Rare and Neurology TA, Sanofi, Chilly-Mazarin, France.
Neuroscience, Janssen Research & Development, Beerse, Belgium.
Glia. 2022 Dec;70(12):2290-2308. doi: 10.1002/glia.24252. Epub 2022 Aug 1.
The receptor Triggering Receptor Expressed on Myeloid cells 2 (TREM2) is associated with several neurodegenerative diseases including Alzheimer's Disease and TREM2 stimulation represents a novel therapeutic opportunity. TREM2 can be activated by antibodies targeting the stalk region, most likely through receptor dimerization. Endogenous ligands of TREM2 are suggested to be negatively charged apoptotic bodies, mimicked by phosphatidylserine incorporated in liposomes and other polyanionic molecules likely binding to TREM2 IgV fold. However, there has been much discrepancy in the literature on the nature of phospholipids (PLs) that can activate TREM2 and on the stability of the corresponding liposomes over time. We describe optimized liposomes as robust agonists selective for TREM2 over TREM1 in cellular system. The detailed structure/activity relationship studies of lipid polar heads indicate that negatively charged lipid heads are required for activity and we identified the shortest maximally active PL sidechain. Optimized liposomes are active on both TREM2 common variant and TREM2 R47H mutant. Activity and selectivity were further confirmed in different native TREM2 expressing cell types including on integrated cellular responses such as stimulation of phagocytic activity. Such tool agonists will be useful in further studies of TREM2 biology in cellular systems alongside antibodies, and in the design of small molecule synthetic TREM2 agonists.
髓系细胞表达的触发受体 2(TREM2)与包括阿尔茨海默病在内的几种神经退行性疾病有关,TREM2 的刺激代表了一种新的治疗机会。TREM2 可以通过针对茎部区域的抗体激活,很可能通过受体二聚化。TREM2 的内源性配体被认为是带负电荷的凋亡小体,通过包含在脂质体中的磷脂酰丝氨酸模拟,其他带负电荷的分子可能与 TREM2 IgV 折叠结合。然而,关于能够激活 TREM2 的磷脂(PL)的性质以及相应脂质体随时间的稳定性,文献中存在很大差异。我们描述了优化的脂质体,它们在细胞系统中是 TREM2 的选择性激动剂,而不是 TREM1。脂质极性头部的详细结构/活性关系研究表明,带负电荷的脂质头部是活性所必需的,我们确定了最短的最大活性 PL 侧链。优化的脂质体对 TREM2 常见变体和 TREM2 R47H 突变体均具有活性。在不同的天然 TREM2 表达细胞类型中,包括吞噬活性等整合细胞反应的刺激,进一步证实了其活性和选择性。这些工具激动剂将有助于在细胞系统中进一步研究 TREM2 生物学,以及抗体和小分子合成 TREM2 激动剂的设计。