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SNPs in bone-related miRNAs are associated with the osteoporotic phenotype

Biogenesis and function of microRNAs can be influenced by genetic variants in the pri-miRNA sequences leading to phenotypic variability. This study aims to identify single nucleotide polymorphisms (SNPs) affecting the expression levels of bone-related mature microRNAs and thus, triggering an osteopo...

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Autores principales: De-Ugarte, Laura, Caro-Molina, Enrique, Rodríguez-Sanz, Maria, García-Pérez, Miguel Angel, Olmos, José M., Sosa-Henríquez, Manuel, Pérez-Cano, Ramón, Gómez-Alonso, Carlos, Del Rio, Luis, Mateo-Agudo, Jesús, Blázquez-Cabrera, José Antonio, González-Macías, Jesús, Pino-Montes, Javier del, Muñoz-Torres, Manuel, Diaz-Curiel, Manuel, Malouf, Jorge, Cano, Antonio, Pérez-Castrillon, José Luis, Nogues, Xavier, Garcia-Giralt, Natalia, Diez-Perez, Adolfo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5428869/
https://www.ncbi.nlm.nih.gov/pubmed/28364128
http://dx.doi.org/10.1038/s41598-017-00641-7
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author De-Ugarte, Laura
Caro-Molina, Enrique
Rodríguez-Sanz, Maria
García-Pérez, Miguel Angel
Olmos, José M.
Sosa-Henríquez, Manuel
Pérez-Cano, Ramón
Gómez-Alonso, Carlos
Del Rio, Luis
Mateo-Agudo, Jesús
Blázquez-Cabrera, José Antonio
González-Macías, Jesús
Pino-Montes, Javier del
Muñoz-Torres, Manuel
Diaz-Curiel, Manuel
Malouf, Jorge
Cano, Antonio
Pérez-Castrillon, José Luis
Nogues, Xavier
Garcia-Giralt, Natalia
Diez-Perez, Adolfo
author_facet De-Ugarte, Laura
Caro-Molina, Enrique
Rodríguez-Sanz, Maria
García-Pérez, Miguel Angel
Olmos, José M.
Sosa-Henríquez, Manuel
Pérez-Cano, Ramón
Gómez-Alonso, Carlos
Del Rio, Luis
Mateo-Agudo, Jesús
Blázquez-Cabrera, José Antonio
González-Macías, Jesús
Pino-Montes, Javier del
Muñoz-Torres, Manuel
Diaz-Curiel, Manuel
Malouf, Jorge
Cano, Antonio
Pérez-Castrillon, José Luis
Nogues, Xavier
Garcia-Giralt, Natalia
Diez-Perez, Adolfo
author_sort De-Ugarte, Laura
collection PubMed
description Biogenesis and function of microRNAs can be influenced by genetic variants in the pri-miRNA sequences leading to phenotypic variability. This study aims to identify single nucleotide polymorphisms (SNPs) affecting the expression levels of bone-related mature microRNAs and thus, triggering an osteoporotic phenotype. An association analysis of SNPs located in pri-miRNA sequences with bone mineral density (BMD) was performed in the OSTEOMED2 cohort (n = 2183). Functional studies were performed for assessing the role of BMD-associated miRNAs in bone cells. Two SNPs, rs6430498 in the miR-3679 and rs12512664 in the miR-4274, were significantly associated with femoral neck BMD. Further, we measured these BMD-associated microRNAs in trabecular bone from osteoporotic hip fractures comparing to non-osteoporotic bone by qPCR. Both microRNAs were found overexpressed in fractured bone. Increased matrix mineralization was observed after miR-3679-3p inhibition in human osteoblastic cells. Finally, genotypes of rs6430498 and rs12512664 were correlated with expression levels of miR-3679 and miR-4274, respectively, in osteoblasts. In both cases, the allele that generated higher microRNA expression levels was associated with lower BMD values. In conclusion, two osteoblast-expressed microRNAs, miR-3679 and miR-4274, were associated with BMD; their overexpression could contribute to the osteoporotic phenotype. These findings open new areas for the study of bone disorders.
