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Modulation of Signaling Molecules by Human Leucocyte Antigen B27; Special Reference to STAT1

机译:人类白细胞抗原B27对信号分子的调节STAT1的特殊参考

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摘要

Reactive arthritis (ReA) is an inflammatory joint disease, which belongs to the group of Spondyloarthritis (SpA). It may occur after infections with certain gram-negative bacteria such as Salmonella and Yersinia. SpAs are strongly associated with the human leucocyte antigen (HLA)-B27. Despite active research, the mechanism by which HLA-B27 causes disease susceptibility is still unknown. However, HLA-B27 has a tendency to misfold during assembly. It is possible that the misfolding of HLA-B27 could alter signaling pathways and/or molecules involved in inflammatory response in cells. We have earlier discovered that in HLA-B27-positive cells the interaction between the host and causative bacteria is disturbed. Our recent studies indicate that the expression of HLA-B27 may alter certain signaling molecules by disturbing their activation.The aim of this study was to investigate whether the expression of HLA-B27 disturbs the signaling molecules, especially the phosphorylation of transcription factor STAT1. STAT1 is an important mediator of inflammatory responses. Our results show that the phosphorylation of the STAT1 is significantly altered in HLA-B27-expressing U937 monocytic cells compared with control cells. STAT1 tyrosine 701 is more strongly phosphorylated in HLAB27- expressing cells; whereas the phosphorylation of STAT1 serine 727 is prolonged. Phosphorylation of STAT1 was discovered to be dependent on protein kinase PKR. Furthermore, we found out that the expression of posttranscriptional gene regulator HuR was altered in HLA-B27-expressing cells. We also detected that HLA-B27-positive cells secrete more interleukin 6, which is an important mediator of inflammation. These results help to understand how HLA-B27 may confer susceptibility to SpAs.
机译:反应性关节炎(ReA)是一种炎性关节疾病,属于脊椎关节炎(SpA)组。它可能在感染某些革兰氏阴性细菌(如沙门氏菌和耶尔森氏菌)后发生。 SpAs与人类白细胞抗原(HLA)-B27密切相关。尽管进行了积极的研究,但HLA-B27引起疾病易感性的机制仍然未知。但是,HLA-B27在组装过程中会出现错误折叠的趋势。 HLA-B27的错误折叠可能会改变细胞炎症反应中涉及的信号传导途径和/或分子。我们较早地发现,在HLA-B27阳性细胞中,宿主与致病细菌之间的相互作用受到干扰。我们最近的研究表明,HLA-B27的表达可能通过干扰某些信号传导分子的激活而改变。本研究的目的是研究HLA-B27的表达是否干扰信号传导分子,尤其是转录因子STAT1的磷酸化。 STAT1是炎症反应的重要介质。我们的结果表明,与对照细胞相比,在表达HLA-B27的U937单核细胞中STAT1的磷酸化显着改变。 STAT1酪氨酸701在表达HLAB27的细胞中更强烈地被磷酸化。 STAT1丝氨酸727的磷酸化得以延长。发现STAT1的磷酸化依赖于蛋白激酶PKR。此外,我们发现转录后基因调节剂HuR的表达在表达HLA-B27的细胞中发生了改变。我们还检测到HLA-B27阳性细胞分泌更多的白介素6,这是炎症的重要介质。这些结果有助于了解HLA-B27如何赋予SpA敏感性。

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    Ruuska Marja;

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