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Neuronal non-CG methylation is an essential target for MeCP2 function

DNA methylation is implicated in neuronal biology via the protein MeCP2, the mutation of which causes Rett syndrome. MeCP2 recruits the NCOR1/2 co-repressor complexes to methylated cytosine in the CG dinucleotide, but also to sites of non-CG methylation, which are abundant in neurons. To test the bi...

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Autores principales: Tillotson, Rebekah, Cholewa-Waclaw, Justyna, Chhatbar, Kashyap, Connelly, John C., Kirschner, Sophie A., Webb, Shaun, Koerner, Martha V., Selfridge, Jim, Kelly, David A., De Sousa, Dina, Brown, Kyla, Lyst, Matthew J., Kriaucionis, Skirmantas, Bird, Adrian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7980222/
https://www.ncbi.nlm.nih.gov/pubmed/33561390
http://dx.doi.org/10.1016/j.molcel.2021.01.011
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author Tillotson, Rebekah
Cholewa-Waclaw, Justyna
Chhatbar, Kashyap
Connelly, John C.
Kirschner, Sophie A.
Webb, Shaun
Koerner, Martha V.
Selfridge, Jim
Kelly, David A.
De Sousa, Dina
Brown, Kyla
Lyst, Matthew J.
Kriaucionis, Skirmantas
Bird, Adrian
author_facet Tillotson, Rebekah
Cholewa-Waclaw, Justyna
Chhatbar, Kashyap
Connelly, John C.
Kirschner, Sophie A.
Webb, Shaun
Koerner, Martha V.
Selfridge, Jim
Kelly, David A.
De Sousa, Dina
Brown, Kyla
Lyst, Matthew J.
Kriaucionis, Skirmantas
Bird, Adrian
author_sort Tillotson, Rebekah
collection PubMed
description DNA methylation is implicated in neuronal biology via the protein MeCP2, the mutation of which causes Rett syndrome. MeCP2 recruits the NCOR1/2 co-repressor complexes to methylated cytosine in the CG dinucleotide, but also to sites of non-CG methylation, which are abundant in neurons. To test the biological significance of the dual-binding specificity of MeCP2, we replaced its DNA binding domain with an orthologous domain from MBD2, which can only bind mCG motifs. Knockin mice expressing the domain-swap protein displayed severe Rett-syndrome-like phenotypes, indicating that normal brain function requires the interaction of MeCP2 with sites of non-CG methylation, specifically mCAC. The results support the notion that the delayed onset of Rett syndrome is due to the simultaneous post-natal accumulation of mCAC and its reader MeCP2. Intriguingly, genes dysregulated in both Mecp2 null and domain-swap mice are implicated in other neurological disorders, potentially highlighting targets of relevance to the Rett syndrome phenotype.
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spelling pubmed-79802222021-03-24 Neuronal non-CG methylation is an essential target for MeCP2 function Tillotson, Rebekah Cholewa-Waclaw, Justyna Chhatbar, Kashyap Connelly, John C. Kirschner, Sophie A. Webb, Shaun Koerner, Martha V. Selfridge, Jim Kelly, David A. De Sousa, Dina Brown, Kyla Lyst, Matthew J. Kriaucionis, Skirmantas Bird, Adrian Mol Cell Article DNA methylation is implicated in neuronal biology via the protein MeCP2, the mutation of which causes Rett syndrome. MeCP2 recruits the NCOR1/2 co-repressor complexes to methylated cytosine in the CG dinucleotide, but also to sites of non-CG methylation, which are abundant in neurons. To test the biological significance of the dual-binding specificity of MeCP2, we replaced its DNA binding domain with an orthologous domain from MBD2, which can only bind mCG motifs. Knockin mice expressing the domain-swap protein displayed severe Rett-syndrome-like phenotypes, indicating that normal brain function requires the interaction of MeCP2 with sites of non-CG methylation, specifically mCAC. The results support the notion that the delayed onset of Rett syndrome is due to the simultaneous post-natal accumulation of mCAC and its reader MeCP2. Intriguingly, genes dysregulated in both Mecp2 null and domain-swap mice are implicated in other neurological disorders, potentially highlighting targets of relevance to the Rett syndrome phenotype. Cell Press 2021-03-18 /pmc/articles/PMC7980222/ /pubmed/33561390 http://dx.doi.org/10.1016/j.molcel.2021.01.011 Text en © 2021 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tillotson, Rebekah
Cholewa-Waclaw, Justyna
Chhatbar, Kashyap
Connelly, John C.
Kirschner, Sophie A.
Webb, Shaun
Koerner, Martha V.
Selfridge, Jim
Kelly, David A.
De Sousa, Dina
Brown, Kyla
Lyst, Matthew J.
Kriaucionis, Skirmantas
Bird, Adrian
Neuronal non-CG methylation is an essential target for MeCP2 function
title Neuronal non-CG methylation is an essential target for MeCP2 function
title_full Neuronal non-CG methylation is an essential target for MeCP2 function
title_fullStr Neuronal non-CG methylation is an essential target for MeCP2 function
title_full_unstemmed Neuronal non-CG methylation is an essential target for MeCP2 function
title_short Neuronal non-CG methylation is an essential target for MeCP2 function
title_sort neuronal non-cg methylation is an essential target for mecp2 function
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7980222/
https://www.ncbi.nlm.nih.gov/pubmed/33561390
http://dx.doi.org/10.1016/j.molcel.2021.01.011
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