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Neuron-specific chromosomal megadomain organization is adaptive to recent retrotransposon expansions

Regulatory mechanisms associated with repeat-rich sequences and chromosomal conformations in mature neurons remain unexplored. Here, we map cell-type specific chromatin domain organization in adult mouse cerebral cortex and report strong enrichment of Endogenous Retrovirus 2 (ERV2) repeat sequences...

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Detalles Bibliográficos
Autores principales: Chandrasekaran, Sandhya, Espeso-Gil, Sergio, Loh, Yong-Hwee Eddie, Javidfar, Behnam, Kassim, Bibi, Zhu, Yueyan, Zhang, Yuan, Dong, Yuhao, Bicks, Lucy K., Li, Haixin, Rajarajan, Prashanth, Peter, Cyril J., Sun, Daijing, Agullo-Pascual, Esperanza, Iskhakova, Marina, Estill, Molly, Lesch, Bluma J., Shen, Li, Jiang, Yan, Akbarian, Schahram
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8669064/
https://www.ncbi.nlm.nih.gov/pubmed/34903713
http://dx.doi.org/10.1038/s41467-021-26862-z
Descripción
Sumario:Regulatory mechanisms associated with repeat-rich sequences and chromosomal conformations in mature neurons remain unexplored. Here, we map cell-type specific chromatin domain organization in adult mouse cerebral cortex and report strong enrichment of Endogenous Retrovirus 2 (ERV2) repeat sequences in the neuron-specific heterochromatic B(2)(NeuN+) megabase-scaling subcompartment. Single molecule long-read sequencing and comparative Hi-C chromosomal contact mapping in wild-derived SPRET/EiJ (Mus spretus) and laboratory inbred C57BL/6J (Mus musculus) reveal neuronal reconfigurations tracking recent ERV2 expansions in the murine germline, with significantly higher B(2)(NeuN+) contact frequencies at sites with ongoing insertions in Mus musculus. Neuronal ablation of the retrotransposon silencer Kmt1e/Setdb1 triggers B(2)(NeuN+) disintegration and rewiring with open chromatin domains enriched for cellular stress response genes, along with severe neuroinflammation and proviral assembly with infiltration of dendrites . We conclude that neuronal megabase-scale chromosomal architectures include an evolutionarily adaptive heterochromatic organization which, upon perturbation, results in transcriptional dysregulation and unleashes ERV2 proviruses with strong neuronal tropism.