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硫代磷酸酯寡脱氧核苷酸的致关节炎和免疫刺激特性依赖于耐核酸酶骨架和CpG基序活性之间的协同作用。

The arthritogenic and immunostimulatory properties of phosphorothioate oligodeoxynucleotides rely on synergy between the activities of the nuclease-resistant backbone and CpG motifs.

作者信息

Bjersing Jan L, Eriksson Kristina, Tarkowski Andrej, Collins L Vincent

机构信息

Department of Rheumatology and Inflammation Research, University of Göteborg, Sweden.

出版信息

Inflammation. 2004 Feb;28(1):39-51. doi: 10.1023/b:ifla.0000014710.44475.94.

Abstract

Experiments with immunostimulatory unmethylated CpG-containing DNA are usually conducted with nuclease-protected phosphorothioate oligodeoxynucleotides (S-ODNs), rather than phosphodiester oligodeoxynucleotides (O-ODNs). We compared the murine immune responses to S-ODNs and O-ODNs that either contained or lacked CpG motifs. Both CpG and non-CpG S-ODNs induced synovitis, as did sequence-matched CpG O-ODN, but not GpC O-ODN. There was a minimum length requirement for arthritogenic S-ODNs since a CpC dinucleotide S-ODN did not induce arthritis. There were both sequence- (CpG > non-CpG) and backbone-dependent (S-ODN > O-ODN) differences in the levels of DNA-induced arthritis upon intra-articular injection with the ODNs. However, CpG O-ODN being an exception, induced more severe arthritis than the GpC S-ODN. The levels of in vitro proliferation and production of IL-6, TNF-alpha, IL-12, and RANTES by splenocytes following exposure to CpG S-ODN were significantly higher than those induced by CpG O-ODN. In addition, both proliferative responses and cytokine production induced by S-ODN-stimulated splenocytes increased significantly when the S-ODN contained a CpG motif. Transcription factor NFkappaB was activated by both CpG S-ODN and CpG O-ODN but interestingly not by GpC S-ODN. This indicates that the NFkappaB signal pathway modulates CpG-mediated immunostimulation, while sequence-independent immune activation by the phosphorothioate backbone is probably signalled via a different pathway.

摘要

免疫刺激含未甲基化CpG的DNA的实验通常使用核酸酶保护的硫代磷酸酯寡脱氧核苷酸(S-ODN)进行,而不是磷酸二酯寡脱氧核苷酸(O-ODN)。我们比较了小鼠对含有或缺乏CpG基序的S-ODN和O-ODN的免疫反应。CpG和非CpG S-ODN均诱导滑膜炎,与序列匹配的CpG O-ODN一样,但GpC O-ODN则不会。致关节炎性S-ODN存在最小长度要求,因为CpC二核苷酸S-ODN不会诱导关节炎。关节内注射ODN后,DNA诱导的关节炎水平存在序列依赖性(CpG>非CpG)和骨架依赖性(S-ODN>O-ODN)差异。然而,CpG O-ODN是个例外,它诱导的关节炎比GpC S-ODN更严重。暴露于CpG S-ODN后,脾细胞体外增殖以及IL-6、TNF-α、IL-12和RANTES的产生水平显著高于CpG O-ODN诱导的水平。此外,当S-ODN含有CpG基序时,S-ODN刺激的脾细胞诱导的增殖反应和细胞因子产生均显著增加。转录因子NFκB被CpG S-ODN和CpG O-ODN激活,但有趣的是未被GpC S-ODN激活。这表明NFκB信号通路调节CpG介导的免疫刺激,而硫代磷酸酯骨架的非序列依赖性免疫激活可能通过不同的途径发出信号。

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