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Severe kidney dysfunction in sialidosis mice reveals an essential role for neuraminidase 1 in reabsorption

Sialidosis is an ultra-rare multisystemic lysosomal disease caused by mutations in the neuraminidase 1 (NEU1) gene. The severe type II form of the disease manifests with a prenatal/infantile or juvenile onset, bone abnormalities, severe neuropathology, and visceromegaly. A subset of these patients p...

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Autores principales: Kho, Ikhui, Demina, Ekaterina P., Pan, Xuefang, Londono, Irene, Cairo, Christopher W., Sturiale, Luisa, Palmigiano, Angelo, Messina, Angela, Garozzo, Domenico, Ung, Roth-Visal, Mac-Way, Fabrice, Bonneil, Éric, Thibault, Pierre, Lemaire, Mathieu, Morales, Carlos R., Pshezhetsky, Alexey V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10619504/
https://www.ncbi.nlm.nih.gov/pubmed/37698928
http://dx.doi.org/10.1172/jci.insight.166470
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author Kho, Ikhui
Demina, Ekaterina P.
Pan, Xuefang
Londono, Irene
Cairo, Christopher W.
Sturiale, Luisa
Palmigiano, Angelo
Messina, Angela
Garozzo, Domenico
Ung, Roth-Visal
Mac-Way, Fabrice
Bonneil, Éric
Thibault, Pierre
Lemaire, Mathieu
Morales, Carlos R.
Pshezhetsky, Alexey V.
author_facet Kho, Ikhui
Demina, Ekaterina P.
Pan, Xuefang
Londono, Irene
Cairo, Christopher W.
Sturiale, Luisa
Palmigiano, Angelo
Messina, Angela
Garozzo, Domenico
Ung, Roth-Visal
Mac-Way, Fabrice
Bonneil, Éric
Thibault, Pierre
Lemaire, Mathieu
Morales, Carlos R.
Pshezhetsky, Alexey V.
author_sort Kho, Ikhui
collection PubMed
description Sialidosis is an ultra-rare multisystemic lysosomal disease caused by mutations in the neuraminidase 1 (NEU1) gene. The severe type II form of the disease manifests with a prenatal/infantile or juvenile onset, bone abnormalities, severe neuropathology, and visceromegaly. A subset of these patients present with nephrosialidosis, characterized by abrupt onset of fulminant glomerular nephropathy. We studied the pathophysiological mechanism of the disease in 2 NEU1-deficient mouse models, a constitutive Neu1-knockout, Neu1(ΔEx3), and a conditional phagocyte-specific knockout, Neu1(Cx3cr1ΔEx3). Mice of both strains exhibited terminal urinary retention and severe kidney damage with elevated urinary albumin levels, loss of nephrons, renal fibrosis, presence of storage vacuoles, and dysmorphic mitochondria in the intraglomerular and tubular cells. Glycoprotein sialylation in glomeruli, proximal distal tubules, and distal tubules was drastically increased, including that of an endocytic reabsorption receptor megalin. The pool of megalin bearing O-linked glycans with terminal galactose residues, essential for protein targeting and activity, was reduced to below detection levels. Megalin levels were severely reduced, and the protein was directed to lysosomes instead of the apical membrane. Together, our results demonstrated that desialylation by NEU1 plays a crucial role in processing and cellular trafficking of megalin and that NEU1 deficiency in sialidosis impairs megalin-mediated protein reabsorption.
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spelling pubmed-106195042023-11-02 Severe kidney dysfunction in sialidosis mice reveals an essential role for neuraminidase 1 in reabsorption Kho, Ikhui Demina, Ekaterina P. Pan, Xuefang Londono, Irene Cairo, Christopher W. Sturiale, Luisa Palmigiano, Angelo Messina, Angela Garozzo, Domenico Ung, Roth-Visal Mac-Way, Fabrice Bonneil, Éric Thibault, Pierre Lemaire, Mathieu Morales, Carlos R. Pshezhetsky, Alexey V. JCI Insight Research Article Sialidosis is an ultra-rare multisystemic lysosomal disease caused by mutations in the neuraminidase 1 (NEU1) gene. The severe type II form of the disease manifests with a prenatal/infantile or juvenile onset, bone abnormalities, severe neuropathology, and visceromegaly. A subset of these patients present with nephrosialidosis, characterized by abrupt onset of fulminant glomerular nephropathy. We studied the pathophysiological mechanism of the disease in 2 NEU1-deficient mouse models, a constitutive Neu1-knockout, Neu1(ΔEx3), and a conditional phagocyte-specific knockout, Neu1(Cx3cr1ΔEx3). Mice of both strains exhibited terminal urinary retention and severe kidney damage with elevated urinary albumin levels, loss of nephrons, renal fibrosis, presence of storage vacuoles, and dysmorphic mitochondria in the intraglomerular and tubular cells. Glycoprotein sialylation in glomeruli, proximal distal tubules, and distal tubules was drastically increased, including that of an endocytic reabsorption receptor megalin. The pool of megalin bearing O-linked glycans with terminal galactose residues, essential for protein targeting and activity, was reduced to below detection levels. Megalin levels were severely reduced, and the protein was directed to lysosomes instead of the apical membrane. Together, our results demonstrated that desialylation by NEU1 plays a crucial role in processing and cellular trafficking of megalin and that NEU1 deficiency in sialidosis impairs megalin-mediated protein reabsorption. American Society for Clinical Investigation 2023-10-23 /pmc/articles/PMC10619504/ /pubmed/37698928 http://dx.doi.org/10.1172/jci.insight.166470 Text en © 2023 Kho et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Kho, Ikhui
Demina, Ekaterina P.
Pan, Xuefang
Londono, Irene
Cairo, Christopher W.
Sturiale, Luisa
Palmigiano, Angelo
Messina, Angela
Garozzo, Domenico
Ung, Roth-Visal
Mac-Way, Fabrice
Bonneil, Éric
Thibault, Pierre
Lemaire, Mathieu
Morales, Carlos R.
Pshezhetsky, Alexey V.
Severe kidney dysfunction in sialidosis mice reveals an essential role for neuraminidase 1 in reabsorption
title Severe kidney dysfunction in sialidosis mice reveals an essential role for neuraminidase 1 in reabsorption
title_full Severe kidney dysfunction in sialidosis mice reveals an essential role for neuraminidase 1 in reabsorption
title_fullStr Severe kidney dysfunction in sialidosis mice reveals an essential role for neuraminidase 1 in reabsorption
title_full_unstemmed Severe kidney dysfunction in sialidosis mice reveals an essential role for neuraminidase 1 in reabsorption
title_short Severe kidney dysfunction in sialidosis mice reveals an essential role for neuraminidase 1 in reabsorption
title_sort severe kidney dysfunction in sialidosis mice reveals an essential role for neuraminidase 1 in reabsorption
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10619504/
https://www.ncbi.nlm.nih.gov/pubmed/37698928
http://dx.doi.org/10.1172/jci.insight.166470
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