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A glycine substitution in the collagenous domain of Col4a3 in mice recapitulates late onset Alport syndrome

Alport syndrome (AS) is a severe inherited glomerulopathy caused by mutations in the genes encoding the α-chains of type-IV collagen, the most abundant component of the extracellular glomerular basement membrane (GBM). Currently most AS mouse models are knockout models for one of the collagen-IV gen...

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Autores principales: Odiatis, Christoforos, Savva, Isavella, Pieri, Myrtani, Ioannou, Pavlos, Petrou, Petros, Papagregoriou, Gregory, Antoniadou, Kyriaki, Makrides, Neoklis, Stefanou, Charalambos, Ljubanović, Danica Galešić, Nikolaou, Georgios, Borza, Dorin-Bogdan, Stylianou, Kostas, Gross, Oliver, Deltas, Constantinos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7930875/
https://www.ncbi.nlm.nih.gov/pubmed/33718859
http://dx.doi.org/10.1016/j.mbplus.2020.100053
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author Odiatis, Christoforos
Savva, Isavella
Pieri, Myrtani
Ioannou, Pavlos
Petrou, Petros
Papagregoriou, Gregory
Antoniadou, Kyriaki
Makrides, Neoklis
Stefanou, Charalambos
Ljubanović, Danica Galešić
Nikolaou, Georgios
Borza, Dorin-Bogdan
Stylianou, Kostas
Gross, Oliver
Deltas, Constantinos
author_facet Odiatis, Christoforos
Savva, Isavella
Pieri, Myrtani
Ioannou, Pavlos
Petrou, Petros
Papagregoriou, Gregory
Antoniadou, Kyriaki
Makrides, Neoklis
Stefanou, Charalambos
Ljubanović, Danica Galešić
Nikolaou, Georgios
Borza, Dorin-Bogdan
Stylianou, Kostas
Gross, Oliver
Deltas, Constantinos
author_sort Odiatis, Christoforos
collection PubMed
description Alport syndrome (AS) is a severe inherited glomerulopathy caused by mutations in the genes encoding the α-chains of type-IV collagen, the most abundant component of the extracellular glomerular basement membrane (GBM). Currently most AS mouse models are knockout models for one of the collagen-IV genes. In contrast, about half of AS patients have missense mutations, with single aminoacid substitutions of glycine being the most common. The only mouse model for AS with a homozygous knockin missense mutation, Col4a3-p.Gly1332Glu, was partly described before by our group. Here, a detailed in-depth description of the same mouse is presented, along with another compound heterozygous mouse that carries the glycine substitution in trans with a knockout allele. Both mice recapitulate essential features of AS, including shorten lifespan by 30–35%, increased proteinuria, increased serum urea and creatinine, pathognomonic alternate GBM thinning and thickening, and podocyte foot process effacement. Notably, glomeruli and tubuli respond differently to mutant collagen-IV protomers, with reduced expression in tubules but apparently normal in glomeruli. However, equally important is the fact that in the glomeruli the mutant α3-chain as well as the normal α4/α5 chains seem to undergo a cleavage at, or near the point of the mutation, possibly by the metalloproteinase MMP-9, producing a 35 kDa C-terminal fragment. These mouse models represent a good tool for better understanding the spectrum of molecular mechanisms governing collagen-IV nephropathies and could be used for pre-clinical studies aimed at better treatments for AS.
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spelling pubmed-79308752021-03-12 A glycine substitution in the collagenous domain of Col4a3 in mice recapitulates late onset Alport syndrome Odiatis, Christoforos Savva, Isavella Pieri, Myrtani Ioannou, Pavlos Petrou, Petros Papagregoriou, Gregory Antoniadou, Kyriaki Makrides, Neoklis Stefanou, Charalambos Ljubanović, Danica Galešić Nikolaou, Georgios Borza, Dorin-Bogdan Stylianou, Kostas Gross, Oliver Deltas, Constantinos Matrix Biol Plus Article Alport syndrome (AS) is a severe inherited glomerulopathy caused by mutations in the genes encoding the α-chains of type-IV collagen, the most abundant component of the extracellular glomerular basement membrane (GBM). Currently most AS mouse models are knockout models for one of the collagen-IV genes. In contrast, about half of AS patients have missense mutations, with single aminoacid substitutions of glycine being the most common. The only mouse model for AS with a homozygous knockin missense mutation, Col4a3-p.Gly1332Glu, was partly described before by our group. Here, a detailed in-depth description of the same mouse is presented, along with another compound heterozygous mouse that carries the glycine substitution in trans with a knockout allele. Both mice recapitulate essential features of AS, including shorten lifespan by 30–35%, increased proteinuria, increased serum urea and creatinine, pathognomonic alternate GBM thinning and thickening, and podocyte foot process effacement. Notably, glomeruli and tubuli respond differently to mutant collagen-IV protomers, with reduced expression in tubules but apparently normal in glomeruli. However, equally important is the fact that in the glomeruli the mutant α3-chain as well as the normal α4/α5 chains seem to undergo a cleavage at, or near the point of the mutation, possibly by the metalloproteinase MMP-9, producing a 35 kDa C-terminal fragment. These mouse models represent a good tool for better understanding the spectrum of molecular mechanisms governing collagen-IV nephropathies and could be used for pre-clinical studies aimed at better treatments for AS. Elsevier 2020-12-30 /pmc/articles/PMC7930875/ /pubmed/33718859 http://dx.doi.org/10.1016/j.mbplus.2020.100053 Text en © 2021 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Odiatis, Christoforos
Savva, Isavella
Pieri, Myrtani
Ioannou, Pavlos
Petrou, Petros
Papagregoriou, Gregory
Antoniadou, Kyriaki
Makrides, Neoklis
Stefanou, Charalambos
Ljubanović, Danica Galešić
Nikolaou, Georgios
Borza, Dorin-Bogdan
Stylianou, Kostas
Gross, Oliver
Deltas, Constantinos
A glycine substitution in the collagenous domain of Col4a3 in mice recapitulates late onset Alport syndrome
title A glycine substitution in the collagenous domain of Col4a3 in mice recapitulates late onset Alport syndrome
title_full A glycine substitution in the collagenous domain of Col4a3 in mice recapitulates late onset Alport syndrome
title_fullStr A glycine substitution in the collagenous domain of Col4a3 in mice recapitulates late onset Alport syndrome
title_full_unstemmed A glycine substitution in the collagenous domain of Col4a3 in mice recapitulates late onset Alport syndrome
title_short A glycine substitution in the collagenous domain of Col4a3 in mice recapitulates late onset Alport syndrome
title_sort glycine substitution in the collagenous domain of col4a3 in mice recapitulates late onset alport syndrome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7930875/
https://www.ncbi.nlm.nih.gov/pubmed/33718859
http://dx.doi.org/10.1016/j.mbplus.2020.100053
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