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Postnatal Conditional Deletion of Bcl11b in Striatal Projection Neurons Mimics the Transcriptional Signature of Huntington’s Disease

The dysregulation of striatal gene expression and function is linked to multiple diseases, including Huntington’s disease (HD), Parkinson’s disease, X-linked dystonia-parkinsonism (XDP), addiction, autism, and schizophrenia. Striatal medium spiny neurons (MSNs) make up 90% of the neurons in the stri...

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Autores principales: Song, Sicheng, Creus Muncunill, Jordi, Galicia Aguirre, Carlos, Tshilenge, Kizito-Tshitoko, Hamilton, B. Wade, Gerencser, Akos A., Benlhabib, Houda, Cirnaru, Maria-Daniela, Leid, Mark, Mooney, Sean D., Ellerby, Lisa M., Ehrlich, Michelle E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9598565/
https://www.ncbi.nlm.nih.gov/pubmed/36289639
http://dx.doi.org/10.3390/biomedicines10102377
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author Song, Sicheng
Creus Muncunill, Jordi
Galicia Aguirre, Carlos
Tshilenge, Kizito-Tshitoko
Hamilton, B. Wade
Gerencser, Akos A.
Benlhabib, Houda
Cirnaru, Maria-Daniela
Leid, Mark
Mooney, Sean D.
Ellerby, Lisa M.
Ehrlich, Michelle E.
author_facet Song, Sicheng
Creus Muncunill, Jordi
Galicia Aguirre, Carlos
Tshilenge, Kizito-Tshitoko
Hamilton, B. Wade
Gerencser, Akos A.
Benlhabib, Houda
Cirnaru, Maria-Daniela
Leid, Mark
Mooney, Sean D.
Ellerby, Lisa M.
Ehrlich, Michelle E.
author_sort Song, Sicheng
collection PubMed
description The dysregulation of striatal gene expression and function is linked to multiple diseases, including Huntington’s disease (HD), Parkinson’s disease, X-linked dystonia-parkinsonism (XDP), addiction, autism, and schizophrenia. Striatal medium spiny neurons (MSNs) make up 90% of the neurons in the striatum and are critical to motor control. The transcription factor, Bcl11b (also known as Ctip2), is required for striatal development, but the function of Bcl11b in adult MSNs in vivo has not been investigated. We conditionally deleted Bcl11b specifically in postnatal MSNs and performed a transcriptomic and behavioral analysis on these mice. Multiple enrichment analyses showed that the D9-Cre-Bcl11b(tm1.1Leid) transcriptional profile was similar to the HD gene expression in mouse and human data sets. A Gene Ontology enrichment analysis linked D9-Cre-Bcl11b(tm1.1Leid) to calcium, synapse organization, specifically including the dopaminergic synapse, protein dephosphorylation, and HDAC-signaling, commonly dysregulated pathways in HD. D9-Cre-Bcl11b(tm1.1Leid) mice had decreased DARPP-32/Ppp1r1b in MSNs and behavioral deficits, demonstrating the dysregulation of a subtype of the dopamine D2 receptor expressing MSNs. Finally, in human HD isogenic MSNs, the mislocalization of BCL11B into nuclear aggregates points to a mechanism for BCL11B loss of function in HD. Our results suggest that BCL11B is important for the function and maintenance of mature MSNs and Bcl11b loss of function drives, in part, the transcriptomic and functional changes in HD.
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spelling pubmed-95985652022-10-27 Postnatal Conditional Deletion of Bcl11b in Striatal Projection Neurons Mimics the Transcriptional Signature of Huntington’s Disease Song, Sicheng Creus Muncunill, Jordi Galicia Aguirre, Carlos Tshilenge, Kizito-Tshitoko Hamilton, B. Wade Gerencser, Akos A. Benlhabib, Houda Cirnaru, Maria-Daniela Leid, Mark Mooney, Sean D. Ellerby, Lisa M. Ehrlich, Michelle E. Biomedicines Article The dysregulation of striatal gene expression and function is linked to multiple diseases, including Huntington’s disease (HD), Parkinson’s disease, X-linked dystonia-parkinsonism (XDP), addiction, autism, and schizophrenia. Striatal medium spiny neurons (MSNs) make up 90% of the neurons in the striatum and are critical to motor control. The transcription factor, Bcl11b (also known as Ctip2), is required for striatal development, but the function of Bcl11b in adult MSNs in vivo has not been investigated. We conditionally deleted Bcl11b specifically in postnatal MSNs and performed a transcriptomic and behavioral analysis on these mice. Multiple enrichment analyses showed that the D9-Cre-Bcl11b(tm1.1Leid) transcriptional profile was similar to the HD gene expression in mouse and human data sets. A Gene Ontology enrichment analysis linked D9-Cre-Bcl11b(tm1.1Leid) to calcium, synapse organization, specifically including the dopaminergic synapse, protein dephosphorylation, and HDAC-signaling, commonly dysregulated pathways in HD. D9-Cre-Bcl11b(tm1.1Leid) mice had decreased DARPP-32/Ppp1r1b in MSNs and behavioral deficits, demonstrating the dysregulation of a subtype of the dopamine D2 receptor expressing MSNs. Finally, in human HD isogenic MSNs, the mislocalization of BCL11B into nuclear aggregates points to a mechanism for BCL11B loss of function in HD. Our results suggest that BCL11B is important for the function and maintenance of mature MSNs and Bcl11b loss of function drives, in part, the transcriptomic and functional changes in HD. MDPI 2022-09-23 /pmc/articles/PMC9598565/ /pubmed/36289639 http://dx.doi.org/10.3390/biomedicines10102377 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Song, Sicheng
Creus Muncunill, Jordi
Galicia Aguirre, Carlos
Tshilenge, Kizito-Tshitoko
Hamilton, B. Wade
Gerencser, Akos A.
Benlhabib, Houda
Cirnaru, Maria-Daniela
Leid, Mark
Mooney, Sean D.
Ellerby, Lisa M.
Ehrlich, Michelle E.
Postnatal Conditional Deletion of Bcl11b in Striatal Projection Neurons Mimics the Transcriptional Signature of Huntington’s Disease
title Postnatal Conditional Deletion of Bcl11b in Striatal Projection Neurons Mimics the Transcriptional Signature of Huntington’s Disease
title_full Postnatal Conditional Deletion of Bcl11b in Striatal Projection Neurons Mimics the Transcriptional Signature of Huntington’s Disease
title_fullStr Postnatal Conditional Deletion of Bcl11b in Striatal Projection Neurons Mimics the Transcriptional Signature of Huntington’s Disease
title_full_unstemmed Postnatal Conditional Deletion of Bcl11b in Striatal Projection Neurons Mimics the Transcriptional Signature of Huntington’s Disease
title_short Postnatal Conditional Deletion of Bcl11b in Striatal Projection Neurons Mimics the Transcriptional Signature of Huntington’s Disease
title_sort postnatal conditional deletion of bcl11b in striatal projection neurons mimics the transcriptional signature of huntington’s disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9598565/
https://www.ncbi.nlm.nih.gov/pubmed/36289639
http://dx.doi.org/10.3390/biomedicines10102377
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