首页> 外文期刊>Nucleic Acids Research >A SUMO-regulated activation function controls synergy of c-Myb through a repressor-activator switch leading to differential p300 recruitment
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A SUMO-regulated activation function controls synergy of c-Myb through a repressor-activator switch leading to differential p300 recruitment

机译:SUMO调节的激活功能通过阻遏物-激活物开关控制c-Myb的协同作用,导致p300募集差异

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摘要

Synergy between transcription factors operating together on complex promoters is a key aspect of gene activation. The ability of specific factors to synergize is restricted by sumoylation (synergy control, SC). Focusing on the haematopoietic transcription factor c-Myb, we found evidence for a strong SC linked to SUMO-conjugation in its negative regulatory domain (NRD), while AMV v-Myb has escaped this control. Mechanistic studies revealed a SUMO-dependent switch in the function of NRD. When NRD is sumoylated, the activity of c-Myb is reduced. When sumoylation is abolished, NRD switches into being activating, providing the factor with a second activation function (AF). Thus, c-Myb harbours two AFs, one that is constitutively active and one in the NRD being SUMO-regulated (SRAF). This double AF augments c-Myb synergy at compound natural promoters. A similar SUMO-dependent switch was observed in the regulatory domains of Sp3 and p53. We show that the change in synergy behaviour correlates with a SUMO-dependent differential recruitment of p300 and a corresponding local change in histone H3 and H4 acetylation. We therefore propose a general model for SUMO-mediated SC, where SUMO controls synergy by determining the number and strength of AFs associated with a promoter leading to differential chromatin signatures.
机译:在复杂启动子上共同起作用的转录因子之间的协同作用是基因激活的关键方面。特定因子协同作用的能力受到磺酰化作用的限制(协同控制,SC)。着眼于造血转录因子c-Myb,我们发现证据表明在其负调控域(NRD)中与SUMO-缀合相关的强SC得以保留,而AMV v-Myb却逃脱了这种控制。机理研究揭示了NRD功能的SUMO依赖性开关。当NRD被磺酰化时,c-Myb的活性降低。废除磺酰化后,NRD切换为激活状态,从而为因子提供第二个激活功能(AF)。因此,c-Myb包含两个AF,一个是组成性活跃的,另一个在NRD中受到SUMO调节(SRAF)。这种双重AF在复合天然启动子处增强了c-Myb的协同作用。在Sp3和p53的调节域中观察到类似的SUMO依赖开关。我们显示,协同行为的变化与p300的SUMO依赖差异募集以及组蛋白H3和H4乙酰化的相应局部变化相关。因此,我们提出了SUMO介导的SC的通用模型,其中SUMO通过确定与导致差异化染色质特征的启动子相关的AF的数量和强度来控制协同作用。

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