Institute for Molecular Biology and Tumor Research, Center for Tumor Biology and Immunology, Philipps University Marburg, Marburg, Germany.
Institute for Medical Bioinformatics and Biostatistics, Philipps University Marburg, Marburg, Germany.
Front Immunol. 2024 Oct 2;15:1401527. doi: 10.3389/fimmu.2024.1401527. eCollection 2024.
It has remained yet unclear which soluble factors regulate the anti-inflammatory macrophage phenotype observed in both homeostasis and tumourigenesis. We show here that haptoglobin, a major serum protein with elusive immunoregulatory properties, binds and buffers bacterial lipopolysaccharides to attenuate activation of NFκB in macrophages. Haptoglobin binds different lipopolysaccharides with low micromolar affinities. Given its abundance, haptoglobin constitutes a buffer for serum-borne lipopolysaccharides, shielding them to safeguard against aberrant inflammatory reactions by reducing the amount of free lipopolysaccharides available for binding to TLR4. Concordantly, NFκB activation by haptoglobin-associated lipopolysaccharides was markedly delayed relative to stimulation with pure lipopolysaccharide. Our findings warrant evaluation of therapeutic benefits of haptoglobin for inflammatory conditions and re-evaluation of purification strategies. Finally, they allow to elucidate mechanisms of enhanced immunosuppression by oncofetal haptoglobin.
其尚不清楚哪些可溶性因子调节着在稳态和肿瘤发生中观察到的抗炎型巨噬细胞表型。我们在此表明,触珠蛋白(一种具有难以捉摸的免疫调节特性的主要血清蛋白)与细菌脂多糖结合并缓冲它们,从而减弱 NFκB 在巨噬细胞中的激活。触珠蛋白以低微摩尔亲和力结合不同的脂多糖。鉴于其丰富度,触珠蛋白构成了血清中脂多糖的缓冲液,通过减少与 TLR4 结合的游离脂多糖的量来保护它们免受异常炎症反应。因此,与纯脂多糖刺激相比,触珠蛋白相关脂多糖对 NFκB 的激活明显延迟。我们的发现证明了触珠蛋白在炎症条件下的治疗益处值得评估,并需要重新评估其纯化策略。最后,它们阐明了癌胚触珠蛋白增强免疫抑制的机制。