Deciphering the genetic code of DNA methylation

Author:

Wang Mengchi1,Ngo Vu1,Wang Wei2

Affiliation:

1. Bioinformatics and Systems Biology at University of California, USA

2. Bioinformatics and Systems Biology, Department of Chemistry and Biochemistry, and Department of Cellular and Molecular Medicine at University of California, USA

Abstract

Abstract DNA methylation plays crucial roles in many biological processes and abnormal DNA methylation patterns are often observed in diseases. Recent studies have shed light on cis-acting DNA elements that regulate locus-specific DNA methylation, which involves transcription factors, histone modification and DNA secondary structures. In addition, several recent studies have surveyed DNA motifs that regulate DNA methylation and suggest potential applications in diagnosis and prognosis. Here, we discuss the current biological foundation for the cis-acting genetic code that regulates DNA methylation. We review the computational models that predict DNA methylation with genetic features and discuss the biological insights revealed from these models. We also provide an in-depth discussion on how to leverage such knowledge in clinical applications, particularly in the context of liquid biopsy for early cancer diagnosis and treatment.

Funder

National Institutes of Health

California Institute for Regenerative Medicine

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Information Systems

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