Zhang Liguo, Widau Ryan C, Herring B Paul, Gallagher Patricia J
Department of Celluar & Integrative Physiology, Indiana University School of Medicine, Indianapolis, IN 46202, United States.
Biochim Biophys Acta. 2011 Dec;1813(12):2036-43. doi: 10.1016/j.bbamcr.2011.08.019. Epub 2011 Oct 2.
Delta ligands are important for regulating Notch signaling through transcellular stimulation of Notch receptors. The cytoplasmic tails of Delta ligands have multiple potential regulatory sites including several lysine residues that are putative targets for ubiquitination by the E3 ubiquitin ligases, Mind Bomb and Neuralized. To identify possible roles for specific lysine residues in the cytoplasmic tail of the Notch ligand Dll1 a mutational and functional analysis was performed. Examination of a panel of individual or clustered lysine mutants demonstrated that lysine 613 (K613) in the cytoplasmic tail of Dll1 is a key residue necessary for transcellular activation of Notch signaling. Multi-ubiquitination of the Dll1 mutant Dll1-K613R was altered compared to wild type Dll1, and the K613R mutation blocked the ability of Dll1 to interact with Notch1. Finally, mutation of K613 did not affect the stability of Dll1 or its ability to traffic to recycle to the plasma membrane, but did enhance the fraction associated with lipid rafts. Collectively these results suggest that the transcellular defect in Notch signaling attributed to residue K613 in cytoplasmic tail of Dll1 may result from altering its multi-ubiquitination and increasing its retention in lipid rafts.
Delta配体对于通过跨细胞刺激Notch受体来调节Notch信号传导很重要。Delta配体的细胞质尾巴有多个潜在的调节位点,包括几个赖氨酸残基,它们是E3泛素连接酶Mind Bomb和Neuralized进行泛素化的假定靶标。为了确定Notch配体Dll1细胞质尾巴中特定赖氨酸残基的可能作用,进行了突变和功能分析。对一组单个或成簇的赖氨酸突变体的检查表明,Dll1细胞质尾巴中的赖氨酸613(K613)是Notch信号传导跨细胞激活所必需的关键残基。与野生型Dll1相比,Dll1突变体Dll1-K613R的多聚泛素化发生了改变,并且K613R突变阻断了Dll1与Notch1相互作用的能力。最后,K613的突变不影响Dll1的稳定性或其循环回到质膜的运输能力,但确实增加了与脂筏相关的部分。这些结果共同表明,归因于Dll1细胞质尾巴中K613残基的Notch信号传导跨细胞缺陷可能是由于其多聚泛素化改变以及在脂筏中的滞留增加所致。