Department of Biology, Amherst College, Amherst, Massachusetts 01002, USA.
Genetics. 2012 Mar;190(3):1043-57. doi: 10.1534/genetics.111.136804. Epub 2011 Dec 29.
Notch signaling pathways can be regulated through a variety of cellular mechanisms, and genetically compromised systems provide useful platforms from which to search for the responsible modulators. The Caenorhabditis elegans gene aph-1 encodes a component of γ-secretase, which is essential for Notch signaling events throughout development. By looking for suppressors of the incompletely penetrant aph-1(zu147) mutation, we identify a new gene, sao-1 (suppressor of aph-one), that negatively regulates aph-1(zu147) activity in the early embryo. The sao-1 gene encodes a novel protein that contains a GYF protein-protein interaction domain and interacts specifically with SEL-10, an Fbw7 component of SCF E3 ubiquitin ligases. We demonstrate that the embryonic lethality of aph-1(zu147) mutants can be suppressed by removing sao-1 activity or by mutations that disrupt the SAO-1-SEL-10 protein interaction. Decreased sao-1 activity also influences Notch signaling events when they are compromised at different molecular steps of the pathway, such as at the level of the Notch receptor GLP-1 or the downstream transcription factor LAG-1. Combined analysis of the SAO-1-SEL-10 protein interaction and comparisons of sao-1 and sel-10 genetic interactions suggest a possible role for SAO-1 as an accessory protein that participates with SEL-10 in downregulation of Notch signaling. This work provides the first mutant analysis of a GYF-domain protein in either C. elegans or Drosophila and introduces a new type of Fbw7-interacting protein that acts in a subset of Fbw7 functions.
Notch 信号通路可以通过多种细胞机制进行调节,而遗传缺陷系统为寻找负责的调节剂提供了有用的平台。秀丽隐杆线虫基因 aph-1 编码 γ-分泌酶的一个组成部分,该酶对于整个发育过程中的 Notch 信号事件是必不可少的。通过寻找 aph-1(zu147)不完全穿透突变的抑制子,我们发现了一个新基因 sao-1(aph-1 的抑制子),它负调控早期胚胎中 aph-1(zu147)的活性。sao-1 基因编码一种新的蛋白质,它包含一个 GYF 蛋白-蛋白相互作用域,并与 SEL-10 特异性相互作用,SEL-10 是 SCF E3 泛素连接酶的 Fbw7 成分。我们证明,通过去除 sao-1 活性或通过破坏 SAO-1-SEL-10 蛋白相互作用的突变,可以抑制 aph-1(zu147)突变体的胚胎致死性。当 Notch 信号通路在不同的分子步骤(如 Notch 受体 GLP-1 或下游转录因子 LAG-1 水平)受到影响时,sao-1 活性的降低也会影响 Notch 信号事件。SAO-1-SEL-10 蛋白相互作用的综合分析以及 sao-1 和 sel-10 遗传相互作用的比较表明,SAO-1 可能作为一种辅助蛋白,与 SEL-10 一起参与 Notch 信号的下调。这项工作首次对秀丽隐杆线虫或果蝇中的 GYF 结构域蛋白进行了突变分析,并引入了一种新的 Fbw7 相互作用蛋白,该蛋白在 Fbw7 功能的一部分中起作用。