Orian Amir, Delrow Jeffrey J, Rosales Nieves Alicia E, Abed Mona, Metzger David, Paroush Ze'ev, Eisenman Robert N, Parkhurst Susan M
Division of Basic Sciences, Genomic Resource, Fred Hutchinson Cancer Research Center, Seattle, WA 98109, USA.
Proc Natl Acad Sci U S A. 2007 Oct 2;104(40):15771-6. doi: 10.1073/pnas.0707418104. Epub 2007 Sep 26.
Integration of patterning cues via transcriptional networks to coordinate gene expression is critical during morphogenesis and misregulated in cancer. Using DNA adenine methyltransferase (Dam)ID chromatin profiling, we identified a protein-protein interaction between the Drosophila Myc oncogene and the Groucho corepressor that regulates a subset of direct dMyc targets. Most of these shared targets affect fate or mitosis particularly during neurogenesis, suggesting the dMyc-Groucho complex may coordinate fate acquisition with mitotic capacity during development. We find an antagonistic relationship between dMyc and Groucho that mimics the antagonistic interactions found for EGF and Notch signaling: dMyc is required to specify neuronal fate and enhance neuroblast mitosis, whereas Groucho is required to maintain epithelial fate and inhibit mitosis. Our results suggest that the dMyc-Groucho complex defines a previously undescribed mechanism of Myc function and may serve as the transcriptional unit that integrates EGF and Notch inputs to regulate early neuronal development.
通过转录网络整合模式线索以协调基因表达在形态发生过程中至关重要,而在癌症中则会失调。利用DNA腺嘌呤甲基转移酶(Dam)ID染色质分析,我们鉴定出果蝇Myc癌基因与Groucho共抑制因子之间存在一种蛋白质 - 蛋白质相互作用,该相互作用调节直接dMyc靶标的一个子集。这些共享靶标中的大多数尤其在神经发生过程中影响细胞命运或有丝分裂,这表明dMyc - Groucho复合物可能在发育过程中协调细胞命运获得与有丝分裂能力。我们发现dMyc与Groucho之间存在拮抗关系,这类似于在表皮生长因子(EGF)和Notch信号传导中发现的拮抗相互作用:dMyc是指定神经元命运和增强神经母细胞有丝分裂所必需的,而Groucho是维持上皮细胞命运和抑制有丝分裂所必需的。我们的结果表明,dMyc - Groucho复合物定义了一种先前未描述的Myc功能机制,并且可能作为整合EGF和Notch输入以调节早期神经元发育的转录单元。