Gocke Christian B, Yu Hongtao
Howard Hughes Medical Institute, Department of Pharmacology, The University of Texas Southwestern Medical Center, Dallas, Texas, USA.
PLoS One. 2008 Sep 22;3(9):e3255. doi: 10.1371/journal.pone.0003255.
Histone modifications in chromatin regulate gene expression. A transcriptional co-repressor complex containing LSD1-CoREST-HDAC1 (termed LCH hereafter for simplicity) represses transcription by coordinately removing histone modifications associated with transcriptional activation. RE1-silencing transcription factor (REST) recruits LCH to the promoters of neuron-specific genes, thereby silencing their transcription in non-neuronal tissues. ZNF198 is a member of a family of MYM-type zinc finger proteins that associate with LCH. Here, we show that ZNF198-like proteins are required for the repression of E-cadherin (a gene known to be repressed by LSD1), but not REST-responsive genes. ZNF198 binds preferentially to the intact LCH ternary complex, but not its individual subunits. ZNF198- and REST-binding to the LCH complex are mutually exclusive. ZNF198 associates with chromatin independently of LCH. Furthermore, modification of HDAC1 by small ubiquitin-like modifier (SUMO) in vitro weakens its interaction with CoREST whereas sumoylation of HDAC1 stimulates its binding to ZNF198. Finally, we mapped the LCH- and HDAC1-SUMO-binding domains of ZNF198 to tandem repeats of MYM-type zinc fingers. Therefore, our results suggest that ZNF198, through its multiple protein-protein interaction interfaces, helps to maintain the intact LCH complex on specific, non-REST-responsive promoters and may also prevent SUMO-dependent dissociation of HDAC1.
染色质中的组蛋白修饰调控基因表达。一种包含LSD1-CoREST-HDAC1的转录共抑制复合物(以下简称为LCH)通过协同去除与转录激活相关的组蛋白修饰来抑制转录。RE1沉默转录因子(REST)将LCH招募至神经元特异性基因的启动子,从而在非神经组织中使这些基因的转录沉默。ZNF198是与LCH相关的MYM型锌指蛋白家族的成员。在此,我们表明ZNF198样蛋白是抑制E-钙黏蛋白(一个已知被LSD1抑制的基因)所必需的,但对于REST反应性基因则不是必需的。ZNF198优先结合完整的LCH三元复合物,而不是其单个亚基。ZNF198和REST与LCH复合物的结合是相互排斥的。ZNF198独立于LCH与染色质结合。此外,体外小泛素样修饰物(SUMO)对HDAC1的修饰会减弱其与CoREST的相互作用,而HDAC1的SUMO化会刺激其与ZNF198的结合。最后,我们将ZNF198的LCH和HDAC1-SUMO结合域定位到MYM型锌指的串联重复序列。因此,我们的结果表明,ZNF198通过其多个蛋白质-蛋白质相互作用界面,有助于在特定的、非REST反应性启动子上维持完整的LCH复合物,并且还可能防止HDAC1的SUMO依赖性解离。