The multidomain protein Brpf1 binds histones and is required for Hox gene expression and segmental identity

被引:96
作者
Laue, Kathrin [2 ]
Daujat, Sylvain [1 ]
Crump, Justin Gage [3 ]
Plaster, Nikki [2 ]
Roehl, Henry H. [4 ]
Kimmel, Charles B. [5 ]
Schneider, Robert [1 ]
Hammerschmidt, Matthias [2 ,6 ]
机构
[1] Max Planck Inst Immunol, Hans Spemann Lab, D-79108 Freiburg, Germany
[2] Max Planck Inst Immunol, Georges Koehler Lab, D-79108 Freiburg, Germany
[3] Univ So Calif, Keck Sch Med, Ctr Stem Cell & Regenerat Med, Los Angeles, CA 90033 USA
[4] Univ Sheffield, Ctr Dev & Biomed Genet, Sheffield S10 2TN, S Yorkshire, England
[5] 1254 Univ Oregon, Inst Neurosci, Eugene, OR USA
[6] Univ Cologne, Inst Dev Biol, D-50923 Cologne, Germany
来源
DEVELOPMENT | 2008年 / 135卷 / 11期
关键词
Brpf1; bromodomain; PWWP domain; Moz; Hox gene expression; craniofacial development; cranial neural crest; pharyngeal arch; anterior-posterior patterning; homeotic transformation; zebrafish;
D O I
10.1242/dev.017160
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The Trithorax group (TrxG) is composed of diverse, evolutionary conserved proteins that form chromatin-associated complexes accounting for epigenetic transcriptional memory. However, the molecular mechanisms by which particular loci are marked for reactivation after mitosis are only partially understood. Here, based on genetic analyses in zebrafish, we identify the multidomain protein Brpf1 as a novel TrxG member with a central role during development. brpf1 mutants display anterior transformations of pharyngeal arches due to progressive loss of anterior Hox gene expression. Brpf1 functions in association with the histone acetyltransferase Moz (Myst3), an interaction mediated by the N-terminal domain of Brpf1, and promotes histone acetylation in vivo. Brpf1 recruits Moz to distinct sites of active chromatin and remains at chromosomes during mitosis, mediated by direct histone binding of its bromodomain, which has a preference for acetylated histones, and its PWWP domain, which binds histones independently of their acetylation status. This is the first demonstration of histone binding for PWWP domains. Mutant analyses further show that the PWWP domain is absolutely essential for Brpf1 function in vivo. We conclude that Brpf1, coordinated by its particular set of domains, acts by multiple mechanisms to mediate Moz-dependent histone acetylation and to mark Hox genes for maintained expression throughout vertebrate development.
引用
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页码:1935 / 1946
页数:12
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