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The acetyltransferase HAT1 moderates the NF-kappa B response by regulating the transcription factor PLZF

机译:乙酰转移酶HAT1通过调节转录因子PLZF缓解NF-κB反应

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To date, the activities of protein kinases have formed the core of our understanding of cell signal transduction. Comprehension of the extent of protein acetylation has raised expectations that this alternate post-transcriptional modification will be shown to rival phosphorylation in its importance in mediating cellular responses. However, limited instances have been identified. Here we show that signalling from Toll-like or TNF-alpha receptors triggers the calcium/calmodulin-dependent protein kinase (CaMK2) to activate histone acetyltransferase-1 (HAT1), which then acetylates the transcriptional regulator PLZF. Acetylation of PLZF promotes the assembly of a repressor complex incorporating HDAC3 and the NF-kappa B p50 subunit that limits the NF-kappa B response. Accordingly, diminishing the activity of CaMK2, the expression levels of PLZF or HAT1, or mutating key residues that are covalently modified in PLZF and HAT1, curtails control of the production of inflammatory cytokines. These results identify a central role for acetylation in controlling the inflammatory NF-kappa B transcriptional programme.
机译:迄今为止,蛋白激酶的活性已经形成了我们对细胞信号转导的理解的核心。对蛋白质乙酰化程度的理解提高了人们的期望,即这种替代的转录后修饰在介导细胞反应中的重要性将与磷酸化相抗衡。但是,已经确定了有限的实例。在这里,我们显示了来自Toll样或TNF-α受体的信号触发钙/钙调蛋白依赖性蛋白激酶(CaMK2)激活组蛋白乙酰转移酶-1(HAT1),然后乙酰化转录调节剂PLZF。 PLZF的乙酰化促进了阻遏物复合物的组装,所述阻遏物复合物结合了HDAC3和限制NF-κB反应的NF-κBp50亚基。因此,降低CaMK2的活性,PLZF或HAT1的表达水平或在PLZF和HAT1中共价修饰的突变关键残基,降低了对炎性细胞因子产生的控制。这些结果确定了乙酰化在控制炎症性NF-κB转录程序中的重要作用。

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