Roig Joan
Department of Cells and Tissues, Cell Cycle and Signaling Research Group, Molecular Biology Institute of Barcelona (IBMB-CSIC), Baldiri I Reixac 10-12, Barcelona, 08028, Spain.
Cell Commun Signal. 2025 Apr 7;23(1):170. doi: 10.1186/s12964-025-02143-w.
Here we describe the current knowledge about the ciliary kinase NEK8, highlighting what we know and what we don't know about its regulation, substrates and potential functions. We also review the literature about the pathological consequences of different NEK8 variants in patients of nephronophthisis, renal-hepatic-pancreatic dysplasia and autosomal dominant polycystic kidney disease, three different types of ciliopathies. NEK8 belongs to the NIMA family of serine/threonine protein kinases. Like its closest relative, NEK9, it contains a protein kinase and an RCC1 domain, but lacks the C-terminal region that is key for NEK9's regulation as a G2/M kinase. Importantly, NEK8 localizes to cilia as part of a multimeric protein complex that assembles in a fibrillar fashion at the proximal half of this signaling organelle, defining what is known as the INV compartment. NEK8 and its INV compartment partners inversin, ANKS6 and NPHP3 are necessary for left-right determination and the correct development of different organs such as the kidney, the heart and the liver. But the kinase substrates, regulatory mechanism and activating cues and thus the molecular basis of NEK8 important physiological roles remain elusive. We present the current findings regarding NEK8 and also highlight what we miss in order to progress towards the understanding of the kinase and the function of the INV complex at the cilia.
在此,我们描述了关于纤毛激酶NEK8的现有知识,重点阐述了我们对其调节、底物及潜在功能的已知和未知之处。我们还回顾了有关不同NEK8变体在肾单位肾痨、肝肾胰发育不全和常染色体显性多囊肾病(三种不同类型的纤毛病)患者中的病理后果的文献。NEK8属于丝氨酸/苏氨酸蛋白激酶的NIMA家族。与其关系最密切的亲属NEK9一样,它含有一个蛋白激酶和一个RCC1结构域,但缺少作为G2/M激酶对NEK9调节起关键作用的C末端区域。重要的是,NEK8定位于纤毛,作为多聚体蛋白复合物的一部分,该复合物以纤维状方式组装在这个信号细胞器的近端一半,定义了所谓的INV区室。NEK8及其INV区室伙伴反转蛋白、ANKS6和NPHP3对于左右不对称确定以及肾脏、心脏和肝脏等不同器官的正确发育是必需的。但是激酶底物、调节机制和激活信号,以及NEK8重要生理作用的分子基础仍然不清楚。我们展示了关于NEK8的当前研究结果,并强调了为推进对该激酶以及纤毛处INV复合物功能的理解我们所欠缺的内容。