Histone methylation mediated by NSD1 is required for the establishment and maintenance of neuronal identities

Summary: Appropriate histone modifications emerge as essential cell fate regulators of neuronal identities across neocortical areas and layers. Here we showed that NSD1, the methyltransferase for di-methylated lysine 36 of histone H3 (H3K36me2), controls both area and layer identities of the neocort...

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Main Authors: Yue Zheng, Chen Zhao, Qiulin Song, Lichao Xu, Bo Zhang, Guangda Hu, Xiangfei Kong, Shaowen Li, Xiang Li, Yin Shen, Lenan Zhuang, Min Wu, Ying Liu, Yan Zhou
Format: Article
Language:English
Published: Elsevier 2023-12-01
Series:Cell Reports
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Online Access:http://www.sciencedirect.com/science/article/pii/S2211124723015085
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Summary:Summary: Appropriate histone modifications emerge as essential cell fate regulators of neuronal identities across neocortical areas and layers. Here we showed that NSD1, the methyltransferase for di-methylated lysine 36 of histone H3 (H3K36me2), controls both area and layer identities of the neocortex. Nsd1-ablated neocortex showed an area shift of all four primary functional regions and aberrant wiring of cortico-thalamic-cortical projections. Nsd1 conditional knockout mice displayed defects in spatial memory, motor learning, and coordination, resembling patients with the Sotos syndrome carrying NSD1 mutations. On Nsd1 loss, superficial-layer pyramidal neurons (PNs) progressively mis-expressed markers for deep-layer PNs, and PNs remained immature both morphologically and electrophysiologically. Loss of Nsd1 in postmitotic PNs causes genome-wide loss of H3K36me2 and re-distribution of DNA methylation, which accounts for diminished expression of neocortical layer specifiers but ectopic expression of non-neural genes. Together, H3K36me2 mediated by NSD1 is required for the establishment and maintenance of region- and layer-specific neocortical identities.
ISSN:2211-1247