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核苷酸受体 P2RX7 刺激增强了 LPS 诱导的小鼠巨噬细胞中干扰素-β的产生。

Nucleotide receptor P2RX7 stimulation enhances LPS-induced interferon-β production in murine macrophages.

机构信息

2.University of Wisconsin School of Medicine and Public Health, 600 Highland Ave., CSC H4/472, Madison, WI 53792-9988, USA.

出版信息

J Leukoc Biol. 2013 Oct;94(4):759-68. doi: 10.1189/jlb.0712351. Epub 2013 Aug 2.

Abstract

Stimulation of P2RX(7) with extracellular ATP potentiates numerous LPS-induced proinflammatory events, including cytokine induction in macrophages, but the molecular mechanisms underlying this process are not well defined. Although P2RX(7) ligation has been proposed to activate several transcription factors, many of the LPS-induced mediators affected by P2RX(7) activation are not induced by P2RX(7) agonists alone, suggesting a complementary role for P2RX(7) in transcriptional regulation. Type I IFN production, whose expression is tightly controlled by multiple transcription factors that form an enhanceosome, is critical for resistance against LPS-containing bacteria. The effect of purinergic receptor signaling on LPS-dependent type I IFN is unknown and would be of great relevance to a diverse array of inflammatory conditions. The present study demonstrates that stimulation of macrophages with P2RX(7) agonists substantially enhances LPS-induced IFN-β expression, and this enhancement is ablated in macrophages that do not express functional P2RX(7) or when the MAPK MEK1/2 pathways are inhibited. Potentiation of LPS-induced IFN-β expression following P2RX(7) stimulation is likely transcriptionally regulated, as this enhancement is observed at the IFN-β promoter level. Furthermore, P2RX(7) stimulation is able to increase the phosphorylation and subsequent IFN-β promoter occupancy of IRF-3, a transcription factor that is critical for IFN-β transcription by TLR agonists. This newly discovered role for P2RX(7) in IFN regulation may have implications in antimicrobial defense, which has been linked to P2RX(7) activation in other studies.

摘要

用细胞外 ATP 刺激 P2RX(7) 可以增强许多 LPS 诱导的促炎事件,包括巨噬细胞中细胞因子的诱导,但这一过程的分子机制尚不清楚。虽然已经提出 P2RX(7) 连接可以激活几种转录因子,但许多受 P2RX(7) 激活影响的 LPS 诱导介质不能仅由 P2RX(7) 激动剂诱导,这表明 P2RX(7) 在转录调节中具有互补作用。I 型 IFN 的产生,其表达受到多个转录因子的严格控制,这些转录因子形成一个增强子,对于抵抗含有 LPS 的细菌至关重要。嘌呤能受体信号对 LPS 依赖性 I 型 IFN 的影响尚不清楚,但对于多种炎症情况具有重要意义。本研究表明,用 P2RX(7) 激动剂刺激巨噬细胞可显著增强 LPS 诱导的 IFN-β 表达,而在不表达功能性 P2RX(7) 的巨噬细胞中或当 MAPK MEK1/2 途径被抑制时,这种增强作用被消除。P2RX(7) 刺激后增强 LPS 诱导的 IFN-β 表达可能是转录调节的,因为在 IFN-β 启动子水平观察到这种增强。此外,P2RX(7) 刺激能够增加 IFN-β 启动子结合的 IRF-3 的磷酸化和随后的 IFN-β 启动子结合,IRF-3 是 TLR 激动剂诱导 IFN-β 转录的关键转录因子。在其他研究中,P2RX(7) 激活与 IFN 调节有关,这一新发现的 P2RX(7) 在 IFN 调节中的作用可能具有抗微生物防御的意义。

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