Cargando…

The Aromatase Gene CYP19A1: Several Genetic and Functional Lines of Evidence Supporting a Role in Reading, Speech and Language

Inspired by the localization, on 15q21.2 of the CYP19A1 gene in the linkage region of speech and language disorders, and a rare translocation in a dyslexic individual that was brought to our attention, we conducted a series of studies on the properties of CYP19A1 as a candidate gene for dyslexia and...

Descripción completa

Detalles Bibliográficos
Autores principales: Anthoni, Heidi, Sucheston, Lara E., Lewis, Barbara A., Tapia-Páez, Isabel, Fan, Xiaotang, Zucchelli, Marco, Taipale, Mikko, Stein, Catherine M., Hokkanen, Marie-Estelle, Castrén, Eero, Pennington, Bruce F., Smith, Shelley D., Olson, Richard K., Tomblin, J. Bruce, Schulte-Körne, Gerd, Nöthen, Markus, Schumacher, Johannes, Müller-Myhsok, Bertram, Hoffmann, Per, Gilger, Jeffrey W., Hynd, George W., Nopola-Hemmi, Jaana, Leppanen, Paavo H. T., Lyytinen, Heikki, Schoumans, Jacqueline, Nordenskjöld, Magnus, Spencer, Jason, Stanic, Davor, Boon, Wah Chin, Simpson, Evan, Mäkelä, Sari, Gustafsson, Jan-Åke, Peyrard-Janvid, Myriam, Iyengar, Sudha, Kere, Juha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3375077/
https://www.ncbi.nlm.nih.gov/pubmed/22426781
http://dx.doi.org/10.1007/s10519-012-9532-3
_version_ 1782235711658786816
author Anthoni, Heidi
Sucheston, Lara E.
Lewis, Barbara A.
Tapia-Páez, Isabel
Fan, Xiaotang
Zucchelli, Marco
Taipale, Mikko
Stein, Catherine M.
Hokkanen, Marie-Estelle
Castrén, Eero
Pennington, Bruce F.
Smith, Shelley D.
Olson, Richard K.
Tomblin, J. Bruce
Schulte-Körne, Gerd
Nöthen, Markus
Schumacher, Johannes
Müller-Myhsok, Bertram
Hoffmann, Per
Gilger, Jeffrey W.
Hynd, George W.
Nopola-Hemmi, Jaana
Leppanen, Paavo H. T.
Lyytinen, Heikki
Schoumans, Jacqueline
Nordenskjöld, Magnus
Spencer, Jason
Stanic, Davor
Boon, Wah Chin
Simpson, Evan
Mäkelä, Sari
Gustafsson, Jan-Åke
Peyrard-Janvid, Myriam
Iyengar, Sudha
Kere, Juha
author_facet Anthoni, Heidi
Sucheston, Lara E.
Lewis, Barbara A.
Tapia-Páez, Isabel
Fan, Xiaotang
Zucchelli, Marco
Taipale, Mikko
Stein, Catherine M.
Hokkanen, Marie-Estelle
Castrén, Eero
Pennington, Bruce F.
Smith, Shelley D.
Olson, Richard K.
Tomblin, J. Bruce
Schulte-Körne, Gerd
Nöthen, Markus
Schumacher, Johannes
Müller-Myhsok, Bertram
Hoffmann, Per
Gilger, Jeffrey W.
Hynd, George W.
Nopola-Hemmi, Jaana
Leppanen, Paavo H. T.
