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Determinants of Unique DNA Methylation, Histone Modification, and Nucleosome Occupany at CpG Islands

Authors :
Langerman, Justin Bryon
Smale, Stephen T1
Langerman, Justin Bryon
Langerman, Justin Bryon
Smale, Stephen T1
Langerman, Justin Bryon
Publication Year :
2014

Abstract

In an attempt to understand DNA methylation in various contexts, we have examined chromatin modification at enhancers and CpG islands. At both DNA features, we find the binding of transcription factors is the major determinant of methylation status.At the enhancer for the tissue-specific inflammatory gene Il12b, we attempted to isolate the DNA sequence necessary for the establishment of a low methylation window usually present in most cell types. We cloned Il12b enhancer deletions into a bacterial artificial chromosome that could recapitulate native chromatin when stably transfected into murine ES cells, but were unable to remove the low methylation window without deleting the full enhancer sequence. The Il12b enhancer is uniquely methylated in embryonic stem cells compared to all other cell types; it has higher methylation than usual and responds to certain changes in growth conditions. DNA methylation increases globally during stem cell differentiation, but DNA methylation at the Il12b enhancer remains constant in successfully differentating cells. Finally, we take advantage of variable Il12b enhancer methylation in embryonic stem cells to demonstrate that, following differentiation to a macrophage fate, moderate enhancer methylation does not prevent Il12b expression.To understand what factors influence the well studied low DNA methylation, histone 3 lysine 4 trimethylation (H3K4me3), and low nucleosome occupancy at CpG islands, we cloned CpG rich DNA into bacterial artificial chromosomes which were stably transfected into ES cells. Analysis of the integrated BACs revealed that CpG island features are each controlled through separate mechanisms. We determined several properties of CpG island features based on experimental deletions and fusions of a small CpG island and the 601 positioning sequence. Protection from DNA methylation at CpG islands can occur either by binding of a specific transcription factor, or by a size threshold mechanism in murine ES cells. H3K4

Details

Database :
OAIster
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1367592887
Document Type :
Electronic Resource