Department of Clinical Neurosciences, Hotchkiss Brain Institute, Cumming School of Medicine, University of Calgary, Calgary, AB, T2N 4N1, Canada.
Department of Cellular and Molecular Medicine, University of Ottawa Brain and Mind Research Institute, University of Ottawa, Ottawa, ON, K1H 8M5, Canada.
BMC Biol. 2022 May 17;20(1):115. doi: 10.1186/s12915-022-01312-4.
Activated Cdk5 regulates a number of processes during nervous system formation, including neuronal differentiation, growth cone stabilization, and axonal growth. Cdk5 phosphorylates its downstream substrates located in axonal growth cones, where the highly expressed c-Jun N-terminal kinase (JNK)-interacting protein1 (JIP1) has been implicated as another important regulator of axonal growth. In addition, stringent control of the level of intracellular domain of Notch1 (Notch1-IC) plays a regulatory role in axonal outgrowth during neuronal differentiation. However, whether Cdk5-JIP1-Notch1 cooperate to regulate axonal outgrowth, and the mechanism of such joint contribution to this pathway, is presently unknown, and here we explore their potential interaction.
Our interactome screen identified JIP1 as an interactor of p35, a Cdk5 activator, and we sought to explore the relationship between Cdk5 and JIP1 on the regulation of axonal outgrowth. We demonstrate that JIP1 phosphorylated by Cdk5 at Thr205 enhances axonal outgrowth and a phosphomimic JIP1 rescues the axonal outgrowth defects in JIP1 and p35 neurons. Axonal outgrowth defects caused by the specific increase of Notch1 in JIP1 neurons are rescued by Numb-mediated inhibition of Notch1. Finally, we demonstrate that Cdk5 phosphorylation of JIP1 further amplifies the phosphorylation status of yet another Cdk5 substrate E3-ubiquitin ligase Itch, resulting in increased Notch1 ubiquitination.
Our findings identify a potentially critical signaling axis involving Cdk5-JIP1-Itch-Notch1, which plays an important role in the regulation of CNS development. Future investigation into the way this pathway integrates with additional pathways regulating axonal growth will further our knowledge of normal central nervous system development and pathological conditions.
激活的 Cdk5 在神经系统形成过程中调节许多过程,包括神经元分化、生长锥稳定和轴突生长。Cdk5 磷酸化其位于轴突生长锥中的下游底物,高度表达的 c-Jun N 端激酶(JNK)相互作用蛋白 1(JIP1)被认为是轴突生长的另一个重要调节剂。此外, Notch1 细胞内结构域(Notch1-IC)的水平受到严格控制,在神经元分化过程中对轴突生长起调节作用。然而,Cdk5-JIP1 Notch1 是否合作来调节轴突生长,以及这种联合贡献的机制,目前尚不清楚,我们在这里探索它们之间的潜在相互作用。
我们的互作组筛选鉴定出 JIP1 是 Cdk5 激活剂 p35 的相互作用蛋白,我们试图探索 Cdk5 和 JIP1 在调节轴突生长方面的关系。我们证明 Cdk5 磷酸化 JIP1 的 Thr205 增强了轴突生长,并且磷酸化模拟的 JIP1 挽救了 JIP1 和 p35 神经元中的轴突生长缺陷。在 JIP1 神经元中特异性增加 Notch1 引起的轴突生长缺陷通过 Numb 介导的 Notch1 抑制得到挽救。最后,我们证明 Cdk5 磷酸化 JIP1 进一步放大了另一个 Cdk5 底物 E3 泛素连接酶 Itch 的磷酸化状态,导致 Notch1 泛素化增加。
我们的发现确定了一个潜在的关键信号轴,涉及 Cdk5-JIP1-Itch-Notch1,它在调节中枢神经系统发育中起重要作用。进一步研究该途径与调节轴突生长的其他途径的整合方式将增进我们对正常中枢神经系统发育和病理状况的认识。