orhan, Rosenmann, Hanna, Lossos, Alexander, Tam, Joseph, Minassian, Berge A., Weil, Miguel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8495453/
https://www.ncbi.nlm.nih.gov/pubmed/34486811
http://dx.doi.org/10.15252/emmm.202114554
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author Kakhlon, Or
Vaknin, Hilla
Mishra, Kumudesh
D’Souza, Jeevitha
Marisat, Monzer
Sprecher, Uri
Wald‐Altman, Shane
Dukhovny, Anna
Raviv, Yuval
Da’adoosh, Benny
Engel, Hamutal
Benhamron, Sandrine
Nitzan, Keren
Sweetat, Sahar
Permyakova, Anna
Mordechai, Anat
Akman, Hasan Orhan
Rosenmann, Hanna
Lossos, Alexander
Tam, Joseph
Minassian, Berge A.
Weil, Miguel
author_facet Kakhlon, Or
Vaknin, Hilla
Mishra, Kumudesh
D’Souza, Jeevitha
Marisat, Monzer
Sprecher, Uri
Wald‐Altman, Shane
Dukhovny, Anna
Raviv, Yuval
Da’adoosh, Benny
Engel, Hamutal
Benhamron, Sandrine
Nitzan, Keren
Sweetat, Sahar
Permyakova, Anna
Mordechai, Anat
Akman, Hasan Orhan
Rosenmann, Hanna
Lossos, Alexander
Tam, Joseph
Minassian, Berge A.
Weil, Miguel
author_sort Kakhlon, Or
collection PubMed
description This work employs adult polyglucosan body disease (APBD) models to explore the efficacy and mechanism of action of the polyglucosan‐reducing compound 144DG11. APBD is a glycogen storage disorder (GSD) caused by glycogen branching enzyme (GBE) deficiency causing accumulation of poorly branched glycogen inclusions called polyglucosans. 144DG11 improved survival and motor parameters in a GBE knockin (Gbe(ys/ys)) APBD mouse model. 144DG11 reduced polyglucosan and glycogen in brain, liver, heart, and peripheral nerve. Indirect calorimetry experiments revealed that 144DG11 increases carbohydrate burn at the expense of fat burn, suggesting metabolic mobilization of pathogenic polyglucosan. At the cellular level, 144DG11 increased glycolytic, mitochondrial, and total ATP production. The molecular target of 144DG11 is the lysosomal membrane protein LAMP1, whose interaction with the compound, similar to LAMP1 knockdown, enhanced autolysosomal degradation of glycogen and lysosomal acidification. 144DG11 also enhanced mitochondrial activity and modulated lysosomal features as revealed by bioenergetic, image‐based phenotyping and proteomics analyses. As an effective lysosomal targeting therapy in a GSD model, 144DG11 could be developed into a safe and efficacious glycogen and lysosomal storage disease therapy.
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spelling pubmed-84954532021-10-08 Alleviation of a polyglucosan storage disorder by enhancement of autophagic glycogen catabolism Kakhlon, Or Vaknin, Hilla Mishra, Kumudesh D’Souza, Jeevitha Marisat, Monzer Sprecher, Uri Wald‐Altman, Shane Dukhovny, Anna Raviv, Yuval Da’adoosh, Benny Engel, Hamutal Benhamron, Sandrine Nitzan, Keren Sweetat, Sahar Permyakova, Anna Mordechai, Anat Akman, Hasan Orhan Rosenmann, Hanna Lossos, Alexander Tam, Joseph Minassian, Berge A. Weil, Miguel EMBO Mol Med Articles This work employs adult polyglucosan body disease (APBD) models to explore the efficacy and mechanism of action of the polyglucosan‐reducing compound 144DG11. APBD is a glycogen storage disorder (GSD) caused by glycogen branching enzyme (GBE) deficiency causing accumulation of poorly branched glycogen inclusions called polyglucosans. 144DG11 improved survival and motor parameters in a GBE knockin (Gbe(ys/ys)) APBD mouse model. 144DG11 reduced polyglucosan and glycogen in brain, liver, heart, and peripheral nerve. Indirect calorimetry experiments revealed that 144DG11 increases carbohydrate burn at the expense of fat burn, suggesting metabolic mobilization of pathogenic polyglucosan. At the cellular level, 144DG11 increased glycolytic, mitochondrial, and total ATP production. The molecular target of 144DG11 is the lysosomal membrane protein LAMP1, whose interaction with the compound, similar to LAMP1 knockdown, enhanced autolysosomal degradation of glycogen and lysosomal acidification. 144DG11 also enhanced mitochondrial activity and modulated lysosomal features as revealed by bioenergetic, image‐based phenotyping and proteomics analyses. As an effective lysosomal targeting therapy in a GSD model, 144DG11 could be developed into a safe and efficacious glycogen and lysosomal storage disease therapy. John Wiley and Sons Inc. 2021-09-06 2021-10-07 /pmc/articles/PMC8495453/ /pubmed/34486811 http://dx.doi.org/10.15252/emmm.202114554 Text en © 2021 The Authors. Published under the terms of the CC BY 4.0 license https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Kakhlon, Or
Vaknin, Hilla
Mishra, Kumudesh
D’Souza, Jeevitha
Marisat, Monzer
Sprecher, Uri
Wald‐Altman, Shane
Dukhovny, Anna
Raviv, Yuval
Da’adoosh, Benny
Engel, Hamutal
Benhamron, Sandrine
Nitzan, Keren
Sweetat, Sahar
Permyakova, Anna
Mordechai, Anat
Akman, Hasan Orhan
Rosenmann, Hanna
Lossos, Alexander
Tam, Joseph
Minassian, Berge A.
Weil, Miguel
Alleviation of a polyglucosan storage disorder by enhancement of autophagic glycogen catabolism
title Alleviation of a polyglucosan storage disorder by enhancement of autophagic glycogen catabolism
title_full Alleviation of a polyglucosan storage disorder by enhancement of autophagic glycogen catabolism
title_fullStr Alleviation of a polyglucosan storage disorder by enhancement of autophagic glycogen catabolism
title_full_unstemmed Alleviation of a polyglucosan storage disorder by enhancement of autophagic glycogen catabolism
title_short Alleviation of a polyglucosan storage disorder by enhancement of autophagic glycogen catabolism
title_sort alleviation of a polyglucosan storage disorder by enhancement of autophagic glycogen catabolism
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8495453/
https://www.ncbi.nlm.nih.gov/pubmed/34486811
http://dx.doi.org/10.15252/emmm.202114554
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