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spelling pubmed-54288692017-05-15 SNPs in bone-related miRNAs are associated with the osteoporotic phenotype De-Ugarte, Laura Caro-Molina, Enrique Rodríguez-Sanz, Maria García-Pérez, Miguel Angel Olmos, José M. Sosa-Henríquez, Manuel Pérez-Cano, Ramón Gómez-Alonso, Carlos Del Rio, Luis Mateo-Agudo, Jesús Blázquez-Cabrera, José Antonio González-Macías, Jesús Pino-Montes, Javier del Muñoz-Torres, Manuel Diaz-Curiel, Manuel Malouf, Jorge Cano, Antonio Pérez-Castrillon, José Luis Nogues, Xavier Garcia-Giralt, Natalia Diez-Perez, Adolfo Sci Rep Article Biogenesis and function of microRNAs can be influenced by genetic variants in the pri-miRNA sequences leading to phenotypic variability. This study aims to identify single nucleotide polymorphisms (SNPs) affecting the expression levels of bone-related mature microRNAs and thus, triggering an osteoporotic phenotype. An association analysis of SNPs located in pri-miRNA sequences with bone mineral density (BMD) was performed in the OSTEOMED2 cohort (n = 2183). Functional studies were performed for assessing the role of BMD-associated miRNAs in bone cells. Two SNPs, rs6430498 in the miR-3679 and rs12512664 in the miR-4274, were significantly associated with femoral neck BMD. Further, we measured these BMD-associated microRNAs in trabecular bone from osteoporotic hip fractures comparing to non-osteoporotic bone by qPCR. Both microRNAs were found overexpressed in fractured bone. Increased matrix mineralization was observed after miR-3679-3p inhibition in human osteoblastic cells. Finally, genotypes of rs6430498 and rs12512664 were correlated with expression levels of miR-3679 and miR-4274, respectively, in osteoblasts. In both cases, the allele that generated higher microRNA expression levels was associated with lower BMD values. In conclusion, two osteoblast-expressed microRNAs, miR-3679 and miR-4274, were associated with BMD; their overexpression could contribute to the osteoporotic phenotype. These findings open new areas for the study of bone disorders. Nature Publishing Group UK 2017-03-31 /pmc/articles/PMC5428869/ /pubmed/28364128 http://dx.doi.org/10.1038/s41598-017-00641-7 Text en © The Author(s) 2017 This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
De-Ugarte, Laura
Caro-Molina, Enrique
Rodríguez-Sanz, Maria
García-Pérez, Miguel Angel
Olmos, José M.
Sosa-Henríquez, Manuel
Pérez-Cano, Ramón
Gómez-Alonso, Carlos
Del Rio, Luis
Mateo-Agudo, Jesús
Blázquez-Cabrera, José Antonio
González-Macías, Jesús
Pino-Montes, Javier del
Muñoz-Torres, Manuel
Diaz-Curiel, Manuel
Malouf, Jorge
Cano, Antonio
Pérez-Castrillon, José Luis
Nogues, Xavier
Garcia-Giralt, Natalia
Diez-Perez, Adolfo
SNPs in bone-related miRNAs are associated with the osteoporotic phenotype
title SNPs in bone-related miRNAs are associated with the osteoporotic phenotype
title_full SNPs in bone-related miRNAs are associated with the osteoporotic phenotype
title_fullStr SNPs in bone-related miRNAs are associated with the osteoporotic phenotype
title_full_unstemmed SNPs in bone-related miRNAs are associated with the osteoporotic phenotype
title_short SNPs in bone-related miRNAs are associated with the osteoporotic phenotype
title_sort snps in bone-related mirnas are associated with the osteoporotic phenotype
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5428869/
https://www.ncbi.nlm.nih.gov/pubmed/28364128
http://dx.doi.org/10.1038/s41598-017-00641-7
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