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Mouse Senile Amyloid Fibrils Deposited in Skeletal Muscle Exhibit Amyloidosis-Enhancing Activity

Amyloidosis describes a group of protein folding diseases in which amyloid proteins are abnormally deposited in organs and/or tissues as fine fibrils. Mouse senile amyloidosis is a disorder in which apolipoprotein A-II (apoA-II) deposits as amyloid fibrils (AApoAII) and can be transmitted from one a...

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Autores principales: Qian, Jinze, Yan, Jingmin, Ge, Fengxia, Zhang, Beiru, Fu, Xiaoying, Tomozawa, Hiroshi, Sawashita, Jinko, Mori, Masayuki, Higuchi, Keiichi
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2873911/
https://www.ncbi.nlm.nih.gov/pubmed/20502680
http://dx.doi.org/10.1371/journal.ppat.1000914
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author Qian, Jinze
Yan, Jingmin
Ge, Fengxia
Zhang, Beiru
Fu, Xiaoying
Tomozawa, Hiroshi
Sawashita, Jinko
Mori, Masayuki
Higuchi, Keiichi
author_facet Qian, Jinze
Yan, Jingmin
Ge, Fengxia
Zhang, Beiru
Fu, Xiaoying
Tomozawa, Hiroshi
Sawashita, Jinko
Mori, Masayuki
Higuchi, Keiichi
author_sort Qian, Jinze
collection PubMed
description Amyloidosis describes a group of protein folding diseases in which amyloid proteins are abnormally deposited in organs and/or tissues as fine fibrils. Mouse senile amyloidosis is a disorder in which apolipoprotein A-II (apoA-II) deposits as amyloid fibrils (AApoAII) and can be transmitted from one animal to another both by the feces and milk excreted by mice with amyloidosis. Thus, mouse AApoAII amyloidosis has been demonstrated to be a “transmissible disease”. In this study, to further characterize the transmissibility of amyloidosis, AApoAII amyloid fibrils were injected into transgenic Apoa2(c)Tg(+/−) and normal R1.P1-Apoa2(c) mice to induce AApoAII systemic amyloidosis. Two months later, AApoAII amyloid deposits were found in the skeletal muscles of amyloid-affected mice, primarily in the blood vessels and in the interstitial tissues surrounding muscle fibers. When amyloid fibrils extracted from the skeletal muscles were subjected to Western blot analysis, apoA-II was detected. Amyloid fibril fractions isolated from the muscles not only demonstrated the structure of amyloid fibrils but could also induce amyloidosis in young mice depending on its fibril conformation. These findings present a possible pathogenesis of amyloidosis: transmission of amyloid fibril conformation through muscle, and shed new light on the etiology involved in amyloid disorders.
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spelling pubmed-28739112010-05-25 Mouse Senile Amyloid Fibrils Deposited in Skeletal Muscle Exhibit Amyloidosis-Enhancing Activity Qian, Jinze Yan, Jingmin Ge, Fengxia Zhang, Beiru Fu, Xiaoying Tomozawa, Hiroshi Sawashita, Jinko Mori, Masayuki Higuchi, Keiichi PLoS Pathog Research Article Amyloidosis describes a group of protein folding diseases in which amyloid proteins are abnormally deposited in organs and/or tissues as fine fibrils. Mouse senile amyloidosis is a disorder in which apolipoprotein A-II (apoA-II) deposits as amyloid fibrils (AApoAII) and can be transmitted from one animal to another both by the feces and milk excreted by mice with amyloidosis. Thus, mouse AApoAII amyloidosis has been demonstrated to be a “transmissible disease”. In this study, to further characterize the transmissibility of amyloidosis, AApoAII amyloid fibrils were injected into transgenic Apoa2(c)Tg(+/−) and normal R1.P1-Apoa2(c) mice to induce AApoAII systemic amyloidosis. Two months later, AApoAII amyloid deposits were found in the skeletal muscles of amyloid-affected mice, primarily in the blood vessels and in the interstitial tissues surrounding muscle fibers. When amyloid fibrils extracted from the skeletal muscles were subjected to Western blot analysis, apoA-II was detected. Amyloid fibril fractions isolated from the muscles not only demonstrated the structure of amyloid fibrils but could also induce amyloidosis in young mice depending on its fibril conformation. These findings present a possible pathogenesis of amyloidosis: transmission of amyloid fibril conformation through muscle, and shed new light on the etiology involved in amyloid disorders. Public Library of Science 2010-05-20 /pmc/articles/PMC2873911/ /pubmed/20502680 http://dx.doi.org/10.1371/journal.ppat.1000914 Text en Qian 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
Qian, Jinze
Yan, Jingmin
Ge, Fengxia
Zhang, Beiru
Fu, Xiaoying
Tomozawa, Hiroshi
Sawashita, Jinko
Mori, Masayuki
Higuchi, Keiichi
Mouse Senile Amyloid Fibrils Deposited in Skeletal Muscle Exhibit Amyloidosis-Enhancing Activity
title Mouse Senile Amyloid Fibrils Deposited in Skeletal Muscle Exhibit Amyloidosis-Enhancing Activity
title_full Mouse Senile Amyloid Fibrils Deposited in Skeletal Muscle Exhibit Amyloidosis-Enhancing Activity
title_fullStr Mouse Senile Amyloid Fibrils Deposited in Skeletal Muscle Exhibit Amyloidosis-Enhancing Activity
title_full_unstemmed Mouse Senile Amyloid Fibrils Deposited in Skeletal Muscle Exhibit Amyloidosis-Enhancing Activity
title_short Mouse Senile Amyloid Fibrils Deposited in Skeletal Muscle Exhibit Amyloidosis-Enhancing Activity
title_sort mouse senile amyloid fibrils deposited in skeletal muscle exhibit amyloidosis-enhancing activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2873911/
https://www.ncbi.nlm.nih.gov/pubmed/20502680
http://dx.doi.org/10.1371/journal.ppat.1000914
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