Cargando…

Dystonia-specific mutations in THAP1 alter transcription of genes associated with neurodevelopment and myelin

Dystonia is a neurologic disorder associated with an increasingly large number of genetic variants in many genes, resulting in characteristic disturbances in volitional movement. Dissecting the relationships between these mutations and their functional outcomes is critical in understanding the pathw...

Descripción completa

Detalles Bibliográficos
Autores principales: Domingo, Aloysius, Yadav, Rachita, Shah, Shivangi, Hendriks, William T., Erdin, Serkan, Gao, Dadi, O’Keefe, Kathryn, Currall, Benjamin, Gusella, James F., Sharma, Nutan, Ozelius, Laurie J., Ehrlich, Michelle E., Talkowski, Michael E., Bragg, D. Cristopher
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8595948/
https://www.ncbi.nlm.nih.gov/pubmed/34672987
http://dx.doi.org/10.1016/j.ajhg.2021.09.017
_version_ 1784600256517767168
author Domingo, Aloysius
Yadav, Rachita
Shah, Shivangi
Hendriks, William T.
Erdin, Serkan
Gao, Dadi
O’Keefe, Kathryn
Currall, Benjamin
Gusella, James F.
Sharma, Nutan
Ozelius, Laurie J.
Ehrlich, Michelle E.
Talkowski, Michael E.
Bragg, D. Cristopher
author_facet Domingo, Aloysius
Yadav, Rachita
Shah, Shivangi
Hendriks, William T.
Erdin, Serkan
Gao, Dadi
O’Keefe, Kathryn
Currall, Benjamin
Gusella, James F.
Sharma, Nutan
Ozelius, Laurie J.
Ehrlich, Michelle E.
Talkowski, Michael E.
Bragg, D. Cristopher
author_sort Domingo, Aloysius
collection PubMed
description Dystonia is a neurologic disorder associated with an increasingly large number of genetic variants in many genes, resulting in characteristic disturbances in volitional movement. Dissecting the relationships between these mutations and their functional outcomes is critical in understanding the pathways that drive dystonia pathogenesis. Here we established a pipeline for characterizing an allelic series of dystonia-specific mutations. We used this strategy to investigate the molecular consequences of genetic variation in THAP1, which encodes a transcription factor linked to neural differentiation. Multiple pathogenic mutations associated with dystonia cluster within distinct THAP1 functional domains and are predicted to alter DNA-binding properties and/or protein interactions differently, yet the relative impact of these varied changes on molecular signatures and neural deficits is unclear. To determine the effects of these mutations on THAP1 transcriptional activity, we engineered an allelic series of eight alterations in a common induced pluripotent stem cell background and differentiated these lines into a panel of near-isogenic neural stem cells (n = 94 lines). Transcriptome profiling followed by joint analysis of the most robust signatures across mutations identified a convergent pattern of dysregulated genes functionally related to neurodevelopment, lysosomal lipid metabolism, and myelin. On the basis of these observations, we examined mice bearing Thap1-disruptive alleles and detected significant changes in myelin gene expression and reduction of myelin structural integrity relative to control mice. These results suggest that deficits in neurodevelopment and myelination are common consequences of dystonia-associated THAP1 mutations and highlight the potential role of neuron-glial interactions in the pathogenesis of dystonia.
format Online
Article
Text
id pubmed-8595948
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-85959482021-11-23 Dystonia-specific mutations in THAP1 alter transcription of genes associated with neurodevelopment and myelin Domingo, Aloysius Yadav, Rachita Shah, Shivangi Hendriks, William T. Erdin, Serkan Gao, Dadi O’Keefe, Kathryn Currall, Benjamin Gusella, James F. Sharma, Nutan Ozelius, Laurie J. Ehrlich, Michelle E. Talkowski, Michael E. Bragg, D. Cristopher Am J Hum Genet Article Dystonia is a neurologic disorder associated with an increasingly large number of genetic variants in many genes, resulting in characteristic disturbances in volitional movement. Dissecting the relationships between these mutations and their functional outcomes is critical in understanding the pathways that drive dystonia pathogenesis. Here we established a pipeline for characterizing an allelic series of dystonia-specific mutations. We used this strategy to investigate the molecular consequences of genetic variation in THAP1, which encodes a transcription factor linked to neural differentiation. Multiple pathogenic mutations associated with dystonia cluster within distinct THAP1 functional domains and are predicted to alter DNA-binding properties and/or protein interactions differently, yet the relative impact of these varied changes on molecular signatures and neural deficits is unclear. To determine the effects of these mutations on THAP1 transcriptional activity, we engineered an allelic series of eight alterations in a common induced pluripotent stem cell background and differentiated these lines into a panel of near-isogenic neural stem cells (n = 94 lines). Transcriptome profiling followed by joint analysis of the most robust signatures across mutations identified a convergent pattern of dysregulated genes functionally related to neurodevelopment, lysosomal lipid metabolism, and myelin. On the basis of these observations, we examined mice bearing Thap1-disruptive alleles and detected significant changes in myelin gene expression and reduction of myelin structural integrity relative to control mice. These results suggest that deficits in neurodevelopment and myelination are common consequences of dystonia-associated THAP1 mutations and highlight the potential role of neuron-glial interactions in the pathogenesis of dystonia. Elsevier 2021-11-04 2021-10-20 /pmc/articles/PMC8595948/ /pubmed/34672987 http://dx.doi.org/10.1016/j.ajhg.2021.09.017 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Domingo, Aloysius
Yadav, Rachita
Shah, Shivangi
Hendriks, William T.
Erdin, Serkan
Gao, Dadi
O’Keefe, Kathryn
Currall, Benjamin
Gusella, James F.
Sharma, Nutan
Ozelius, Laurie J.
Ehrlich, Michelle E.
Talkowski, Michael E.
Bragg, D. Cristopher
Dystonia-specific mutations in THAP1 alter transcription of genes associated with neurodevelopment and myelin
title Dystonia-specific mutations in THAP1 alter transcription of genes associated with neurodevelopment and myelin
title_full Dystonia-specific mutations in THAP1 alter transcription of genes associated with neurodevelopment and myelin
title_fullStr Dystonia-specific mutations in THAP1 alter transcription of genes associated with neurodevelopment and myelin
title_full_unstemmed Dystonia-specific mutations in THAP1 alter transcription of genes associated with neurodevelopment and myelin
title_short Dystonia-specific mutations in THAP1 alter transcription of genes associated with neurodevelopment and myelin
title_sort dystonia-specific mutations in thap1 alter transcription of genes associated with neurodevelopment and myelin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8595948/
https://www.ncbi.nlm.nih.gov/pubmed/34672987
http://dx.doi.org/10.1016/j.ajhg.2021.09.017
work_keys_str_mv AT domingoaloysius dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT yadavrachita dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT shahshivangi dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT hendrikswilliamt dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT erdinserkan dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT gaodadi dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT okeefekathryn dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT currallbenjamin dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT gusellajamesf dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT sharmanutan dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT ozeliuslauriej dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT ehrlichmichellee dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT talkowskimichaele dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin
AT braggdcristopher dystoniaspecificmutationsinthap1altertranscriptionofgenesassociatedwithneurodevelopmentandmyelin