Department of Molecular Biology and Genetics, Koc University, Istanbul 34450, Turkey.
Cells. 2020 Jun 3;9(6):1390. doi: 10.3390/cells9061390.
The mammalian centrosome/cilium complex is composed of the centrosome, the primary cilium and the centriolar satellites, which together regulate cell polarity, signaling, proliferation and motility in cells and thereby development and homeostasis in organisms. Accordingly, deregulation of its structure and functions is implicated in various human diseases including cancer, developmental disorders and neurodegenerative diseases. To better understand these disease connections, the molecular underpinnings of the assembly, maintenance and dynamic adaptations of the centrosome/cilium complex need to be uncovered with exquisite detail. Application of proximity-based labeling methods to the centrosome/cilium complex generated spatial and temporal interaction maps for its components and provided key insights into these questions. In this review, we first describe the structure and cell cycle-linked regulation of the centrosome/cilium complex. Next, we explain the inherent biochemical and temporal limitations in probing the structure and function of the centrosome/cilium complex and describe how proximity-based labeling approaches have addressed them. Finally, we explore current insights into the knowledge we gained from the proximity mapping studies as it pertains to centrosome and cilium biogenesis and systematic characterization of the centrosome, cilium and centriolar satellite interactomes.
哺乳动物中心体/纤毛复合物由中心体、初级纤毛和中心粒卫星组成,它们共同调节细胞极性、信号转导、增殖和运动,从而调节细胞和生物体的发育和动态平衡。因此,其结构和功能的失调与包括癌症、发育障碍和神经退行性疾病在内的各种人类疾病有关。为了更好地理解这些疾病之间的联系,需要详细揭示中心体/纤毛复合物的组装、维持和动态适应的分子基础。将基于邻近标记的方法应用于中心体/纤毛复合物,为其组分生成了时空相互作用图谱,并为这些问题提供了关键的见解。在这篇综述中,我们首先描述了中心体/纤毛复合物的结构和细胞周期调控。接下来,我们解释了探测中心体/纤毛复合物的结构和功能的内在生化和时间限制,并描述了如何通过邻近标记方法来解决这些问题。最后,我们探讨了从邻近作图研究中获得的关于中心体和纤毛发生以及中心体、纤毛和中心粒卫星相互作用组的系统表征的最新知识。