Lyytinen, Heikki
Schoumans, Jacqueline
Nordenskjöld, Magnus
Spencer, Jason
Stanic, Davor
Boon, Wah Chin
Simpson, Evan
Mäkelä, Sari
Gustafsson, Jan-Åke
Peyrard-Janvid, Myriam
Iyengar, Sudha
Kere, Juha
author_sort Anthoni, Heidi
collection PubMed
description Inspired by the localization, on 15q21.2 of the CYP19A1 gene in the linkage region of speech and language disorders, and a rare translocation in a dyslexic individual that was brought to our attention, we conducted a series of studies on the properties of CYP19A1 as a candidate gene for dyslexia and related conditions. The aromatase enzyme is a member of the cytochrome P450 super family, and it serves several key functions: it catalyzes the conversion of androgens into estrogens; during early mammalian development it controls the differentiation of specific brain areas (e.g. local estrogen synthesis in the hippocampus regulates synaptic plasticity and axonal growth); it is involved in sexual differentiation of the brain; and in songbirds and teleost fishes, it regulates vocalization. Our results suggest that variations in CYP19A1 are associated with dyslexia as a categorical trait and with quantitative measures of language and speech, such as reading, vocabulary, phonological processing and oral motor skills. Variations near the vicinity of its brain promoter region altered transcription factor binding, suggesting a regulatory role in CYP19A1 expression. CYP19A1 expression in human brain correlated with the expression of dyslexia susceptibility genes such as DYX1C1 and ROBO1. Aromatase-deficient mice displayed increased cortical neuronal density and occasional cortical heterotopias, also observed in Robo1−/− mice and human dyslexic brains, respectively. An aromatase inhibitor reduced dendritic growth in cultured rat neurons. From this broad set of evidence, we propose CYP19A1 as a candidate gene for human cognitive functions implicated in reading, speech and language. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s10519-012-9532-3) contains supplementary material, which is available to authorized users.
format Online
Article
Text
id pubmed-3375077
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Springer US
record_format MEDLINE/PubMed
spelling pubmed-33750772012-06-18 The Aromatase Gene CYP19A1: Several Genetic and Functional Lines of Evidence Supporting a Role in Reading, Speech and Language Anthoni, Heidi Sucheston, Lara E. Lewis, Barbara A. Tapia-Páez, Isabel Fan, Xiaotang Zucchelli, Marco Taipale, Mikko Stein, Catherine M. Hokkanen, Marie-Estelle Castrén, Eero Pennington, Bruce F. Smith, Shelley D. Olson, Richard K. Tomblin, J. Bruce Schulte-Körne, Gerd Nöthen, Markus Schumacher, Johannes Müller-Myhsok, Bertram Hoffmann, Per Gilger, Jeffrey W. Hynd, George W. Nopola-Hemmi, Jaana Leppanen, Paavo H. T. Lyytinen, Heikki Schoumans, Jacqueline Nordenskjöld, Magnus Spencer, Jason Stanic, Davor Boon, Wah Chin Simpson, Evan Mäkelä, Sari Gustafsson, Jan-Åke Peyrard-Janvid, Myriam Iyengar, Sudha Kere, Juha Behav Genet Original Research Inspired by the localization, on 15q21.2 of the CYP19A1 gene in the linkage region of speech and language disorders, and a rare translocation in a dyslexic individual that was brought to our attention, we conducted a series of studies on the properties of CYP19A1 as a candidate gene for dyslexia and related conditions. The aromatase enzyme is a member of the cytochrome P450 super family, and it serves several key functions: it catalyzes the conversion of androgens into estrogens; during early mammalian development it controls the differentiation of specific brain areas (e.g. local estrogen synthesis in the hippocampus regulates synaptic plasticity and axonal growth); it is involved in sexual differentiation of the brain; and in songbirds and teleost fishes, it regulates vocalization. Our results suggest that variations in CYP19A1 are associated with dyslexia as a categorical trait and with quantitative measures of language and speech, such as reading, vocabulary, phonological processing and oral motor skills. Variations near the vicinity of its brain promoter region altered transcription factor binding, suggesting a regulatory role in CYP19A1 expression. CYP19A1 expression in human brain correlated with the expression of dyslexia susceptibility genes such as DYX1C1 and ROBO1. Aromatase-deficient mice displayed increased cortical neuronal density and occasional cortical heterotopias, also observed in Robo1−/− mice and human dyslexic brains, respectively. An aromatase inhibitor reduced dendritic growth in cultured rat neurons. From this broad set of evidence, we propose CYP19A1 as a candidate gene for human cognitive functions implicated in reading, speech and language. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s10519-012-9532-3) contains supplementary material, which is available to authorized users. Springer US 2012-03-17 2012 /pmc/articles/PMC3375077/ /pubmed/22426781 http://dx.doi.org/10.1007/s10519-012-9532-3 Text en © The Author(s) 2012 https://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the Creative Commons Attribution License which permits any use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited.
spellingShingle Original Research
Anthoni, Heidi
Sucheston, Lara E.
