Mori Hiroki, Nakanishi Tohru
Molecular Biology and Molecular Diagnosis, Shujitsu University School of Pharmacy, Okayama City, Japan.
Yakugaku Zasshi. 2008 Feb;128(2):263-8. doi: 10.1248/yakushi.128.263.
Recent advances in post-genomic technology enable us to analyze gene expression and protein modification comprehensively in tissues and cells, resulting in new developments in the analysis of molecular events of diseases. We have been studying the pathogenic and progressive mechanisms of diseases from the aspect of signalling pathways of cells. Inflammatory cytokines such as TNF-alpha and IL-1 produced from activated macrophages stimulate the overgrowth of synoviocytes and induce osteoclast differentiation in rheumatoid arthritis (RA). As a consequence, cartilage and bone destruction in joints is observed in RA patients. Recently, the pathogenic mechanisms are beginning to be discussed at the molecular level. For example, up-regulation of synoviolin, an ER-localizing E3 ubiquitin ligase, in synoviocytes is involved in RA because rheumatoid synoviocytes produce synoviolin and overexpression of human synoviolin in mice causes arthropathy. So far little is known about ligands inducing arthropathy and their receptors in the disease. We characterized rheumatoid synoviocytes by profiling gene expression with genome-wide DNA chips, and found that a cluster antigen is involved in the proteins up-regulated in rheumatoid synoviocytes. We have been analyzing the relationship between synoviolin expression and the activation of cluster antigen. The cluster antigen and its signal pathways could become a novel therapeutic target for RA. We discuss the possibility of direct induction of synoviolin expression via activation of signal pathways directed by the cluster antigen in RA synoviocytes.
后基因组技术的最新进展使我们能够在组织和细胞中全面分析基因表达和蛋白质修饰,从而在疾病分子事件分析方面取得了新进展。我们一直在从细胞信号通路的角度研究疾病的致病和进展机制。活化巨噬细胞产生的肿瘤坏死因子-α和白细胞介素-1等炎性细胞因子会刺激类风湿关节炎(RA)患者滑膜细胞过度生长并诱导破骨细胞分化。结果,在RA患者中观察到关节软骨和骨破坏。最近,致病机制开始在分子水平上进行讨论。例如,滑膜素是一种内质网定位的E3泛素连接酶,滑膜细胞中滑膜素的上调与RA有关,因为类风湿滑膜细胞会产生滑膜素,而在小鼠中过表达人滑膜素会导致关节病。到目前为止,对于该疾病中诱导关节病的配体及其受体知之甚少。我们通过用全基因组DNA芯片分析基因表达来表征类风湿滑膜细胞,发现一种簇抗原与类风湿滑膜细胞中上调的蛋白质有关。我们一直在分析滑膜素表达与簇抗原激活之间的关系。簇抗原及其信号通路可能成为RA的新型治疗靶点。我们讨论了通过激活RA滑膜细胞中由簇抗原引导的信号通路直接诱导滑膜素表达的可能性。