Direct neuronal reprogramming of mouse astrocytes is associated with multiscale epigenome remodeling and requires Yy1

Abstract:

AbstractDirect neuronal reprogramming is a promising approach to regenerate neurons from local glial cells. However, mechanisms of epigenome remodeling and co-factors facilitating this process are unclear. In this study, we combined single-cell multiomics with genome-wide profiling of three-dimensional nuclear architecture and DNA methylation in mouse astrocyte-to-neuron reprogramming mediated by Neurogenin2 (Ngn2) and its phosphorylation-resistant form (PmutNgn2), respectively. We show that Ngn2 drives multilayered chromatin remodeling at dynamic enhancer–gene interaction sites. PmutNgn2 leads to higher reprogramming efficiency and enhances epigenetic remodeling associated with neuronal maturation. However, the differences in binding sites or downstream gene activation cannot fully explain this effect. Instead, we identified Yy1, a transcriptional co-factor recruited by direct interaction with Ngn2 to its target sites. Upon deletion of Yy1, activation of neuronal enhancers, genes and ultimately reprogramming are impaired without affecting Ngn2 binding. Thus, our work highlights the key role of interactors of proneural factors in direct neuronal reprogramming.

SEEK ID: https://goeseek.gwdguser.de/publications/16

DOI: 10.1038/s41593-024-01677-5

Projects: TRR 274: Checkpoints of Central Nervous System Recovery

Publication type: Journal Article

Journal: Nature Neuroscience

Book Title: Nature Neuroscience

Publisher: Springer Science and Business Media LLC

Citation: Nat Neurosci 27(7):1260-1273.

Date Published: 1st Jul 2024

Registered Mode: by DOI

Authors: Allwyn Pereira, Jeisimhan Diwakar, Giacomo Masserdotti, Sude Beşkardeş, Tatiana Simon, Younju So, Lucía Martín-Loarte, Franziska Bergemann, Lakshmy Vasan, Tamas Schauer, Anna Danese, Riccardo Bocchi, Maria Colomé-Tatché, Carol Schuurmans, Anna Philpott, Tobias Straub, Boyan Bonev, Magdalena Götz

help Submitter
Citation
Pereira, A., Diwakar, J., Masserdotti, G., Beşkardeş, S., Simon, T., So, Y., Martín-Loarte, L., Bergemann, F., Vasan, L., Schauer, T., Danese, A., Bocchi, R., Colomé-Tatché, M., Schuurmans, C., Philpott, A., Straub, T., Bonev, B., & Götz, M. (2024). Direct neuronal reprogramming of mouse astrocytes is associated with multiscale epigenome remodeling and requires Yy1. In Nature Neuroscience (Vol. 27, Issue 7, pp. 1260–1273). Springer Science and Business Media LLC. https://doi.org/10.1038/s41593-024-01677-5
Activity

Views: 63

Created: 4th Aug 2026 at 08:17

help Tags

This item has not yet been tagged.

help Attributions

None

Powered by
(v.1.17.4)
Copyright © 2008 - 2026 The University of Manchester and HITS gGmbH