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首页> 外文期刊>The Journal of biological chemistry >CCAAT/Enhancer-binding Protein β DNA Binding Is Auto-inhibited by Multiple Elements That Also Mediate Association with p300/CREB-binding Protein (CBP)
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CCAAT/Enhancer-binding Protein β DNA Binding Is Auto-inhibited by Multiple Elements That Also Mediate Association with p300/CREB-binding Protein (CBP)

机译:CCAAT /增强剂结合蛋白βDNA结合由多个元素自动抑制,该元素也与P300 / CREB结合蛋白(CBP)介导联合

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摘要

Signaling through Ras GTPases controls the activity of many transcription factors including CCAAT/enhancer-binding protein (C/EBPβ), which regulates oncogenic H-RasV12-induced senescence and growth arrest. Here we report that C/EBPβ (LAP) DNA binding is inhibited by N-terminal sequences and derepressed by oncogenic Ras signaling. Sequence and mutational analyses showed that auto-repression involves two LXXLF (ΦXXΦΦ)-like motifs (LX1 and LX2) and a third element, auto-inhibitory domain (AID), located within conserved region CR5. LX1 is a critical component of the transactivation domain and has been shown to mediate C/EBPβ binding to the TAZ2 region of p300/CREB-binding protein coactivators. C/EBPβ auto-repression also involves a C-terminal regulatory domain (CRD) adjacent to the leucine zipper. CRD contains a third ΦXXΦΦ motif (LX3) and a short sequence, KQL, which has similarity to a region in the protein-binding site of TAZ2. The C/EBPβ N- and C-terminal domains physically associate in a manner that requires the basic region and CRD. We propose a model in which the regulatory sequences form a hydrophobic core that reciprocally inhibits DNA binding and transactivation. We also suggest a mechanism for C/EBPβ derepression involving several recently identified modifications within AID and CRD. Finally, we show that association of activated C/EBPβ with p300/CREB-binding protein requires the LX2 and AID auto-inhibitory elements. Thus, the N-terminal regulatory elements have dual roles in auto-inhibition and coactivator binding.
机译:通过RAS GTP酶的信号传导控制许多转录因子的活动,包括CCAAT /增强剂结合蛋白(C /EBPβ),其调节癌症H-RASV12诱导的衰老和生长骤停。在这里,我们报告说,通过N-末端序列抑制C /EBPβ(LAP)DNA结合,并通过致癌RAS信号传导。序列和突变分析表明,自动抑制涉及位于保守区域CR5内的两个LXXLF(φXXφφ) - 尺寸的基序(LX1和LX2)和第三元件,自动抑制域(AID)。 LX1是反膜激活结构域的关键组分,已被证明介导与P300 / CREB结合蛋白共膜剂的TAZ2区域的C /EBPβ结合。 C /EBPβ自动抑制还涉及与亮氨酸拉链相邻的C末端调节域(CRD)。 CRD含有第三φXxφφCOLIF(LX3)和短序列KQL,其与TAZ2的蛋白质结合位点中的区域具有相似性。 C /EBPβN-和C末端域以需要基本区域和CRD的方式物理地联动。我们提出了一种模型,其中调节序列形成疏水核心,其往复抑制DNA结合和转移剂。我们还提出了一种C /EBPβDEREMENTION的机制,涉及援助和CRD内最近确定的修改。最后,我们表明,具有P300 / CREB结合蛋白的活化C /EBPβ的关联需要LX2和辅助自动抑制因子。因此,N-末端调节元件在自动抑制和共粘膜结合中具有双重作用。

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