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TACC3 mediates the association of MBD2 with htstone acetyltransferases and relieves transcriptional repression of methylated promoters

机译:TACC3介导MBD2与htstone乙酰转移酶的关联,并缓解甲基化启动子的转录抑制

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摘要

We have recently reported that a novel MBD2 interactor (MBD) has the capacity to reactivate transcription from MBD2-repressed methylated promoters even in the absence of demethylation events. Here we show that another unrelated protein, TACC3, displays a similar activity on methylated genes. In addition the data reported here provide possible molecular mechanisms for the observed phenomenon. Immunoprecipitation experiments showed that MBD2/TACC3 form a complex in vivo with the histone acetyltransferase pCAF. MB02 could also associate with HDAC2, a component of MeCPI repression complex. However, we found that the complexes formed by MBD2 with TACC3/pCAF and with HDAC2 were mutually exclusive. Moreover, HAT enzymatic assays demonstrated that HAT activity associates with MBD2 in vivo and that such association significantly increased when TACC3 was over-expressed. Overall our findings suggest that TACC3 can be recruited by MBD2 on methylated promoters and is able to reactivate transcription possiblyby favoring the formation of an HAT-containing MBD2 complex and, thus, switching the repression potential of MBD2 in activation even prior to eventual demethyiation.
机译:我们最近报道,即使没有脱甲基事件,新型MBD2相互作用子(MBD / n)仍具有激活MBD2抑制的甲基化启动子转录的能力。在这里,我们显示了另一个不相关的蛋白质TACC3,对甲基化基因表现出相似的活性。另外,这里报道的数据为观察到的现象提供了可能的分子机制。免疫沉淀实验表明,MBD2 / TACC3与组蛋白乙酰转移酶pCAF在体内形成复合物。 MB02也可以与MeDAC抑制复合体的组件HDAC2关联。但是,我们发现MBD2与TACC3 / pCAF和HDAC2形成的复合物是互斥的。此外,HAT酶法测定表明HAT活性在体内与MBD2相关,并且当TACC3过表达时,这种相关性显着增加。总的来说,我们的发现表明TACC3可以被MBD2在甲基化的启动子上募集,并且可能通过促进含HAT的MBD2复合物的形成而重新激活转录,从而甚至在最终脱甲基之前也可以激活MBD2的抑制潜能。

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