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The fibrillogenic L178H variant of apolipoprotein A-I forms helical fibrils

A number of amyloidogenic variants of apoA-I have been discovered but most have not been analyzed. Previously, we showed that the G26R mutation of apoA-I leads to increased β-strand structure, increased N-terminal protease susceptibility, and increased fibril formation after several days of incubati...

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Autores principales: Petrlova, Jitka, Duong, Trang, Cochran, Megan C., Axelsson, Annika, Mörgelin, Matthias, Roberts, Linda M., Lagerstedt, Jens O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3276462/
https://www.ncbi.nlm.nih.gov/pubmed/22184756
http://dx.doi.org/10.1194/jlr.M020883
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author Petrlova, Jitka
Duong, Trang
Cochran, Megan C.
Axelsson, Annika
Mörgelin, Matthias
Roberts, Linda M.
Lagerstedt, Jens O.
author_facet Petrlova, Jitka
Duong, Trang
Cochran, Megan C.
Axelsson, Annika
Mörgelin, Matthias
Roberts, Linda M.
Lagerstedt, Jens O.
author_sort Petrlova, Jitka
collection PubMed
description A number of amyloidogenic variants of apoA-I have been discovered but most have not been analyzed. Previously, we showed that the G26R mutation of apoA-I leads to increased β-strand structure, increased N-terminal protease susceptibility, and increased fibril formation after several days of incubation. In vivo, this and other variants mutated in the N-terminal domain (residues 26 to ∼90) lead to renal and hepatic accumulation. In contrast, several mutations identified within residues 170 to 178 lead to cardiac, laryngeal, and cutaneous protein deposition. Here, we describe the structural changes in the fibrillogenic variant L178H. Like G26R, the initial structure of the protein exhibits altered tertiary conformation relative to wild-type protein along with decreased stability and an altered lipid binding profile. However, in contrast to G26R, L178H undergoes an increase in helical structure upon incubation at 37°C with a half time (t(1/2)) of about 12 days. Upon prolonged incubation, the L178H mutant forms fibrils of a diameter of 10 nm that ranges in length from 30 to 120 nm. These results show that apoA-I, known for its dynamic properties, has the ability to form multiple fibrillar conformations, which may play a role in the tissue-specific deposition of the individual variants.
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spelling pubmed-32764622013-03-01 The fibrillogenic L178H variant of apolipoprotein A-I forms helical fibrils Petrlova, Jitka Duong, Trang Cochran, Megan C. Axelsson, Annika Mörgelin, Matthias Roberts, Linda M. Lagerstedt, Jens O. J Lipid Res Research Articles A number of amyloidogenic variants of apoA-I have been discovered but most have not been analyzed. Previously, we showed that the G26R mutation of apoA-I leads to increased β-strand structure, increased N-terminal protease susceptibility, and increased fibril formation after several days of incubation. In vivo, this and other variants mutated in the N-terminal domain (residues 26 to ∼90) lead to renal and hepatic accumulation. In contrast, several mutations identified within residues 170 to 178 lead to cardiac, laryngeal, and cutaneous protein deposition. Here, we describe the structural changes in the fibrillogenic variant L178H. Like G26R, the initial structure of the protein exhibits altered tertiary conformation relative to wild-type protein along with decreased stability and an altered lipid binding profile. However, in contrast to G26R, L178H undergoes an increase in helical structure upon incubation at 37°C with a half time (t(1/2)) of about 12 days. Upon prolonged incubation, the L178H mutant forms fibrils of a diameter of 10 nm that ranges in length from 30 to 120 nm. These results show that apoA-I, known for its dynamic properties, has the ability to form multiple fibrillar conformations, which may play a role in the tissue-specific deposition of the individual variants. The American Society for Biochemistry and Molecular Biology 2012-03 /pmc/articles/PMC3276462/ /pubmed/22184756 http://dx.doi.org/10.1194/jlr.M020883 Text en Copyright © 2012 by the American Society for Biochemistry and Molecular Biology, Inc. http://creativecommons.org/licenses/by-nc/3.0/ Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Research Articles
Petrlova, Jitka
Duong, Trang
Cochran, Megan C.
Axelsson, Annika
Mörgelin, Matthias
Roberts, Linda M.
Lagerstedt, Jens O.
The fibrillogenic L178H variant of apolipoprotein A-I forms helical fibrils
title The fibrillogenic L178H variant of apolipoprotein A-I forms helical fibrils
title_full The fibrillogenic L178H variant of apolipoprotein A-I forms helical fibrils
title_fullStr The fibrillogenic L178H variant of apolipoprotein A-I forms helical fibrils
title_full_unstemmed The fibrillogenic L178H variant of apolipoprotein A-I forms helical fibrils
title_short The fibrillogenic L178H variant of apolipoprotein A-I forms helical fibrils
title_sort fibrillogenic l178h variant of apolipoprotein a-i forms helical fibrils
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3276462/
https://www.ncbi.nlm.nih.gov/pubmed/22184756
http://dx.doi.org/10.1194/jlr.M020883
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