Kanungo J, Goswami M T, Pant H C
Division of Neurotoxicology, National Center for Toxicological Research, US Food and Drug Administration, Jefferson, AR, USA.
National Institute of Neuronal Disorders and Stroke, National Institute of Health, Bethesda, MD, USA.
Folia Biol (Praha). 2018;64(2):35-40. doi: 10.14712/fb2018064020035.
Notch signalling is critical for the development of the nervous system. In the zebrafish mindbomb mutants, disruption of E3 ubiquitin ligase activity inhibits Notch signalling. In these mutant embryos, precocious development of primary neurons leading to depletion of neural progenitor cells results in a neurogenic phenotype characterized by defects in neural patterning and brain development. Cyclin-dependent kinase 5 (Cdk5), a predominant neuronal kinase, is involved in a variety of essential functions of the nervous system. Most recently, mammalian studies on Notch and Cdk5 regulating each other's function have been emerging. The status of Cdk5 in the mindbomb mutant embryos with excessive primary neurons is not known. In situ hybridization of the zebrafish mindbomb mutant embryos uncovered a robust upregulation in Cdk5 expression but with a reduced Cdk5 activity. The implications of these findings in both the mammalian system and zebrafish are discussed in this mini-review to provide a glimpse into the relationship between Notch and Cdk5 that may explain certain neurodevelopmental defects associated with either mutations in ubiquitin ligase or altered expression of Cdk5.
Notch信号通路对神经系统的发育至关重要。在斑马鱼mindbomb突变体中,E3泛素连接酶活性的破坏会抑制Notch信号通路。在这些突变胚胎中,初级神经元的过早发育导致神经祖细胞耗竭,从而产生一种以神经模式形成和大脑发育缺陷为特征的神经源性表型。细胞周期蛋白依赖性激酶5(Cdk5)是一种主要的神经元激酶,参与神经系统的多种重要功能。最近,关于Notch和Cdk5相互调节功能的哺乳动物研究不断涌现。在具有过多初级神经元的mindbomb突变胚胎中Cdk5的状态尚不清楚。对斑马鱼mindbomb突变胚胎的原位杂交显示Cdk5表达显著上调,但Cdk5活性降低。本综述讨论了这些发现在哺乳动物系统和斑马鱼中的意义,以初步了解Notch和Cdk5之间的关系,这可能解释与泛素连接酶突变或Cdk5表达改变相关的某些神经发育缺陷。