Department of Biological Chemistry, The Hebrew University of Jerusalem, Jerusalem, Israel.
PLoS One. 2011;6(12):e28727. doi: 10.1371/journal.pone.0028727. Epub 2011 Dec 9.
The purpose of our study was to understand if Toll-like receptor 9 (TLR9) activation could contribute to the control of inflammation in Sjogren's syndrome. To this end, we manipulated TLR9 signaling in non-obese diabetic (NOD) and TLR9(-/-) mice using agonistic CpG oligonucleotide aptamers, TLR9 inhibitors, and the in-house oligonucleotide BL-7040. We then measured salivation, inflammatory response markers, and expression of proteins downstream to NF-κB activation pathways. Finally, we labeled proteins of interest in salivary gland biopsies from Sjogren's syndrome patients, compared to Sicca syndrome controls. We show that in NOD mice BL-7040 activates TLR9 to induce an alternative NF-κB activation mode resulting in increased salivation, elevated anti-inflammatory response in salivary glands, and reduced peripheral AChE activity. These effects were more prominent and also suppressible by TLR9 inhibitors in NOD mice, but TLR9(-/-) mice were resistant to the salivation-promoting effects of CpG oligonucleotides and BL-7040. Last, salivary glands from Sjogren's disease patients showed increased inflammatory and decreased anti-inflammatory biomarkers, in addition to decreased levels of alternative NF-κB pathway proteins. In summary, we have demonstrated that activation of TLR9 by BL-7040 leads to non-canonical activation of NF-κB, promoting salivary functioning and down-regulating inflammation. We propose that BL-7040 could be beneficial in treating Sjogren's syndrome and may be applicable to additional autoimmune syndromes.
我们的研究目的是了解 Toll 样受体 9(TLR9)的激活是否有助于控制干燥综合征的炎症。为此,我们使用 TLR9 激动性 CpG 寡核苷酸适体、TLR9 抑制剂和内部寡核苷酸 BL-7040 来操纵非肥胖型糖尿病(NOD)和 TLR9(-/-)小鼠中的 TLR9 信号。然后,我们测量了唾液分泌、炎症反应标志物以及 NF-κB 激活途径下游蛋白的表达。最后,我们标记了干燥综合征患者唾液腺活检中的感兴趣蛋白,并与干燥综合征对照组进行了比较。我们表明,BL-7040 在 NOD 小鼠中激活 TLR9 可诱导替代 NF-κB 激活模式,导致唾液分泌增加、唾液腺抗炎反应升高和外周 AChE 活性降低。这些影响在 NOD 小鼠中更为明显,并且可以被 TLR9 抑制剂抑制,但 TLR9(-/-)小鼠对 CpG 寡核苷酸和 BL-7040 的促唾液作用具有抗性。最后,干燥病患者的唾液腺显示出增加的炎症和减少的抗炎生物标志物,以及替代 NF-κB 途径蛋白水平降低。总之,我们已经证明 BL-7040 激活 TLR9 导致 NF-κB 的非经典激活,促进唾液功能并下调炎症。我们提出 BL-7040 可能有益于治疗干燥综合征,并且可能适用于其他自身免疫性综合征。