Engineering Epigenetic Regulation Using Synthetic Read-Write Modules

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Chemical modifications to DNA and histone proteins are involved in epigenetic programs underlying cellular differentiation and development. Regulatory networks involving molecular writers and readers of chromatin marks are thought to control these programs. Guided by this common principle, we established an orthogonal epigenetic regulatory system in mammalian cells using N6-methyladenine (m6A), a DNA modification not commonly found in metazoan epigenomes. Our system utilizes synthetic factors that write and read m6A and consequently recruit transcriptional regulators to control reporter loci. Inspired by models of chromatin spreading and epigenetic inheritance, we used our system and mathematical models to construct regulatory circuits that induce m6A-dependent transcriptional states, promote their spatial propagation, and maintain epigenetic memory of the states. These minimal circuits were able to program epigenetic functions de novo, conceptually validating "read-write" architectures. This work provides a toolkit for investigating models of epigenetic regulation and encoding additional layers of epigenetic information in cells.
Publisher
CELL PRESS
Issue Date
2019-01
Language
English
Article Type
Article
Citation

CELL, v.176, no.1-2, pp.227 - +

ISSN
0092-8674
DOI
10.1016/j.cell.2018.11.002
URI
http://hdl.handle.net/10203/289161
Appears in Collection
BS-Journal Papers(저널논문)
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