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Reversal of ageing- and injury-induced vision loss by Tet-dependent epigenetic reprogramming

Yuancheng Ryan Lu, Anitha Krishnan, Benedikt Brommer, Xiao Tian, Margarita Meer, Daniel L. Vera, Chen Wang, Qiurui Zeng, Doudou Yu, Michael S. Bonkowski, Jae-Hyun Yang, Emma Hoffmann, Songlin Zhou, Ekaterina Korobkina, Noah Davidsohn

bioRxiv (Cold Spring Harbor Laboratory) · 2019 · ▲ 22 citations

Abstract

Ageing is a degenerative process leading to tissue dysfunction and death. A proposed cause of ageing is the accumulation of epigenetic noise, which disrupts youthful gene expression patterns that are required for cells to function optimally and recover from damage 1–3 . Changes to DNA methylation patterns over time form the basis of an ‘ageing clock’ 4, 5 , but whether old individuals retain information to reset the clock and, if so, whether this would improve tissue function is not known. Of all the tissues in the body, the central nervous system (CNS) is one of the first to lose regenerative capacity 6, 7 . Using the eye as a model tissue, we show that expression of Oct4, Sox2, and Klf4 genes (OSK) in mice resets youthful gene expression patterns and the DNA methylation age of retinal ganglion cells, promotes axon regeneration after optic nerve crush injury, and restores vision in a mouse model of glaucoma and in normal old mice. This process, which we call re co v ery of information v ia e pigenetic r eprogramming or REVIVER, requires the DNA demethylases Tet1 and Tet2, indicating that DNA methylation patterns don’t just indicate age, they participate in ageing. Thus, old tissues retain a faithful record of youthful epigenetic information that can be accessed for functional age reversal.

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Provenance

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OpenAlex
DOI
10.1101/710210
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2026-06-18 MST

Cite this

APA
Lu, Y.R., Krishnan, A., Brommer, B., Tian, X., Meer, M., Vera, D.L., Wang, C., Zeng, Q., Yu, D., Bonkowski, M.S., Yang, J., Hoffmann, E., Zhou, S., Korobkina, E., Davidsohn, N., Schultz, M., Chwalek, K., Rajman, L.A., Church, G.M., &amp; Hochedlinger, K. (2019). Reversal of ageing- and injury-induced vision loss by Tet-dependent epigenetic reprogramming. <em>bioRxiv (Cold Spring Harbor Laboratory)</em>. https://doi.org/10.1101/710210
Vancouver
Lu YR, Krishnan A, Brommer B, Tian X, Meer M, Vera DL, et al. Reversal of ageing- and injury-induced vision loss by Tet-dependent epigenetic reprogramming. bioRxiv (Cold Spring Harbor Laboratory). 2019. doi:10.1101/710210.
BibTeX
@unpublished{yuancheng2019Revers, title = {Reversal of ageing- and injury-induced vision loss by Tet-dependent epigenetic reprogramming}, author = {Yuancheng Ryan Lu and Anitha Krishnan and Benedikt Brommer and Xiao Tian and Margarita Meer and Daniel L. Vera and Chen Wang and Qiurui Zeng and Doudou Yu and Michael S. Bonkowski and Jae-Hyun Yang and Emma Hoffmann and Songlin Zhou and Ekaterina Korobkina and Noah Davidsohn and Michael Schultz and Karolina Chwalek and Luis A. Rajman and George M. Church and Konrad Hochedlinger and Vadim N. Gladyshev and Steve Horvath and Meredith Gregory‐Ksander and Bruce R. Ksander and Zhigang He}, journal = {bioRxiv (Cold Spring Harbor Laboratory)}, year = {2019}, doi = {10.1101/710210}, }

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