Department of Biosystems Science and Engineering, ETHZ, 4058 Basel, Switzerland.
Dev Cell. 2010 May 18;18(5):862-76. doi: 10.1016/j.devcel.2010.03.013.
Notch signaling plays a fundamental role in cellular differentiation and has been linked to human diseases, including cancer. We report the use of comprehensive RNAi analyses to dissect Notch regulation and its connections to cellular pathways. A cell-based RNAi screen identified 900 candidate Notch regulators on a genome-wide scale. The subsequent use of a library of transgenic Drosophila expressing RNAi constructs enabled large-scale in vivo validation and confirmed 333 of 501 tested genes as Notch regulators. Mapping the phenotypic attributes of our data on an interaction network identified another 68 relevant genes and revealed several modules of unexpected Notch regulatory activity. In particular, we note an intriguing relationship to pyruvate metabolism, which may be relevant to cancer. Our study reveals a hitherto unappreciated diversity of tissue-specific modulators impinging on Notch and opens new avenues for studying Notch regulation and function in development and disease.
Notch 信号通路在细胞分化中起着至关重要的作用,与人类疾病(包括癌症)有关。我们报告了使用综合 RNAi 分析来剖析 Notch 调控及其与细胞途径的联系。基于细胞的 RNAi 筛选在全基因组范围内鉴定了 900 个候选 Notch 调节剂。随后使用表达 RNAi 构建体的转基因果蝇文库进行大规模体内验证,确认了 501 个测试基因中的 333 个作为 Notch 调节剂。将我们数据的表型属性映射到交互网络上,确定了另外 68 个相关基因,并揭示了几个意想不到的 Notch 调节活性模块。特别是,我们注意到与丙酮酸代谢的有趣关系,这可能与癌症有关。我们的研究揭示了迄今尚未被认识到的、影响 Notch 的组织特异性调节剂的多样性,并为研究 Notch 在发育和疾病中的调控和功能开辟了新的途径。