Zanin Natacha, Viaris de Lesegno Christine, Lamaze Christophe, Blouin Cedric M
NDORMS, The Kennedy Institute of Rheumatology, University of Oxford, Oxford, United Kingdom.
Institut Curie-Centre de Recherche, PSL Research University, Membrane Dynamics and Mechanics of Intracellular Signalling Laboratory, Paris, France.
Front Immunol. 2021 Jan 20;11:615603. doi: 10.3389/fimmu.2020.615603. eCollection 2020.
Like most plasma membrane proteins, type I interferon (IFN) receptor (IFNAR) traffics from the outer surface to the inner compartments of the cell. Long considered as a passive means to simply control subunits availability at the plasma membrane, an array of new evidence establishes IFNAR endocytosis as an active contributor to the regulation of signal transduction triggered by IFN binding to IFNAR. During its complex journey initiated at the plasma membrane, the internalized IFNAR complex, i.e. IFNAR1 and IFNAR2 subunits, will experience post-translational modifications and recruit specific effectors. These finely tuned interactions will determine not only IFNAR subunits destiny (lysosomal degradation vs. plasma membrane recycling) but also the control of IFN-induced signal transduction. Finally, the IFNAR system perfectly illustrates the paradigm of the crosstalk between membrane trafficking and intracellular signaling. Investigating the complexity of IFN receptor intracellular routes is therefore necessary to reveal new insight into the role of IFNAR membrane dynamics in type I IFNs signaling selectivity and biological activity.
与大多数质膜蛋白一样,I型干扰素(IFN)受体(IFNAR)从细胞外表面转运至细胞内区室。长期以来,人们一直认为这只是一种简单控制质膜上亚基可用性的被动方式,但一系列新证据表明,IFNAR内吞作用是IFN与IFNAR结合触发的信号转导调节的积极贡献者。在其始于质膜的复杂旅程中,内化的IFNAR复合物,即IFNAR1和IFNAR2亚基,将经历翻译后修饰并招募特定效应器。这些精细调节的相互作用不仅将决定IFNAR亚基的命运(溶酶体降解与质膜回收),还将决定对IFN诱导的信号转导的控制。最后,IFNAR系统完美地阐释了膜运输与细胞内信号传导之间相互作用的范例。因此,研究IFN受体内细胞途径的复杂性对于揭示IFNAR膜动力学在I型IFN信号选择性和生物学活性中的作用的新见解是必要的。