Institute of Molecular and Cell Biology, Singapore, Singapore.
Cancer Science Institute, NUS, Singapore, Singapore.
Sci Rep. 2017 Aug 14;7(1):8094. doi: 10.1038/s41598-017-06904-7.
NFκB signaling has a pivotal role in regulation of development, innate immunity, and inflammation. Ikk2 is one of the two critical kinases that regulate the NFκB signaling pathway. While the role of Ikk2 in immunity, inflammation and oncogenesis has received attention, an understanding of the role of Ikk2 in vertebrate development has been compounded by the embryonic lethality seen in mice lacking Ikk2. We find that despite abnormal angiogenesis in IKK2 zygotic mutants of zebrafish, the maternal activity of Ikk2 supports embryogenesis and maturation of fertile animals and allows to study the role of IKK2 in development. Maternal-zygotic ikk2 mutants represent the first vertebrates globally devoid of maternal and zygotic Ikk2 activity. They are defective in cell proliferation as evidenced by abnormal cytokinesis, nuclear enlargement and syncytialisation of a significant portion of blastoderm. We further document that reduced phosphorylation of Aurora A by Ikk2 could underlie the basis of these defects in cell division.
NFκB 信号通路在调控发育、先天免疫和炎症中具有关键作用。Ikk2 是调控 NFκB 信号通路的两个关键激酶之一。虽然 Ikk2 在免疫、炎症和肿瘤发生中的作用已经引起了关注,但由于缺乏 Ikk2 的小鼠表现出胚胎致死性,因此对 Ikk2 在脊椎动物发育中的作用的理解变得更加复杂。我们发现,尽管斑马鱼的 IKK2 合子突变体存在异常的血管生成,但 Ikk2 的母源活性支持胚胎发生和成熟的有生育能力的动物的发育,并允许研究 IKK2 在发育中的作用。母源-合子 ikk2 突变体代表了全球第一个缺乏母源和合子 Ikk2 活性的脊椎动物。它们在细胞增殖方面存在缺陷,表现在异常的胞质分裂、核增大以及大量胚盘的合胞化。我们进一步证明,Ikk2 对 Aurora A 的磷酸化减少可能是这些细胞分裂缺陷的基础。