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SARS-CoV-2 spike protein binds to bacterial lipopolysaccharide and boosts proinflammatory activity

机译:SARS-COV-2穗蛋白与细菌脂多糖结合并提高促炎活性

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There is a link between high lipopolysaccharide (LPS) levels in the blood and the metabolic syndrome, and metabolic syndrome predisposes patients to severe COVID-19. Here, we define an interaction between SARS-CoV-2 spike (S) protein and LPS, leading to aggravated inflammation in vitro and in vivo . Native gel electrophoresis demonstrated that SARS-CoV-2 S protein binds to LPS. Microscale thermophoresis yielded a K D of ~47?nM for the interaction. Computational modeling and all-atom molecular dynamics simulations further substantiated the experimental results, identifying a main LPS-binding site in SARS-CoV-2 S protein. S protein, when combined with low levels of LPS, boosted nuclear factor-kappa B (NF-κB) activation in monocytic THP-1 cells and cytokine responses in human blood and peripheral blood mononuclear cells, respectively. The in vitro inflammatory response was further validated by employing NF-κB reporter mice and in vivo bioimaging. Dynamic light scattering, transmission electron microscopy, and LPS-FITC analyses demonstrated that S protein modulated the aggregation state of LPS, providing a molecular explanation for the observed boosting effect. Taken together, our results provide an interesting molecular link between excessive inflammation during infection with SARS-CoV-2 and comorbidities involving increased levels of bacterial endotoxins.
机译:血液和代谢综合征中的高脂多糖(LPS)水平之间存在联系,代谢综合征易患患者到严重的Covid-19。在这里,我们定义了SARS-COV-2穗蛋白和LPS之间的相互作用,导致体外和体内加重炎症。本地凝胶电泳证明SARS-COV-2S蛋白与LPS结合。微观耐热度产生〜47Ω·Nm的k D.相互作用。计算建模和全原子分子动力学模拟进一步证实了实验结果,鉴定了SARS-COV-2S蛋白中的主要LPS结合位点。 S蛋白质,当与低水平的LPS结合时,分别在单核细胞THP-1细胞中提高核因子-Kappa B(NF-κB)活化和人血和外周血单核细胞中的细胞因子响应。通过使用NF-κB报告小鼠和体内生物成像进一步验证了体外炎症反应。动态光散射,透射电子显微镜和LPS-FITC分析证明了S蛋白调节LP的聚集状态,为观察到的升压效果提供分子解释。在一起,我们的结果提供了在感染患者的感染过多的炎症之间提供了一个有趣的分子联系,涉及细菌内毒素的增加。

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