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The variant rs77559646 associated with aggressive prostate cancer disrupts ANO7 mRNA splicing and protein expression

Prostate cancer is among the most common cancers in men, with a large fraction of the individual risk attributable to heritable factors. A majority of the diagnosed cases does not lead to a lethal disease, and hence biological markers that can distinguish between indolent and fatal forms of the dise...

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Autores principales: Wahlström, Gudrun, Heron, Samuel, Knuuttila, Matias, Kaikkonen, Elina, Tulonen, Nea, Metsälä, Olli, Löf, Christoffer, Ettala, Otto, Boström, Peter J, Taimen, Pekka, Poutanen, Matti, Schleutker, Johanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9239746/
https://www.ncbi.nlm.nih.gov/pubmed/35043958
http://dx.doi.org/10.1093/hmg/ddac012
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author Wahlström, Gudrun
Heron, Samuel
Knuuttila, Matias
Kaikkonen, Elina
Tulonen, Nea
Metsälä, Olli
Löf, Christoffer
Ettala, Otto
Boström, Peter J
Taimen, Pekka
Poutanen, Matti
Schleutker, Johanna
author_facet Wahlström, Gudrun
Heron, Samuel
Knuuttila, Matias
Kaikkonen, Elina
Tulonen, Nea
Metsälä, Olli
Löf, Christoffer
Ettala, Otto
Boström, Peter J
Taimen, Pekka
Poutanen, Matti
Schleutker, Johanna
author_sort Wahlström, Gudrun
collection PubMed
description Prostate cancer is among the most common cancers in men, with a large fraction of the individual risk attributable to heritable factors. A majority of the diagnosed cases does not lead to a lethal disease, and hence biological markers that can distinguish between indolent and fatal forms of the disease are of great importance for guiding treatment decisions. Although over 300 genetic variants are known to be associated with prostate cancer risk, few have been associated with the risk of an aggressive disease. One such variant is rs77559646 located in ANO7. This variant has a dual function. It constitutes a missense mutation in the short isoform of ANO7 and a splice region mutation in full-length ANO7. In this study, we have analyzed the impact of the variant allele of rs77559646 on ANO7 mRNA splicing using a minigene splicing assay and by performing splicing analysis with the tools IRFinder (intron retention finder), rMATS (replicate multivariate analysis of transcript splicing) and LeafCutter on RNA sequencing data from prostate tissue of six rs77559646 variant allele carriers and 43 non-carriers. The results revealed a severe disruption of ANO7 mRNA splicing in rs77559646 variant allele carriers. Immunohistochemical analysis of prostate samples from patients homozygous for the rs77559646 variant allele demonstrated a loss of apically localized ANO7 protein. Our study is the first to provide a mechanistic explanation for the impact of a prostate cancer risk SNP on ANO7 protein production. Furthermore, the rs77559646 variant is the first known germline loss-of-function mutation described for ANO7. We suggest that loss of ANO7 contributes to prostate cancer progression.
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spelling pubmed-92397462022-06-29 The variant rs77559646 associated with aggressive prostate cancer disrupts ANO7 mRNA splicing and protein expression Wahlström, Gudrun Heron, Samuel Knuuttila, Matias Kaikkonen, Elina Tulonen, Nea Metsälä, Olli Löf, Christoffer Ettala, Otto Boström, Peter J Taimen, Pekka Poutanen, Matti Schleutker, Johanna Hum Mol Genet Original Article Prostate cancer is among the most common cancers in men, with a large fraction of the individual risk attributable to heritable factors. A majority of the diagnosed cases does not lead to a lethal disease, and hence biological markers that can distinguish between indolent and fatal forms of the disease are of great importance for guiding treatment decisions. Although over 300 genetic variants are known to be associated with prostate cancer risk, few have been associated with the risk of an aggressive disease. One such variant is rs77559646 located in ANO7. This variant has a dual function. It constitutes a missense mutation in the short isoform of ANO7 and a splice region mutation in full-length ANO7. In this study, we have analyzed the impact of the variant allele of rs77559646 on ANO7 mRNA splicing using a minigene splicing assay and by performing splicing analysis with the tools IRFinder (intron retention finder), rMATS (replicate multivariate analysis of transcript splicing) and LeafCutter on RNA sequencing data from prostate tissue of six rs77559646 variant allele carriers and 43 non-carriers. The results revealed a severe disruption of ANO7 mRNA splicing in rs77559646 variant allele carriers. Immunohistochemical analysis of prostate samples from patients homozygous for the rs77559646 variant allele demonstrated a loss of apically localized ANO7 protein. Our study is the first to provide a mechanistic explanation for the impact of a prostate cancer risk SNP on ANO7 protein production. Furthermore, the rs77559646 variant is the first known germline loss-of-function mutation described for ANO7. We suggest that loss of ANO7 contributes to prostate cancer progression. Oxford University Press 2022-01-19 /pmc/articles/PMC9239746/ /pubmed/35043958 http://dx.doi.org/10.1093/hmg/ddac012 Text en © The Author(s) 2022. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Wahlström, Gudrun
Heron, Samuel
Knuuttila, Matias
Kaikkonen, Elina
Tulonen, Nea
Metsälä, Olli
Löf, Christoffer
Ettala, Otto
Boström, Peter J
Taimen, Pekka
Poutanen, Matti
Schleutker, Johanna
The variant rs77559646 associated with aggressive prostate cancer disrupts ANO7 mRNA splicing and protein expression
title The variant rs77559646 associated with aggressive prostate cancer disrupts ANO7 mRNA splicing and protein expression
title_full The variant rs77559646 associated with aggressive prostate cancer disrupts ANO7 mRNA splicing and protein expression
title_fullStr The variant rs77559646 associated with aggressive prostate cancer disrupts ANO7 mRNA splicing and protein expression
title_full_unstemmed The variant rs77559646 associated with aggressive prostate cancer disrupts ANO7 mRNA splicing and protein expression
title_short The variant rs77559646 associated with aggressive prostate cancer disrupts ANO7 mRNA splicing and protein expression
title_sort variant rs77559646 associated with aggressive prostate cancer disrupts ano7 mrna splicing and protein expression
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9239746/
https://www.ncbi.nlm.nih.gov/pubmed/35043958
http://dx.doi.org/10.1093/hmg/ddac012
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