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Uptake of Aggregating Transthyretin by Fat Body in a Drosophila Model for TTR-Associated Amyloidosis

BACKGROUND: A functional link has been established between the severe neurodegenerative disorder Familial amyloidotic polyneuropathy and the enhanced propensity of the plasma protein transthyretin (TTR) to form aggregates in patients with single point mutations in the TTR gene. Previous work has led...

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Autores principales: Pokrzywa, Malgorzata, Dacklin, Ingrid, Vestling, Monika, Hultmark, Dan, Lundgren, Erik, Cantera, Rafael
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3002944/
https://www.ncbi.nlm.nih.gov/pubmed/21179560
http://dx.doi.org/10.1371/journal.pone.0014343
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author Pokrzywa, Malgorzata
Dacklin, Ingrid
Vestling, Monika
Hultmark, Dan
Lundgren, Erik
Cantera, Rafael
author_facet Pokrzywa, Malgorzata
Dacklin, Ingrid
Vestling, Monika
Hultmark, Dan
Lundgren, Erik
Cantera, Rafael
author_sort Pokrzywa, Malgorzata
collection PubMed
description BACKGROUND: A functional link has been established between the severe neurodegenerative disorder Familial amyloidotic polyneuropathy and the enhanced propensity of the plasma protein transthyretin (TTR) to form aggregates in patients with single point mutations in the TTR gene. Previous work has led to the establishment of an experimental model based on transgenic expression of normal or mutant forms of human TTR in Drosophila flies. Remarkably, the severity of the phenotype was greater in flies that expressed a single copy than with two copies of the mutated gene. METHODOLOGY/PRINCIPAL FINDINGS: In this study, we analyze the distribution of normal and mutant TTR in transgenic flies, and the ultrastructure of TTR-positive tissues to clarify if aggregates and/or amyloid filaments are formed. We report the formation of intracellular aggregates of 20 nm spherules and amyloid filaments in thoracic adipose tissue and in brain glia, two tissues that do not express the transgene. The formation of aggregates of nanospherules increased with age and was more considerable in flies with two copies of mutated TTR. Treatment of human neuronal cells with protein extracts prepared from TTR flies of different age showed that the extracts from older flies were less toxic than those from younger flies. CONCLUSIONS/SIGNIFICANCE: These findings suggest that the uptake of TTR from the circulation and its subsequent segregation into cytoplasmic quasi-crystalline arrays of nanospherules is part of a mechanism that neutralizes the toxic effect of TTR.
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spelling pubmed-30029442010-12-21 Uptake of Aggregating Transthyretin by Fat Body in a Drosophila Model for TTR-Associated Amyloidosis Pokrzywa, Malgorzata Dacklin, Ingrid Vestling, Monika Hultmark, Dan Lundgren, Erik Cantera, Rafael PLoS One Research Article BACKGROUND: A functional link has been established between the severe neurodegenerative disorder Familial amyloidotic polyneuropathy and the enhanced propensity of the plasma protein transthyretin (TTR) to form aggregates in patients with single point mutations in the TTR gene. Previous work has led to the establishment of an experimental model based on transgenic expression of normal or mutant forms of human TTR in Drosophila flies. Remarkably, the severity of the phenotype was greater in flies that expressed a single copy than with two copies of the mutated gene. METHODOLOGY/PRINCIPAL FINDINGS: In this study, we analyze the distribution of normal and mutant TTR in transgenic flies, and the ultrastructure of TTR-positive tissues to clarify if aggregates and/or amyloid filaments are formed. We report the formation of intracellular aggregates of 20 nm spherules and amyloid filaments in thoracic adipose tissue and in brain glia, two tissues that do not express the transgene. The formation of aggregates of nanospherules increased with age and was more considerable in flies with two copies of mutated TTR. Treatment of human neuronal cells with protein extracts prepared from TTR flies of different age showed that the extracts from older flies were less toxic than those from younger flies. CONCLUSIONS/SIGNIFICANCE: These findings suggest that the uptake of TTR from the circulation and its subsequent segregation into cytoplasmic quasi-crystalline arrays of nanospherules is part of a mechanism that neutralizes the toxic effect of TTR. Public Library of Science 2010-12-16 /pmc/articles/PMC3002944/ /pubmed/21179560 http://dx.doi.org/10.1371/journal.pone.0014343 Text en Pokrzywa et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Pokrzywa, Malgorzata
Dacklin, Ingrid
Vestling, Monika
Hultmark, Dan
Lundgren, Erik
Cantera, Rafael
Uptake of Aggregating Transthyretin by Fat Body in a Drosophila Model for TTR-Associated Amyloidosis
title Uptake of Aggregating Transthyretin by Fat Body in a Drosophila Model for TTR-Associated Amyloidosis
title_full Uptake of Aggregating Transthyretin by Fat Body in a Drosophila Model for TTR-Associated Amyloidosis
title_fullStr Uptake of Aggregating Transthyretin by Fat Body in a Drosophila Model for TTR-Associated Amyloidosis
title_full_unstemmed Uptake of Aggregating Transthyretin by Fat Body in a Drosophila Model for TTR-Associated Amyloidosis
title_short Uptake of Aggregating Transthyretin by Fat Body in a Drosophila Model for TTR-Associated Amyloidosis
title_sort uptake of aggregating transthyretin by fat body in a drosophila model for ttr-associated amyloidosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3002944/
https://www.ncbi.nlm.nih.gov/pubmed/21179560
http://dx.doi.org/10.1371/journal.pone.0014343
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