Title of article :
30 nm Chromatin Fibre Decompaction Requires both H4-K16 Acetylation and Linker Histone Eviction
Author/Authors :
Philip J.J. Robinson، نويسنده , , Woojin An، نويسنده , , Andrew Routh، نويسنده , , Fabrizio Martino، نويسنده , , Lynda Chapman، نويسنده , , Robert G. Roeder، نويسنده , , Daniela Rhodes، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
10
From page :
816
To page :
825
Abstract :
The mechanism by which chromatin is decondensed to permit access to DNA is largely unknown. Here, using a model nucleosome array reconstituted from recombinant histone octamers, we have defined the relative contribution of the individual histone octamer N-terminal tails as well as the effect of a targeted histone tail acetylation on the compaction state of the 30 nm chromatin fiber. This study goes beyond previous studies as it is based on a nucleosome array that is very long (61 nucleosomes) and contains a stoichiometric concentration of bound linker histone, which is essential for the formation of the 30 nm chromatin fiber. We find that compaction is regulated in two steps: Introduction of H4 acetylated to 30% on K16 inhibits compaction to a greater degree than deletion of the H4 N-terminal tail. Further decompaction is achieved by removal of the linker histone.
Keywords :
linker histone , Chromatin , 30 nm fibre , Histone acetylation , MOF
Journal title :
Journal of Molecular Biology
Serial Year :
2008
Journal title :
Journal of Molecular Biology
Record number :
1257267
Link To Document :
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