Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Prague, Czech Republic.
Faculty of Science, Charles University, Prague, Czech Republic.
PLoS Pathog. 2024 Apr 22;20(4):e1012186. doi: 10.1371/journal.ppat.1012186. eCollection 2024 Apr.
In the bloodstream of mammalian hosts, African trypanosomes face the challenge of protecting their invariant surface receptors from immune detection. This crucial role is fulfilled by a dense, glycosylated protein layer composed of variant surface glycoproteins (VSGs), which undergo antigenic variation and provide a physical barrier that shields the underlying invariant surface glycoproteins (ISGs). The protective shield's limited permeability comes at the cost of restricted access to the extracellular host environment, raising questions regarding the specific function of the ISG repertoire. In this study, we employ an integrative structural biology approach to show that intrinsically disordered membrane-proximal regions are a common feature of members of the ISG super-family, conferring the ability to switch between compact and elongated conformers. While the folded, membrane-distal ectodomain is buried within the VSG layer for compact conformers, their elongated counterparts would enable the extension beyond it. This dynamic behavior enables ISGs to maintain a low immunogenic footprint while still allowing them to engage with the host environment when necessary. Our findings add further evidence to a dynamic molecular organization of trypanosome surface antigens wherein intrinsic disorder underpins the characteristics of a highly flexible ISG proteome to circumvent the constraints imposed by the VSG coat.
在哺乳动物宿主体液中,非洲锥虫面临着保护其不变表面受体免受免疫检测的挑战。这一关键功能由一层密集的糖基化蛋白组成,其中包含变异表面糖蛋白(VSG),这些蛋白发生抗原变异,并提供物理屏障,保护下面的不变表面糖蛋白(ISG)。保护屏蔽的有限渗透性是以限制对细胞外宿主环境的访问为代价的,这引发了关于 ISG 库的特定功能的问题。在这项研究中,我们采用综合结构生物学方法表明,固有无序的膜近端区域是 ISG 超家族成员的共同特征,赋予它们在紧凑和伸长构象之间切换的能力。虽然折叠的、膜远端的外域在紧凑构象中被埋在 VSG 层内,但它们的伸长对应物将能够延伸超出 VSG 层。这种动态行为使 ISG 能够保持低免疫原性足迹,同时仍然允许它们在需要时与宿主环境相互作用。我们的发现为锥虫表面抗原的动态分子组织提供了更多证据,其中固有无序为高度灵活的 ISG 蛋白质组的特征提供了基础,以规避 VSG 外壳施加的限制。