Article
High levels of m6A methylation and histone acetylation modification patterns contribute to the survival of LUAD patients
2022-10-28
Abstract excerpt
<h4>Background: </h4> The m6A methylation-regulated histone acetylation modification affects the proliferation and differentiation of mouse embryonic neural stem cells, and recent studies have shown that the deacetylase SIRT1 regulates RNA m6A methylation to promote hepatocellular carcinogenesis. However, the interrelationship between the m6A methylation and histone acetylation, and the potential roles as well as...
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Identifiers and source
- Literature Corpus work
- 2e76c64a-d0b7-59bf-8e84-f4cc59b1b0f0
- DOI
- 10.21203/rs.3.rs-2199422/v1
