A novel histone deacetylase pathway regulates mitosis by modulating Aurora B kinase activity

被引:143
作者
Li, Yun
Kao, Gary D.
Garcia, Benjamin A.
Shabanowitz, Jeffrey
Hunt, Donald F.
Qin, Jun
Phelan, Caroline
Lazar, Mitchell A. [1 ]
机构
[1] Univ Penn, Sch Med, Div Endocrinol Diabet & Metab, Dept Med,Dept Genet, Philadelphia, PA 19104 USA
[2] Univ Penn, Sch Med, Inst Diabet Obes & Metat, Philadelphia, PA 19104 USA
[3] Univ Penn, Sch Med, Dept Radiat Oncol, Philadelphia, PA 19104 USA
[4] Univ Virginia, Dept Chem, Charlottesville, VA 22904 USA
[5] Univ Virginia, Dept Pathol, Charlottesville, VA 22904 USA
[6] Baylor Coll Med, Dept Mol & Cellular Biol, Houston, TX 77030 USA
关键词
AKAP; aurora; HDAC; histone code; mitosis;
D O I
10.1101/gad.1455006
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Histone deacetylase (HDAC) inhibitors perturb the cell cycle and have great potential as anti-cancer agents, but their mechanism of action is not well established. HDACs classically function as repressors of gene expression, tethered to sequence-specific transcription factors. Here we report that HDAC3 is a critical, transcription-independent regulator of mitosis. HDAC3 forms a complex with A-Kinase-Anchoring Proteins AKAP95 and HA95, which are targeted to mitotic chromosomes. Deacetylation of H3 in mitosis requires AKAP95/HA95 and HDAC3 and provides a hypoacetylated H3 tail that is the preferred substrate for Aurora B kinase. Phosphorylation of H3S10 by Aurora B leads to dissociation of HP1 proteins from methylated H3K9 residues on mitotic heterochromatin. This transcription-independent pathway, involving interdependent changes in histone modification and protein association, is required for normal progression through mitosis and is an unexpected target of HDAC inhibitors, a class of drugs currently in clinical trials for treating cancer.
引用
收藏
页码:2566 / 2579
页数:14
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