May Elena A, Sroka Tommy J, Mick David U
Center of Human and Molecular Biology (ZHMB), Saarland University School of Medicine, Homburg, Germany.
Center for Molecular Signaling (PZMS), Department of Medical Biochemistry and Molecular Biology, Saarland University School of Medicine, Homburg, Germany.
Front Cell Dev Biol. 2021 Apr 12;9:664279. doi: 10.3389/fcell.2021.664279. eCollection 2021.
The primary cilium is a solitary, microtubule-based membrane protrusion extending from the surface of quiescent cells that senses the cellular environment and triggers specific cellular responses. The functions of primary cilia require not only numerous different components but also their regulated interplay. The cilium performs highly dynamic processes, such as cell cycle-dependent assembly and disassembly as well as delivery, modification, and removal of signaling components to perceive and process external signals. On a molecular level, these processes often rely on a stringent control of key modulatory proteins, of which the activity, localization, and stability are regulated by post-translational modifications (PTMs). While an increasing number of PTMs on ciliary components are being revealed, our knowledge on the identity of the modifying enzymes and their modulation is still limited. Here, we highlight recent findings on cilia-specific phosphorylation and ubiquitylation events. Shedding new light onto the molecular mechanisms that regulate the sensitive equilibrium required to maintain and remodel primary cilia functions, we discuss their implications for cilia biogenesis, protein trafficking, and cilia signaling processes.
初级纤毛是一种从静止细胞表面伸出的、基于微管的单一膜性突起,它能够感知细胞环境并触发特定的细胞反应。初级纤毛的功能不仅需要众多不同的组件,还需要它们之间受调控的相互作用。纤毛执行高度动态的过程,如细胞周期依赖性的组装和拆卸,以及信号组件的递送、修饰和去除,以感知和处理外部信号。在分子水平上,这些过程通常依赖于对关键调节蛋白的严格控制,这些蛋白的活性、定位和稳定性通过翻译后修饰(PTM)来调节。虽然越来越多的纤毛组件上的PTM被揭示出来,但我们对修饰酶的身份及其调节的了解仍然有限。在这里,我们重点介绍了关于纤毛特异性磷酸化和泛素化事件的最新发现。我们揭示了调节维持和重塑初级纤毛功能所需的敏感平衡的分子机制,讨论了它们对纤毛生物发生、蛋白质运输和纤毛信号传导过程的影响。