JCI Insight. 2023 Aug 8;8(15):e170121. doi: 10.1172/jci.insight.170121.
Low-density lipoprotein receptor-related protein-1 (LRP1) functions as a receptor for nonpathogenic cellular prion protein (PrPC), which is released from cells by ADAM (a disintegrin and metalloproteinase domain) proteases or in extracellular vesicles. This interaction activates cell signaling and attenuates inflammatory responses. We screened 14-mer PrPC-derived peptides and identified a putative LRP1 recognition motif in the PrPC sequence spanning residues 98-111. A synthetic peptide (P3) corresponding to this region replicated the cell-signaling and biological activities of full-length shed PrPC. P3 blocked LPS-elicited cytokine expression in macrophages and microglia and rescued the heightened sensitivity to LPS in mice in which the PrPC gene (Prnp) had been deleted. P3 activated ERK1/2 and induced neurite outgrowth in PC12 cells. The response to P3 required LRP1 and the NMDA receptor and was blocked by the PrPC-specific antibody, POM2. P3 has Lys residues, which are typically necessary for LRP1 binding. Converting Lys100 and Lys103 into Ala eliminated the activity of P3, suggesting that these residues are essential in the LRP1-binding motif. A P3 derivative in which Lys105 and Lys109 were converted into Ala retained activity. We conclude that the biological activities of shed PrPC, attributed to interaction with LRP1, are retained in synthetic peptides, which may be templates for therapeutics development.
低密度脂蛋白受体相关蛋白 1(LRP1)作为非致病性细胞朊病毒蛋白(PrPC)的受体发挥作用,PrPC 由 ADAM(解整合素和金属蛋白酶域)蛋白酶或细胞外囊泡从细胞中释放。这种相互作用激活细胞信号转导并减弱炎症反应。我们筛选了 14 个氨基酸 PrPC 衍生肽,并在 PrPC 序列中鉴定出一个跨越残基 98-111 的潜在 LRP1 识别基序。与该区域相对应的合成肽(P3)复制了全长脱落 PrPC 的细胞信号转导和生物学活性。P3 阻断了巨噬细胞和小胶质细胞中 LPS 引发的细胞因子表达,并挽救了 PrPC 基因(Prnp)缺失小鼠对 LPS 的敏感性增加。P3 激活 ERK1/2 并诱导 PC12 细胞的神经突生长。对 P3 的反应需要 LRP1 和 NMDA 受体,并且被 PrPC 特异性抗体 POM2 阻断。P3 具有赖氨酸残基,通常是 LRP1 结合所必需的。将 Lys100 和 Lys103 转化为 Ala 消除了 P3 的活性,表明这些残基是 LRP1 结合基序中的必需残基。将 Lys105 和 Lys109 转化为 Ala 的 P3 衍生物保留了活性。我们得出结论,脱落的 PrPC 的生物学活性归因于与 LRP1 的相互作用,在合成肽中得以保留,这些肽可能是治疗药物开发的模板。