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首页> 外文期刊>The journal of immunology >Mammalian Clock Gene Cryptochrome Regulates Arthritis via Proinflammatory Cytokine TNF-α
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Mammalian Clock Gene Cryptochrome Regulates Arthritis via Proinflammatory Cytokine TNF-α

机译:哺乳动物时钟基因隐色素通过促炎性细胞因子TNF-α调节关节炎。

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The mammalian clock genes, Period and Cryptochrome ( Cry ), regulate circadian rhythm. We show that circadian rhythmicity and rhythmic expression of Period in the nuclei of inflammatory synovial cells and spleen cells are disturbed in mouse models of experimental arthritis. Expressions of other clock genes, Bmal1 and Dbp , are also disturbed in spleen cells by arthritis induction. Deletion of Cry1 and Cry2 results in an increase in the number of activated CD3+ CD69+ T cells and a higher production of TNF-α from spleen cells. When arthritis is induced, Cry1?/?Cry2?/? mice develop maximal exacerbation of joint swelling, and upregulation of essential mediators of arthritis, including TNF-α, IL-1β and IL-6, and matrix metalloproteinase-3. Wee-1 kinase is solely upregulated in Cry1?/?Cry2?/? mice, in line with upregulation of c-Fos and Wee-1 kinase in human rheumatoid arthritis. The treatment with anti–TNF-α Ab significantly reduced the severity and halted the progression of the arthritis of Cry1?/?Cry2?/? mice and vice versa, ectopic expression of Cry1 in the mouse embryonic fibroblast from Cry1?/?Cry2?/? mice significantly reduced the trans activation of TNF-α gene. Thus, the biological clock and arthritis influence each other, and this interplay can influence human health and disease.
机译:哺乳动物时钟基因,Period和Cryptochrome(Cry)调节昼夜节律。我们表明,在实验性关节炎的小鼠模型中,昼夜节律和周期的节律性表达在炎性滑膜细胞和脾细胞核中受到干扰。脾脏细胞中的其他时钟基因Bmal1和Dbp的表达也受到关节炎诱导的干扰。 Cry1和Cry2的缺失导致活化的CD3 + CD69 + T细胞数量增加,脾细胞中TNF-α的产量更高。当诱发关节炎时,Cry1α/βCry2α/β。小鼠最大程度地加剧了关节肿胀,并上调了关节炎的主要介导因子,包括TNF-α,IL-1β和IL-6和基质金属蛋白酶-3。 Wee-1激酶仅在Cry1α/βCry2α/β中被上调。符合人类类风湿关节炎中c-Fos和Wee-1激酶的上调。抗TNF-αAb的治疗可显着降低Cry1?/?Cry2?/?关节炎的严重程度并中止其进展。小鼠,反之亦然,Cry1在小鼠胚胎成纤维细胞中异位表达。小鼠明显降低了TNF-α基因的反式激活。因此,生物钟和关节炎相互影响,并且这种相互作用可以影响人类健康和疾病。

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