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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Upregulated PKM2 in Macrophages Exacerbates Experimental Arthritis via STAT1 Signaling
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Upregulated PKM2 in Macrophages Exacerbates Experimental Arthritis via STAT1 Signaling

机译:巨噬细胞上调的PKM2通过Stat1信号传导加剧了实验性关节炎

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摘要

Recent studies indicate that glucose metabolism is altered in rheumatoid arthritis. We hypothesize that Pkm2, as a key regulatory enzyme of glycolysis pathway, triggers the activation of macrophages (M phi), which results in proinflammatory cytokine production during the arthritis progress. In this study, Pkm2 was found to be overexpressed in ED1-positive M phi in spleens and synovial tissues from arthritic rats via immunofluorescence, Western blotting, and quantitative RT-PCR. To reveal the role of Pkm2, Dark Agouti rats were treated with either Pkm2 enzyme inhibitor shikonin or the RNA interference plasmids of Pkm2 and negative control plasmids, respectively, via i.p. injection. Pkm2 intervention could alleviate the severity of pristane-induced arthritis in aspects of the macroscopic arthritis score, perimeter changes of midpaw, and the synovitis and destruction of the bone and cartilage as well as reduce the ED1 and p-Stat1-positive cell population in rat synovial tissues. Silencing Pkm2 by RNA interference in classical activated rat and mouse M phi resulted in less Tnf-alpha, n-1 beta production via Stat1 signaling. Collectively, Pkm2 is highly expressed in ED1-positive M phi of spleens and synovial tissues from arthritic rats and promotes M phi activation via Stat1 signaling. Pkm2 might be a promising selective metabolic target molecule for rheumatoid arthritis treatment.
机译:最近的研究表明葡萄糖代谢在类风湿性关节炎中改变。我们假设PKM2作为糖酵解途径的关键调节酶,触发巨噬细胞(MPHI)的激活,这导致在关节炎进展过程中产生促炎细胞因子产生。在该研究中,发现PKM2在脾脏中的ED1阳性M PHI中过表达,通过免疫荧光,蛋白质印迹和定量RT-PCR从关节炎大鼠的Sygovial组织中过表达。为了揭示PKM2的作用,通过I.P分别用PKM2酶抑制剂Shikonin或PKM2和阴性对照质粒的RNA干扰质粒治疗黑暗刺豚鼠。注射。 PKM2干预可以缓解丙氨酸关节炎评分的各个方面,中间粥样长的周围变化以及骨和软骨的突变和破坏以及降低大鼠的ED1和P-Stat1阳性细胞群体中的常见性关节炎的严重程度。滑膜组织。通过RNA干扰在经典活性大鼠和小鼠MPHI中沉默的PKM2导致较少的TNF-α,N-1β通过Stat1信号传导产生。共同地,PKM2在脾脏和来自关节炎大鼠的滑膜组织的ED1阳性M PHI中高度表达,并通过Stat1信号传导促进MPHI活化。 PKM2可能是对类风湿性关节炎治疗的有前途的选择性代谢靶分子。

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