Sakata Tadashi, Sakaguchi Hiromi, Tsuda Leo, Higashitani Atsushi, Aigaki Toshiro, Matsuno Kenji, Hayashi Shigeo
RIKEN Center for Developmental Biology, Chuo-ku, Kobe 650-0047, Japan.
Curr Biol. 2004 Dec 29;14(24):2228-36. doi: 10.1016/j.cub.2004.12.028.
Ligand-induced proteolytic cleavage and internalization of the plasma membrane receptor Notch leads to its activation. Ligand-independent, steady-state internalization of Notch, however, does not lead to activation. The mechanism by which downstream effectors discriminate between these bipartite modes of Notch internalization is not understood. Nedd4 is a HECT domain-containing E3 ubiquitin ligase that targets transmembrane receptors containing the PPSY motif for endocytosis. Deltex is a positive Notch signaling regulator that encodes a putative ubiquitin ligase of the ring finger type.
We used the Drosophila system to show that Notch is ubiquitinated and destabilized by Nedd4 in a manner requiring the PPSY motif in the Notch intracellular domain. Loss of Nedd4 function dominantly suppresses the Notch and Deltex mutant phenotypes, and its hyperactivation attenuates Notch activity. In tissue culture cells, the dominant-negative form of Nedd4 blocks steady-state Notch internalization and activates Notch signaling independently of ligand binding. This effect was further potentiated by Deltex. Nedd4 destines Deltex for degradation in a Notch-dependent manner.
Nedd4 antagonizes Notch signaling by promoting degradation of Notch and Deltex. This Nedd4 function may be important for protecting unstimulated cells from sporadic activation of Notch signaling.
配体诱导的质膜受体Notch的蛋白水解切割和内化导致其激活。然而,Notch的非配体依赖性稳态内化并不会导致激活。下游效应器区分Notch内化的这两种二分模式的机制尚不清楚。Nedd4是一种含有HECT结构域的E3泛素连接酶,其靶向含有PPSY基序的跨膜受体进行内吞作用。Deltex是一种Notch信号正向调节因子,编码一种推定的环指型泛素连接酶。
我们利用果蝇系统表明,Notch在Notch细胞内结构域中需要PPSY基序的情况下被Nedd4泛素化并使其不稳定。Nedd4功能的丧失显著抑制Notch和Deltex突变体表型,而其过度激活则减弱Notch活性。在组织培养细胞中,Nedd4的显性负性形式阻断稳态Notch内化,并独立于配体结合激活Notch信号。Deltex进一步增强了这种效应。Nedd4以Notch依赖性方式使Deltex降解。
Nedd4通过促进Notch和Deltex的降解来拮抗Notch信号。这种Nedd4功能对于保护未受刺激的细胞免受Notch信号的散发性激活可能很重要。