Tien An-Chi, Rajan Akhila, Schulze Karen L, Ryoo Hyung Don, Acar Melih, Steller Hermann, Bellen Hugo J
Program in Developmental Biology, Baylor College of Medicine, Houston, TX 77030, USA.
J Cell Biol. 2008 Sep 22;182(6):1113-25. doi: 10.1083/jcb.200805001.
Notch-mediated cell-cell communication regulates numerous developmental processes and cell fate decisions. Through a mosaic genetic screen in Drosophila melanogaster, we identified a role in Notch signaling for a conserved thiol oxidase, endoplasmic reticulum (ER) oxidoreductin 1-like (Ero1L). Although Ero1L is reported to play a widespread role in protein folding in yeast, in flies Ero1L mutant clones show specific defects in lateral inhibition and inductive signaling, two characteristic processes regulated by Notch signaling. Ero1L mutant cells accumulate high levels of Notch protein in the ER and induce the unfolded protein response, suggesting that Notch is misfolded and fails to be exported from the ER. Biochemical assays demonstrate that Ero1L is required for formation of disulfide bonds of three Lin12-Notch repeats (LNRs) present in the extracellular domain of Notch. These LNRs are unique to the Notch family of proteins. Therefore, we have uncovered an unexpected requirement for Ero1L in the maturation of the Notch receptor.
Notch介导的细胞间通讯调节众多发育过程和细胞命运决定。通过在黑腹果蝇中进行的镶嵌遗传筛选,我们确定了一种保守的硫醇氧化酶——内质网(ER)氧化还原蛋白1样蛋白(Ero1L)在Notch信号传导中的作用。尽管据报道Ero1L在酵母的蛋白质折叠中发挥广泛作用,但在果蝇中,Ero1L突变克隆在侧向抑制和诱导信号传导中表现出特定缺陷,这是由Notch信号传导调节的两个特征性过程。Ero1L突变细胞在内质网中积累高水平的Notch蛋白并诱导未折叠蛋白反应,这表明Notch发生错误折叠且无法从内质网输出。生化分析表明,Ero1L是Notch细胞外结构域中存在的三个Lin12-Notch重复序列(LNRs)形成二硫键所必需的。这些LNRs是Notch蛋白家族所特有的。因此,我们发现了Ero1L在Notch受体成熟过程中出人意料的需求。