Towards more efficient synthetic immunomodulators: biological characterization and mechanism of action of monosaccharide-derived TLR4 agonists.

IF 4.1 4区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Ana Rita Franco, Zaineh Aladailleh, Alessio Romerio, Alice Italia, Federico Lami, Mohammed Monsoor Shaik, Natalia Skupinska, Valentina Artusa, Grisha Pirianov, Francesco Peri
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Abstract

Toll-like receptors (TLRs), including TLR4, play a crucial role in innate immunity activation, and small molecular TLR4 activators (agonists) are in the preclinical and clinical phases of development as vaccine adjuvants or tumor immunotherapeutics. Recently, we generated novel glucosamine-derived compounds, FP molecules, that are active as TLR4 agonists. Despite their chemical structure differing from LPS, some of these compounds, including compound FP18, mimicked the biological activity of LPS and its capacity to activate TLR4 and its downstream pathways. In contrast to FP18, compound FP20 showed immunostimulant activity that was only partially due to TLR4 agonism. This activity was mainly associated with NLRP3 inflammasome activation. We generated a panel of glycosylated FP20 derivatives (glyco-FP20) bearing different monosaccharides linked to C6 of the glucosamine. The biological activity of glyco-FP20 was related to TLR4 activation, as assessed from preliminary experiments in HEK-Blue cells. We presented a comprehensive study of the mechanism of action of glyco-FP20 derivatives and their effect on TLR4 signalling, leading to macrophage M1 polarisation and pyroptosis in THP-1 derived macrophages. Results revealed that, similarly to LPS and differently from FP20, glyco-FP20 derivatives were potent TLR4 agonists inducing TLR4/MyD88 signalling pathways that led to M1 macrophage polarisation, associated with NF-kB activation/translocation and release of a number of proinflammatory mediators in THP-1-derived macrophages. In particular, compound FP20 Rha activated TLR4/TRIF signalling, associated with phosphorylation of STAT1/IRF3, leading to the production of IFN-β in THP-1-derived macrophages. Furthermore, using a specific GSD inhibitor (U73), we demonstrated the ability of FP20 and glyco-FP20 to induce GSD-dependent pyroptosis, which was associated with IL-1β/IL-18 and LDH release in THP-1-derived macrophages. These results show that the optimization of FP20 glycosylation can increase the biological potency of the parent molecule and can be used in preclinical development as vaccine adjuvants or macrophage-based cancer immunotherapy.

迈向更有效的合成免疫调节剂:单糖衍生的TLR4激动剂的生物学特性和作用机制。
toll样受体(TLRs),包括TLR4,在先天免疫激活中起着至关重要的作用,小分子TLR4激活剂(激动剂)作为疫苗佐剂或肿瘤免疫治疗药物处于临床前和临床开发阶段。最近,我们产生了新的葡萄糖胺衍生的化合物,FP分子,作为TLR4激动剂具有活性。尽管它们的化学结构与LPS不同,但其中一些化合物,包括化合物FP18,模仿了LPS的生物活性及其激活TLR4及其下游途径的能力。与FP18相比,化合物FP20显示出的免疫刺激活性仅部分是由于TLR4的激动作用。这种活性主要与NLRP3炎性体激活有关。我们生成了一组糖基化的FP20衍生物(glyco-FP20),含有与葡萄糖胺的C6相连的不同单糖。根据HEK-Blue细胞的初步实验,glyco-FP20的生物活性与TLR4激活有关。我们全面研究了glyco-FP20衍生物的作用机制及其对TLR4信号传导的影响,从而导致THP-1衍生的巨噬细胞M1极化和焦亡。结果显示,与LPS相似,与FP20不同,糖-FP20衍生物是有效的TLR4激动剂,诱导TLR4/MyD88信号通路,导致M1巨噬细胞极化,与NF-kB激活/易位和thp -1衍生巨噬细胞中许多促炎介质的释放相关。特别是,化合物FP20 Rha激活TLR4/TRIF信号,与STAT1/IRF3磷酸化相关,导致thp -1来源的巨噬细胞产生IFN-β。此外,使用特异性GSD抑制剂(U73),我们证明了FP20和glyco-FP20诱导GSD依赖性焦亡的能力,这与thp -1来源的巨噬细胞中IL-1β/IL-18和LDH释放有关。这些结果表明,优化FP20糖基化可以提高亲本分子的生物学效力,可用于临床前开发,作为疫苗佐剂或基于巨噬细胞的癌症免疫治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.80
自引率
2.40%
发文量
129
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