Genome-wide screening and functional validation of methylation barriers near promoters

Author:

Shu Jingmin12,Jelinek Jaroslav345,Chen Hai12,Zhang Yan3,Qin Taichun3,Li Ming67,Liu Li12ORCID,Issa Jean-Pierre J345ORCID

Affiliation:

1. College of Health Solutions, Arizona State University , Phoenix , AZ , USA

2. Center for Personalized Diagnostics, Biodesign Institute, Arizona State University , Tempe , AZ , USA

3. Fels Institute for Cancer Research, Lewis Katz School of Medicine at Temple University , Philadelphia , PA 19140 , USA

4. Cooper Medical School at Rowan University , Camden , NJ 08103 , USA

5. Coriell Institute for Medical Research , Camden , NJ 08103 , USA

6. Phoenix VA Health Care System , Phoenix , AZ 85012 , USA

7. University of Arizona College of Medicine , Phoenix , AZ 85004 , USA

Abstract

Abstract CpG islands near promoters are normally unmethylated despite being surrounded by densely methylated regions. Aberrant hypermethylation of these CpG islands has been associated with the development of various human diseases. Although local genetic elements have been speculated to play a role in protecting promoters from methylation, only a limited number of methylation barriers have been identified. In this study, we conducted an integrated computational and experimental investigation of colorectal cancer methylomes. Our study revealed 610 genes with disrupted methylation barriers. Genomic sequences of these barriers shared a common 41-bp sequence motif (MB-41) that displayed homology to the chicken HS4 methylation barrier. Using the CDKN2A (P16) tumor suppressor gene promoter, we validated the protective function of MB-41 and showed that loss of such protection led to aberrant hypermethylation. Our findings highlight a novel sequence signature of cis-acting methylation barriers in the human genome that safeguard promoters from silencing.

Funder

NIH

Publisher

Oxford University Press (OUP)

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