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Neurodevelopmental deficits and cell-type-specific transcriptomic perturbations in a mouse model of HNRNPU haploinsufficiency

Heterozygous de novo loss-of-function mutations in the gene expression regulator HNRNPU cause an early-onset developmental and epileptic encephalopathy. To gain insight into pathological mechanisms and lay the potential groundwork for developing targeted therapies, we characterized the neurophysiolo...

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Autores principales: Dugger, Sarah A., Dhindsa, Ryan S., Sampaio, Gabriela De Almeida, Ressler, Andrew K., Rafikian, Elizabeth E., Petri, Sabrina, Letts, Verity A., Teoh, JiaJie, Ye, Junqiang, Colombo, Sophie, Peng, Yueqing, Yang, Mu, Boland, Michael J., Frankel, Wayne N., Goldstein, David B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10569524/
https://www.ncbi.nlm.nih.gov/pubmed/37782669
http://dx.doi.org/10.1371/journal.pgen.1010952
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author Dugger, Sarah A.
Dhindsa, Ryan S.
Sampaio, Gabriela De Almeida
Ressler, Andrew K.
Rafikian, Elizabeth E.
Petri, Sabrina
Letts, Verity A.
Teoh, JiaJie
Ye, Junqiang
Colombo, Sophie
Peng, Yueqing
Yang, Mu
Boland, Michael J.
Frankel, Wayne N.
Goldstein, David B.
author_facet Dugger, Sarah A.
Dhindsa, Ryan S.
Sampaio, Gabriela De Almeida
Ressler, Andrew K.
Rafikian, Elizabeth E.
Petri, Sabrina
Letts, Verity A.
Teoh, JiaJie
Ye, Junqiang
Colombo, Sophie
Peng, Yueqing
Yang, Mu
Boland, Michael J.
Frankel, Wayne N.
Goldstein, David B.
author_sort Dugger, Sarah A.
collection PubMed
description Heterozygous de novo loss-of-function mutations in the gene expression regulator HNRNPU cause an early-onset developmental and epileptic encephalopathy. To gain insight into pathological mechanisms and lay the potential groundwork for developing targeted therapies, we characterized the neurophysiologic and cell-type-specific transcriptomic consequences of a mouse model of HNRNPU haploinsufficiency. Heterozygous mutants demonstrated global developmental delay, impaired ultrasonic vocalizations, cognitive dysfunction and increased seizure susceptibility, thus modeling aspects of the human disease. Single-cell RNA-sequencing of hippocampal and neocortical cells revealed widespread, yet modest, dysregulation of gene expression across mutant neuronal subtypes. We observed an increased burden of differentially-expressed genes in mutant excitatory neurons of the subiculum—a region of the hippocampus implicated in temporal lobe epilepsy. Evaluation of transcriptomic signature reversal as a therapeutic strategy highlights the potential importance of generating cell-type-specific signatures. Overall, this work provides insight into HNRNPU-mediated disease mechanisms and provides a framework for using single-cell RNA-sequencing to study transcriptional regulators implicated in disease.
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spelling pubmed-105695242023-10-13 Neurodevelopmental deficits and cell-type-specific transcriptomic perturbations in a mouse model of HNRNPU haploinsufficiency Dugger, Sarah A. Dhindsa, Ryan S. Sampaio, Gabriela De Almeida Ressler, Andrew K. Rafikian, Elizabeth E. Petri, Sabrina Letts, Verity A. Teoh, JiaJie Ye, Junqiang Colombo, Sophie Peng, Yueqing Yang, Mu Boland, Michael J. Frankel, Wayne N. Goldstein, David B. PLoS Genet Research Article Heterozygous de novo loss-of-function mutations in the gene expression regulator HNRNPU cause an early-onset developmental and epileptic encephalopathy. To gain insight into pathological mechanisms and lay the potential groundwork for developing targeted therapies, we characterized the neurophysiologic and cell-type-specific transcriptomic consequences of a mouse model of HNRNPU haploinsufficiency. Heterozygous mutants demonstrated global developmental delay, impaired ultrasonic vocalizations, cognitive dysfunction and increased seizure susceptibility, thus modeling aspects of the human disease. Single-cell RNA-sequencing of hippocampal and neocortical cells revealed widespread, yet modest, dysregulation of gene expression across mutant neuronal subtypes. We observed an increased burden of differentially-expressed genes in mutant excitatory neurons of the subiculum—a region of the hippocampus implicated in temporal lobe epilepsy. Evaluation of transcriptomic signature reversal as a therapeutic strategy highlights the potential importance of generating cell-type-specific signatures. Overall, this work provides insight into HNRNPU-mediated disease mechanisms and provides a framework for using single-cell RNA-sequencing to study transcriptional regulators implicated in disease. Public Library of Science 2023-10-02 /pmc/articles/PMC10569524/ /pubmed/37782669 http://dx.doi.org/10.1371/journal.pgen.1010952 Text en © 2023 Dugger et al 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 use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Dugger, Sarah A.
Dhindsa, Ryan S.
Sampaio, Gabriela De Almeida
Ressler, Andrew K.
Rafikian, Elizabeth E.
Petri, Sabrina
Letts, Verity A.
Teoh, JiaJie
Ye, Junqiang
Colombo, Sophie
Peng, Yueqing
Yang, Mu
Boland, Michael J.
Frankel, Wayne N.
Goldstein, David B.
Neurodevelopmental deficits and cell-type-specific transcriptomic perturbations in a mouse model of HNRNPU haploinsufficiency
title Neurodevelopmental deficits and cell-type-specific transcriptomic perturbations in a mouse model of HNRNPU haploinsufficiency
title_full Neurodevelopmental deficits and cell-type-specific transcriptomic perturbations in a mouse model of HNRNPU haploinsufficiency
title_fullStr Neurodevelopmental deficits and cell-type-specific transcriptomic perturbations in a mouse model of HNRNPU haploinsufficiency
title_full_unstemmed Neurodevelopmental deficits and cell-type-specific transcriptomic perturbations in a mouse model of HNRNPU haploinsufficiency
title_short Neurodevelopmental deficits and cell-type-specific transcriptomic perturbations in a mouse model of HNRNPU haploinsufficiency
title_sort neurodevelopmental deficits and cell-type-specific transcriptomic perturbations in a mouse model of hnrnpu haploinsufficiency
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10569524/
https://www.ncbi.nlm.nih.gov/pubmed/37782669
http://dx.doi.org/10.1371/journal.pgen.1010952
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