Binding of histone H1e-c variants to CpG-rich DNA correlates with the inhibitory effect on enzymic DNA methylation

Author:

Santoro R1,D'Erme M1,Mastrantonio S2,Reale A2,Marenzi S1,Saluz H P3,Strom R24,Caiafa P14

Affiliation:

1. Departments of Biochemical Sciences ‘A. Rossi Fanelli’, Rome, Italy

2. Departments of Human Biopathology, University of Rome ‘La Sapienza’, Rome, Italy

3. Departments of Hans Knöll Institut für Naturstoff-Forschung, Jena, Germany

4. Departments of C.N.R. Centre for Molecular Biology, Rome, Italy

Abstract

Within the H1 histone family, only some fractions enriched in the H1e-c variants are effective in causing a marked inhibition, in vitro, of enzymic DNA methylation and, in gel retardation and Southwestern blot experiments, in binding double-stranded (ds) CpG-rich oligonucleotides. Both the 6-CpG ds-oligonucleotide and the DNA purified from chromatin fractions enriched in ‘CpG islands’ are good competitors for the binding of H1e-c to 6-meCpG ds-oligonucleotide. Because of their ability to bind any DNA sequence and to suppress the enzymic methylation in any sequence containing CpG dinucleotides, these particular H1 variants could play some role in maintaining linker DNA at low methylation levels and even in preserving the unmethylated state of the CpG-rich islands which characterize the promoter regions of housekeeping genes.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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