MyD88-dependent and independent pathways of Toll-Like Receptors are engaged in biological activity of Triptolide in ligand-stimulated macrophages.

Vummidigiridhar Premkumar, Moul Dey, Ruth Dorn, Ilya Raskin
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引用次数: 72

Abstract

Background: Triptolide is a diterpene triepoxide from the Chinese medicinal plant Tripterygium wilfordii Hook F., with known anti-inflammatory, immunosuppressive and anti-cancer properties.

Results: Here we report the expression profile of immune signaling genes modulated by triptolide in LPS induced mouse macrophages. In an array study triptolide treatment modulated expression of 22.5% of one hundred and ninety five immune signaling genes that included Toll-like receptors (TLRs). TLRs elicit immune responses through their coupling with intracellular adaptor molecules, MyD88 and TRIF. Although it is known that triptolide inhibits NFkappaB activation and other signaling pathways downstream of TLRs, involvement of TLR cascade in triptolide activity was not reported. In this study, we show that triptolide suppresses expression of proinflammatory downstream effectors induced specifically by different TLR agonists. Also, the suppressive effect of triptolide on TLR-induced NFkappaB activation was observed when either MyD88 or TRIF was knocked out, confirming that both MyD88 and TRIF mediated NFkappaB activation may be inhibited by triptolide. Within the TLR cascade triptolide downregulates TLR4 and TRIF proteins.

Conclusions: This study reveals involvement of TLR signaling in triptolide activity and further increases understanding of how triptolide activity may downregulate NFkappaB activation during inflammatory conditions.

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myd88依赖性和独立的toll样受体通路参与了雷公藤甲素在配体刺激的巨噬细胞中的生物活性。
背景:雷公藤甲素是一种来自中草药雷公藤的二萜三氧化物,具有抗炎、免疫抑制和抗癌作用。结果:本研究报道了雷公藤甲素在LPS诱导的小鼠巨噬细胞中调控免疫信号基因的表达谱。在一项阵列研究中,雷藤甲素治疗可调节包括toll样受体(TLRs)在内的195个免疫信号基因中22.5%的表达。tlr通过与细胞内接头分子MyD88和TRIF偶联引起免疫应答。虽然已知雷公藤甲素抑制NFkappaB激活和TLR下游的其他信号通路,但TLR级联参与雷公藤甲素活性的研究尚未报道。在这项研究中,我们发现雷公藤甲素抑制不同TLR激动剂特异性诱导的促炎下游效应物的表达。同样,当敲除MyD88或TRIF时,我们观察到雷公藤甲素对tlr诱导的NFkappaB激活的抑制作用,证实了MyD88和TRIF介导的NFkappaB激活都可能被雷公藤甲素抑制。在TLR级联中,雷公藤甲素下调TLR4和TRIF蛋白。结论:本研究揭示了TLR信号参与雷公藤甲素活性,并进一步加深了对雷公藤甲素活性如何在炎症条件下下调NFkappaB激活的理解。
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