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Multivalent Binding of the ETO Corepressor to E Proteins Facilitates Dual Repression Controls Targeting Chromatin and the Basal Transcription Machinery

机译:ETO Corepressor与E蛋白的多价结合有助于靶向于染色质和基础转录机制的双重抑制控制。

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摘要

E proteins are a family of helix-loop-helix transcription factors that play important roles in cell differentiation and homeostasis. They contain at least two activation domains, AD1 and AD2. ETO family proteins and the leukemogenic AML1-ETO fusion protein are corepressors of E proteins. It is thought that ETO represses E-protein activity by interacting with AD1, which competes away p300/CBP histone acetyltransferases. Here we report that E proteins contain another conserved ETO-interacting region, termed DES, and that differential associations with AD1 and DES allow ETO to repress transcription through both chromatin-dependent and chromatin-independent mechanisms. At the chromatin level, AD1 and AD2 cooperatively recruit p300. ETO interacts with AD1 to abolish p300 recruitment and to allow HDAC-dependent silencing. At the post-chromatin-remodeling level, binding to DES enables ETO to directly inhibit activation of the basal transcription machinery. This novel repression mechanism is conserved in ETO family proteins and in the AML1-ETO fusion protein. In addition, the repression capacity exerted by each mechanism is differentially modulated by cross talk among various ETO domains and the AML1 domain of AML1-ETO. In particular, the oligomerization domain of ETO plays a major role in targeting ETO to the DES region and independently potentiates the TAFH domain-mediated AD1 interaction. The ability to exert repression at different levels not only may allow these corepressors to impose robust inhibition of signal-independent transcription but may also allow a rapid response to signals. In addition, our newly defined domain interactions and their interplays have important implications in effectively targeting both E-protein fusion proteins and AML1-ETO found in cancers.
机译:E蛋白是螺旋-环-螺旋转录因子家族,在细胞分化和体内平衡中起重要作用。它们包含至少两个激活域AD1和AD2。 ETO家族蛋白和致白血病的AML1-ETO融合蛋白是E蛋白的核心抑制剂。认为ETO通过与AD1相互作用来抑制E蛋白活性,而AD1与p300 / CBP组蛋白乙酰基转移酶竞争。在这里我们报告E蛋白包含另一个保守的ETO相互作用区域,称为DES,并且与AD1和DES的差异性关联使ETO通过染色质依赖性和染色质非依赖性机制抑制转录。在染色质水平,AD1和AD2协同募集p300。 ETO与AD1交互以废除p300募集并允许HDAC依赖性沉默。在染色质重塑后,与DES的结合使ETO可以直接抑制基础转录机制的激活。在ETO家族蛋白和AML1-ETO融合蛋白中,这种新型的抑制机制是保守的。此外,通过各种ETO域和AML1-ETO的AML1域之间的串扰,对每种机制施加的抑制能力进行了差异调节。特别是,ETO的低聚结构域在将ETO靶向DES区中起主要作用,并独立增强了TAFH域介导的AD1相互作用。在不同水平上施加抑制的能力不仅可以使这些corepressors强加抑制信号独立转录,而且还可以允许对信号的快速响应。此外,我们新定义的域相互作用及其相互作用对有效靶向癌症中发现的E蛋白融合蛋白和AML1-ETO具有重要意义。

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