Lewis, Barbara A.
Tapia-Páez, Isabel
Fan, Xiaotang
Zucchelli, Marco
Taipale, Mikko
Stein, Catherine M.
Hokkanen, Marie-Estelle
Castrén, Eero
Pennington, Bruce F.
Smith, Shelley D.
Olson, Richard K.
Tomblin, J. Bruce
Schulte-Körne, Gerd
Nöthen, Markus
Schumacher, Johannes
Müller-Myhsok, Bertram
Hoffmann, Per
Gilger, Jeffrey W.
Hynd, George W.
Nopola-Hemmi, Jaana
Leppanen, Paavo H. T.
Lyytinen, Heikki
Schoumans, Jacqueline
Nordenskjöld, Magnus
Spencer, Jason
Stanic, Davor
Boon, Wah Chin
Simpson, Evan
Mäkelä, Sari
Gustafsson, Jan-Åke
Peyrard-Janvid, Myriam
Iyengar, Sudha
Kere, Juha
The Aromatase Gene CYP19A1: Several Genetic and Functional Lines of Evidence Supporting a Role in Reading, Speech and Language
title The Aromatase Gene CYP19A1: Several Genetic and Functional Lines of Evidence Supporting a Role in Reading, Speech and Language
title_full The Aromatase Gene CYP19A1: Several Genetic and Functional Lines of Evidence Supporting a Role in Reading, Speech and Language
title_fullStr The Aromatase Gene CYP19A1: Several Genetic and Functional Lines of Evidence Supporting a Role in Reading, Speech and Language
title_full_unstemmed The Aromatase Gene CYP19A1: Several Genetic and Functional Lines of Evidence Supporting a Role in Reading, Speech and Language
title_short The Aromatase Gene CYP19A1: Several Genetic and Functional Lines of Evidence Supporting a Role in Reading, Speech and Language
title_sort aromatase gene cyp19a1: several genetic and functional lines of evidence supporting a role in reading, speech and language
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3375077/
https://www.ncbi.nlm.nih.gov/pubmed/22426781
http://dx.doi.org/10.1007/s10519-012-9532-3
work_keys_str_mv AT anthoniheidi thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT suchestonlarae thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT lewisbarbaraa thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT tapiapaezisabel thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT fanxiaotang thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT zucchellimarco thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT taipalemikko thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT steincatherinem thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT hokkanenmarieestelle thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT castreneero thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT penningtonbrucef thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT smithshelleyd thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT olsonrichardk thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT tomblinjbruce thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT schultekornegerd thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT nothenmarkus thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT schumacherjohannes thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT mullermyhsokbertram thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT hoffmannper thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT gilgerjeffreyw thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT hyndgeorgew thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT nopolahemmijaana thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT leppanenpaavoht thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT lyytinenheikki thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT schoumansjacqueline thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT nordenskjoldmagnus thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT spencerjason thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT stanicdavor thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT boonwahchin thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT simpsonevan thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT makelasari thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT gustafssonjanake thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT peyrardjanvidmyriam thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT iyengarsudha thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT kerejuha thearomatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT anthoniheidi aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT suchestonlarae aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT lewisbarbaraa aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT tapiapaezisabel aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT fanxiaotang aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT zucchellimarco aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT taipalemikko aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT steincatherinem aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT hokkanenmarieestelle aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT castreneero aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT penningtonbrucef aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT smithshelleyd aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT olsonrichardk aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT tomblinjbruce aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT schultekornegerd aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT nothenmarkus aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT schumacherjohannes aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT mullermyhsokbertram aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT hoffmannper aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT gilgerjeffreyw aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT hyndgeorgew aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT nopolahemmijaana aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT leppanenpaavoht aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT lyytinenheikki aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT schoumansjacqueline aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT nordenskjoldmagnus aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT spencerjason aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT stanicdavor aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT boonwahchin aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT simpsonevan aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT makelasari aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT gustafssonjanake aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT peyrardjanvidmyriam aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT iyengarsudha aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage
AT kerejuha aromatasegenecyp19a1severalgeneticandfunctionallinesofevidencesupportingaroleinreadingspeechandlanguage