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Gain-of-function mutation of microRNA-140 in human skeletal dysplasia

MicroRNAs (miRNAs) are posttranscriptional regulators of gene expression. Heterozygous loss-of-function point mutations of miRNA genes are associated with several human congenital disorders(1–5), but neomorphic (gain-of-new-function) mutations in miRNAs due to nucleotide substitutions have not been...

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Autores principales: Grigelioniene, Giedre, Suzuki, Hiroshi I., Taylan, Fulya, Mirzamohammadi, Fatemeh, Borochowitz, Zvi U., Ayturk, Ugur M., Tzur, Shay, Horemuzova, Eva, Lindstrand, Anna, Weis, Mary Ann, Grigelionis, Gintautas, Hammarsjö, Anna, Marsk, Elin, Nordgren, Ann, Nordenskjöld, Magnus, Eyre, David R., Warman, Matthew L., Nishimura, Gen, Sharp, Phillip A., Kobayashi, Tatsuya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6622181/
https://www.ncbi.nlm.nih.gov/pubmed/30804514
http://dx.doi.org/10.1038/s41591-019-0353-2
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author Grigelioniene, Giedre
Suzuki, Hiroshi I.
Taylan, Fulya
Mirzamohammadi, Fatemeh
Borochowitz, Zvi U.
Ayturk, Ugur M.
Tzur, Shay
Horemuzova, Eva
Lindstrand, Anna
Weis, Mary Ann
Grigelionis, Gintautas
Hammarsjö, Anna
Marsk, Elin
Nordgren, Ann
Nordenskjöld, Magnus
Eyre, David R.
Warman, Matthew L.
Nishimura, Gen
Sharp, Phillip A.
Kobayashi, Tatsuya
author_facet Grigelioniene, Giedre
Suzuki, Hiroshi I.
Taylan, Fulya
Mirzamohammadi, Fatemeh
Borochowitz, Zvi U.
Ayturk, Ugur M.
Tzur, Shay
Horemuzova, Eva
Lindstrand, Anna
Weis, Mary Ann
Grigelionis, Gintautas
Hammarsjö, Anna
Marsk, Elin
Nordgren, Ann
Nordenskjöld, Magnus
Eyre, David R.
Warman, Matthew L.
Nishimura, Gen
Sharp, Phillip A.
Kobayashi, Tatsuya
author_sort Grigelioniene, Giedre
collection PubMed
description MicroRNAs (miRNAs) are posttranscriptional regulators of gene expression. Heterozygous loss-of-function point mutations of miRNA genes are associated with several human congenital disorders(1–5), but neomorphic (gain-of-new-function) mutations in miRNAs due to nucleotide substitutions have not been reported. Here we describe a neomorphic seed region mutation in the chondrocyte-specific, super-enhancer-associated MIR140 encoding microRNA-140 (miR-140) in a novel autosomal dominant human skeletal dysplasia. Mice with the corresponding single nucleotide substitution show skeletal abnormalities similar to those of the patients but distinct from those of miR-140-null mice(6). This mutant miRNA gene yields abundant mutant miR-140-5p expression without miRNA-processing defects. In chondrocytes, the mutation causes widespread derepression of wild-type miR-140-5p targets and repression of mutant miR-140-5p targets, indicating that the mutation produces both loss-of-function and gain-of-function effects. Furthermore, the mutant miR-140-5p seed competes with the conserved RNA-binding protein Ybx1 for overlapping binding sites. This finding may explain the potent target repression and robust in vivo effect by this mutant miRNA even in the absence of evolutionary selection of miRNA-target RNA interactions, which contributes to the strong regulatory effects of conserved miRNAs(7,8). Our study presents the first case of a pathogenic gain-of-function miRNA mutation and provides molecular insight into neomorphic actions of emerging and/or mutant miRNAs.
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spelling pubmed-66221812019-08-25 Gain-of-function mutation of microRNA-140 in human skeletal dysplasia Grigelioniene, Giedre Suzuki, Hiroshi I. Taylan, Fulya Mirzamohammadi, Fatemeh Borochowitz, Zvi U. Ayturk, Ugur M. Tzur, Shay Horemuzova, Eva Lindstrand, Anna Weis, Mary Ann Grigelionis, Gintautas Hammarsjö, Anna Marsk, Elin Nordgren, Ann Nordenskjöld, Magnus Eyre, David R. Warman, Matthew L. Nishimura, Gen Sharp, Phillip A. Kobayashi, Tatsuya Nat Med Article MicroRNAs (miRNAs) are posttranscriptional regulators of gene expression. Heterozygous loss-of-function point mutations of miRNA genes are associated with several human congenital disorders(1–5), but neomorphic (gain-of-new-function) mutations in miRNAs due to nucleotide substitutions have not been reported. Here we describe a neomorphic seed region mutation in the chondrocyte-specific, super-enhancer-associated MIR140 encoding microRNA-140 (miR-140) in a novel autosomal dominant human skeletal dysplasia. Mice with the corresponding single nucleotide substitution show skeletal abnormalities similar to those of the patients but distinct from those of miR-140-null mice(6). This mutant miRNA gene yields abundant mutant miR-140-5p expression without miRNA-processing defects. In chondrocytes, the mutation causes widespread derepression of wild-type miR-140-5p targets and repression of mutant miR-140-5p targets, indicating that the mutation produces both loss-of-function and gain-of-function effects. Furthermore, the mutant miR-140-5p seed competes with the conserved RNA-binding protein Ybx1 for overlapping binding sites. This finding may explain the potent target repression and robust in vivo effect by this mutant miRNA even in the absence of evolutionary selection of miRNA-target RNA interactions, which contributes to the strong regulatory effects of conserved miRNAs(7,8). Our study presents the first case of a pathogenic gain-of-function miRNA mutation and provides molecular insight into neomorphic actions of emerging and/or mutant miRNAs. 2019-02-25 2019-04 /pmc/articles/PMC6622181/ /pubmed/30804514 http://dx.doi.org/10.1038/s41591-019-0353-2 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Grigelioniene, Giedre
Suzuki, Hiroshi I.
Taylan, Fulya
Mirzamohammadi, Fatemeh
Borochowitz, Zvi U.
Ayturk, Ugur M.
Tzur, Shay
Horemuzova, Eva
Lindstrand, Anna
Weis, Mary Ann
Grigelionis, Gintautas
Hammarsjö, Anna
Marsk, Elin
Nordgren, Ann
Nordenskjöld, Magnus
Eyre, David R.
Warman, Matthew L.
Nishimura, Gen
Sharp, Phillip A.
Kobayashi, Tatsuya
Gain-of-function mutation of microRNA-140 in human skeletal dysplasia
title Gain-of-function mutation of microRNA-140 in human skeletal dysplasia
title_full Gain-of-function mutation of microRNA-140 in human skeletal dysplasia
title_fullStr Gain-of-function mutation of microRNA-140 in human skeletal dysplasia
title_full_unstemmed Gain-of-function mutation of microRNA-140 in human skeletal dysplasia
title_short Gain-of-function mutation of microRNA-140 in human skeletal dysplasia
title_sort gain-of-function mutation of microrna-140 in human skeletal dysplasia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6622181/
https://www.ncbi.nlm.nih.gov/pubmed/30804514
http://dx.doi.org/10.1038/s41591-019-0353-2
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