Department of Cancer Biology, Vontz Center for Molecular Studies, University of Cincinnati College of Medicine, Cincinnati, OH 45267-0521, USA.
Nucleic Acids Res. 2014 Jan;42(1):137-52. doi: 10.1093/nar/gkt855. Epub 2013 Sep 24.
E2A is a member of the E-protein family of transcription factors. Previous studies have reported context-dependent regulation of E2A-dependent transcription. For example, whereas the E2A portion of the E2A-Pbx1 leukemia fusion protein mediates robust transcriptional activation in t(1;19) acute lymphoblastic leukemia, the transcriptional activity of wild-type E2A is silenced by high levels of corepressors, such as the AML1-ETO fusion protein in t(8;21) acute myeloid leukemia and ETO-2 in hematopoietic cells. Here, we show that, unlike the HEB E-protein, the activation domain 1 (AD1) of E2A has specifically reduced corepressor interaction due to E2A-specific amino acid changes in the p300/CBP and ETO target motif. Replacing E2A-AD1 with HEB-AD1 abolished the ability of E2A-Pbx1 to activate target genes and to induce cell transformation. On the other hand, the weak E2A-AD1-corepressor interaction imposes a critical importance on another ETO-interacting domain, downstream ETO-interacting sequence (DES), for corepressor-mediated repression. Deletion of DES abrogates silencing of E2A activity by AML1-ETO in t(8;21) leukemia cells or by ETO-2 in normal hematopoietic cells. Our results reveal an E2A-specific mechanism important for its context-dependent activation and repression function, and provide the first evidence for the differential involvement of E2A-corepressor interactions in distinct leukemogenic pathways.
E2A 是转录因子 E 蛋白家族的成员。先前的研究报告称,E2A 依赖性转录受到上下文的调节。例如,E2A-Pbx1 白血病融合蛋白的 E2A 部分介导 t(1;19)急性淋巴细胞白血病中强大的转录激活,而野生型 E2A 的转录活性被高水平的核心抑制剂沉默,如 t(8;21)急性髓系白血病中的 AML1-ETO 融合蛋白和造血细胞中的 ETO-2。在这里,我们表明,与 HEB E 蛋白不同,E2A 的激活结构域 1(AD1)由于 E2A 中 p300/CBP 和 ETO 靶基序的特异性氨基酸变化,特异性降低了与核心抑制剂的相互作用。用 HEB-AD1 替换 E2A-AD1 会消除 E2A-Pbx1 激活靶基因和诱导细胞转化的能力。另一方面,较弱的 E2A-AD1-核心抑制剂相互作用对另一个与 ETO 相互作用的结构域,下游 ETO 相互作用序列(DES),对核心抑制剂介导的抑制具有重要意义。DES 的缺失消除了 AML1-ETO 在 t(8;21)白血病细胞或 ETO-2 在正常造血细胞中对 E2A 活性的沉默。我们的结果揭示了 E2A 中一种对其上下文依赖性激活和抑制功能很重要的特异性机制,并为 E2A-核心抑制剂相互作用在不同的白血病发病途径中的差异参与提供了首个证据。