首页> 美国卫生研究院文献>Mediators of Inflammation >Hydroxysafflor Yellow A Inhibits LPS-Induced NLRP3 Inflammasome Activation via Binding to Xanthine Oxidase in Mouse RAW264.7 Macrophages
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Hydroxysafflor Yellow A Inhibits LPS-Induced NLRP3 Inflammasome Activation via Binding to Xanthine Oxidase in Mouse RAW264.7 Macrophages

机译:羟基红花黄A通过结合小鼠RAW264.7巨噬细胞中的黄嘌呤氧化酶抑制LPS诱导的NLRP3炎性体激活。

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摘要

Hydroxysafflor yellow A (HSYA) is an effective therapeutic agent for inflammatory diseases and autoimmune disorders; however, its regulatory effect on NLRP3 inflammasome activation in macrophages has not been investigated. In this study, we predicted the potential interaction between HSYA and xanthine oxidase (XO) via PharmMapper inverse docking and confirmed the binding inhibition via inhibitory test (IC50 = 40.04 μM). Computation docking illustrated that, in this HSYA-XO complex, HSYA was surrounded by Leu 648, Leu 712, His 875, Leu 873, Ser 876, Glu 879, Phe 649, and Asn 650 with a binding energy of −5.77 kcal/M and formed hydrogen bonds with the hydroxyl groups of HSYA at Glu 879, Asn 650, and His 875. We then found that HSYA significantly decreased the activity of XO in RAW264.7 macrophages and suppressed LPS-induced ROS generation. Moreover, we proved that HSYA markedly inhibited LPS-induced cleaved caspase-1 activation via suppressing the sensitization of NLRP3 inflammasome and prevented the mature IL-1β formation from pro-IL-1β form. These findings suggest that XO may be a potential target of HSYA via direct binding inhibition and the combination of HSYA-XO suppresses LPS-induced ROS generation, contributing to the depression of NLRP3 inflammasome and inhibition of IL-1β secretion in macrophages.
机译:羟基红花黄A(HSYA)是炎性疾病和自身免疫性疾病的有效治疗剂。然而,尚未研究其对巨噬细胞中NLRP3炎性体活化的调节作用。在这项研究中,我们通过PharmMapper反向对接预测了HSYA和黄嘌呤氧化酶(XO)之间的潜在相互作用,并通过抑制试验(IC50 = 40.04μM)确认了结合抑制作用。计算对接表明,在此HSYA-XO复杂物中,HSYA被Leu 648,Leu 712,His 875,Leu 873,Ser 876,Glu 879,Phe 649和Asn 650包围,结合能为-5.77 kcal / M并在Glu 879,Asn 650和His 875处与HSYA的羟基形成氢键。然后,我们发现HSYA显着降低RAW264.7巨噬细胞中XO的活性并抑制LPS诱导的ROS生成。此外,我们证明了HSYA通过抑制NLRP3炎性小体的敏化作用显着抑制了LPS诱导的Caspase-1裂解,并阻止了IL-1β的形成。这些发现表明,XO可能通过直接结合抑制作用成为HSYA的潜在靶标,并且HSYA-XO的组合抑制LPS诱导的ROS生成,从而有助于NLRP3炎性体的抑制和巨噬细胞IL-1β分泌的抑制。

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