马的TLR4/MD-2复合物作为激动剂介导对球形红杆菌脂多糖的识别。

Katharina L Lohmann, Michel L Vandenplas, Michelle H Barton, Clare E Bryant, James N Moore
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引用次数: 49

摘要

脂多糖(LPS)拮抗剂可能通过竞争性抑制抑制炎症细胞对LPS的反应,并且可能在内毒素血症和败血症的治疗中具有治疗价值。然而,一些LPS拮抗剂的抑制作用仅限于某些宿主物种,因为相同的分子可以在其他物种中具有显着的内毒活性。这种物种特异性识别似乎是由toll样受体4 (TLR4)和/或MD-2介导的。我们之前已经证明球形红杆菌(RsLPS)的LPS在人类细胞中是LPS拮抗剂,但在马细胞中是LPS激动剂(或LPS模拟剂)。在本研究中,HEK293细胞被人与马的CD14、TLR4和MD-2组合转染,并用RsLPS或来自大肠杆菌的LPS孵育作为内毒素对照。用双荧光素酶测定法测量NF-kappaB活化,作为细胞活化的指标。我们的研究结果表明,大肠杆菌LPS在转染了三种受体蛋白的所有组合的细胞中激活了NF-kappaB,而RsLPS仅在表达马TLR4和马MD-2单一组合的细胞中激活了NF-kappaB。我们得出结论,在马细胞中,TLR4/MD-2复合物负责识别RsLPS作为激动剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The equine TLR4/MD-2 complex mediates recognition of lipopolysaccharide from Rhodobacter sphaeroides as an agonist.

Lipopolysaccharide (LPS) antagonists inhibit the response of inflammatory cells to LPS, presumably by competitive inhibition, and may be of therapeutic value in the treatment of endotoxemia and sepsis. The inhibitory effects of some LPS antagonists are restricted to certain host species, however, as the same molecules can have significant endotoxic activity in other species. This species-specific recognition appears to be mediated by Toll-like receptor 4 (TLR4) and/or MD-2. We have shown previously that LPS from Rhodobacter sphaeroides ( RsLPS) is an LPS antagonist in human cells but an agonist (or LPS mimetic) in equine cells. In the present study, HEK293 cells were transfected with combinations of human and equine CD14, TLR4 and MD-2, and incubated with either RsLPS or with LPS from Escherichia coli as an endotoxin control. NF-kappaB activation was measured in a dual luciferase assay as an indicator of cellular activation. Our results indicate that E. colic LPS activated NF-kappaB in cells transfected with all combinations of the three receptor proteins, whereas RsLPS activated NF-kappaB only in cells expressing the single combination of equine TLR4 and equine MD-2. We conclude that the TLR4/MD-2 complex is responsible for recognition of RsLPS as an agonist in equine cells.

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