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Protease inhibitor 15, a candidate gene for abdominal aortic internal elastic lamina ruptures in the rat

The inbred Brown Norway (BN) rat develops spontaneous ruptures of the internal elastic lamina (RIEL) of the abdominal aorta (AA) and iliac arteries. Prior studies with crosses of the BN/Orl RJ (susceptible) and LOU/M (resistant) showed the presence of a significant QTL on chromosome 5 and the produc...

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Autores principales: Falak, Samreen, Schafer, Sebastian, Baud, Amelie, Hummel, Oliver, Schulz, Herbert, Gauguier, Dominique, Hubner, Norbert, Osborne-Pellegrin, Mary
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Physiological Society 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4060037/
https://www.ncbi.nlm.nih.gov/pubmed/24790086
http://dx.doi.org/10.1152/physiolgenomics.00004.2014
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author Falak, Samreen
Schafer, Sebastian
Baud, Amelie
Hummel, Oliver
Schulz, Herbert
Gauguier, Dominique
Hubner, Norbert
Osborne-Pellegrin, Mary
author_facet Falak, Samreen
Schafer, Sebastian
Baud, Amelie
Hummel, Oliver
Schulz, Herbert
Gauguier, Dominique
Hubner, Norbert
Osborne-Pellegrin, Mary
author_sort Falak, Samreen
collection PubMed
description The inbred Brown Norway (BN) rat develops spontaneous ruptures of the internal elastic lamina (RIEL) of the abdominal aorta (AA) and iliac arteries. Prior studies with crosses of the BN/Orl RJ (susceptible) and LOU/M (resistant) showed the presence of a significant QTL on chromosome 5 and the production of congenic rats proved the involvement of this locus. In this study, we further dissected the above-mentioned QTL by creating a new panel of LOU.BN(chr5) congenic and subcongenic lines and reduced the locus to 5.2 Mb. Then we studied 1,002 heterogeneous stock (HS) rats, whose phenotyping revealed a low prevalence and high variability for RIEL. High-resolution mapping in the HS panel detected the major locus on chromosome 5 (log P > 35) and refined it to 1.4 Mb. Subsequently, RNA-seq analysis on AA of BN, congenics, and LOU revealed expression differences for only protease inhibitor 15 (Pi15) gene and a putative long intergenic noncoding RNA (lincRNA) within the linkage region. The high abundance of lincRNA with respect to reduced Pi15 expression, in conjunction with exertion of longitudinal strain, may be related to RIEL, indicating the potential importance of proteases in biological processes related to defective aortic internal elastic lamina structure. Similar mechanisms may be involved in aneurysm initiation in the human AA.
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spelling pubmed-40600372014-08-06 Protease inhibitor 15, a candidate gene for abdominal aortic internal elastic lamina ruptures in the rat Falak, Samreen Schafer, Sebastian Baud, Amelie Hummel, Oliver Schulz, Herbert Gauguier, Dominique Hubner, Norbert Osborne-Pellegrin, Mary Physiol Genomics Molecular Genetics of Complex Traits The inbred Brown Norway (BN) rat develops spontaneous ruptures of the internal elastic lamina (RIEL) of the abdominal aorta (AA) and iliac arteries. Prior studies with crosses of the BN/Orl RJ (susceptible) and LOU/M (resistant) showed the presence of a significant QTL on chromosome 5 and the production of congenic rats proved the involvement of this locus. In this study, we further dissected the above-mentioned QTL by creating a new panel of LOU.BN(chr5) congenic and subcongenic lines and reduced the locus to 5.2 Mb. Then we studied 1,002 heterogeneous stock (HS) rats, whose phenotyping revealed a low prevalence and high variability for RIEL. High-resolution mapping in the HS panel detected the major locus on chromosome 5 (log P > 35) and refined it to 1.4 Mb. Subsequently, RNA-seq analysis on AA of BN, congenics, and LOU revealed expression differences for only protease inhibitor 15 (Pi15) gene and a putative long intergenic noncoding RNA (lincRNA) within the linkage region. The high abundance of lincRNA with respect to reduced Pi15 expression, in conjunction with exertion of longitudinal strain, may be related to RIEL, indicating the potential importance of proteases in biological processes related to defective aortic internal elastic lamina structure. Similar mechanisms may be involved in aneurysm initiation in the human AA. American Physiological Society 2014-05-01 2014-06-15 /pmc/articles/PMC4060037/ /pubmed/24790086 http://dx.doi.org/10.1152/physiolgenomics.00004.2014 Text en Copyright © 2014 the American Physiological Society Licensed under Creative Commons Attribution CC-BY 3.0 (http://creativecommons.org/licenses/by/3.0/deed.en_US) : the American Physiological Society.
spellingShingle Molecular Genetics of Complex Traits
Falak, Samreen
Schafer, Sebastian
Baud, Amelie
Hummel, Oliver
Schulz, Herbert
Gauguier, Dominique
Hubner, Norbert
Osborne-Pellegrin, Mary
Protease inhibitor 15, a candidate gene for abdominal aortic internal elastic lamina ruptures in the rat
title Protease inhibitor 15, a candidate gene for abdominal aortic internal elastic lamina ruptures in the rat
title_full Protease inhibitor 15, a candidate gene for abdominal aortic internal elastic lamina ruptures in the rat
title_fullStr Protease inhibitor 15, a candidate gene for abdominal aortic internal elastic lamina ruptures in the rat
title_full_unstemmed Protease inhibitor 15, a candidate gene for abdominal aortic internal elastic lamina ruptures in the rat
title_short Protease inhibitor 15, a candidate gene for abdominal aortic internal elastic lamina ruptures in the rat
title_sort protease inhibitor 15, a candidate gene for abdominal aortic internal elastic lamina ruptures in the rat
topic Molecular Genetics of Complex Traits
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4060037/
https://www.ncbi.nlm.nih.gov/pubmed/24790086
http://dx.doi.org/10.1152/physiolgenomics.00004.2014
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