JCI Insight. 2022 Apr 8;7(7):e151281. doi: 10.1172/jci.insight.151281.
Mechanisms governing entry and exit of immune cells into and out of inflamed joints remain poorly understood. We sought herein to identify the key molecular pathways regulating such migration. Using murine models of inflammation in conjunction with mice expressing a photoconvertible fluorescent protein, we characterized the migration of cells from joints to draining lymph nodes and performed RNA-Seq analysis on isolated cells, identifying genes associated with migration and retention. We further refined the gene list to those specific for joint inflammation. RNA-Seq data revealed pathways and genes previously highlighted as characteristic of rheumatoid arthritis in patient studies, validating the methodology. Focusing on pathways associated with cell migration, adhesion, and movement, we identified genes involved in the retention of immune cells in the inflamed joint, namely junctional adhesion molecule A (JAM-A), and identified a role for such molecules in T cell differentiation in vivo. Thus, using a combination of cell-tracking approaches and murine models of inflammatory arthritis, we identified genes, pathways, and anatomically specific tissue signatures regulating cell migration in a variety of inflamed sites. This skin- and joint-specific data set will be an invaluable resource for the identification of therapeutic targets for arthritis and other inflammatory disorders.
免疫细胞进入和离开炎症关节的机制仍知之甚少。我们在此旨在确定调节这种迁移的关键分子途径。我们使用炎症的小鼠模型以及表达光可转换荧光蛋白的小鼠,描述了细胞从关节到引流淋巴结的迁移,并对分离的细胞进行 RNA-Seq 分析,鉴定与迁移和保留相关的基因。我们进一步将基因列表缩小到与关节炎症特异性相关的基因。RNA-Seq 数据揭示了先前在患者研究中突出显示的与类风湿关节炎特征相关的途径和基因,验证了该方法的有效性。我们专注于与细胞迁移、黏附和运动相关的途径,鉴定了参与免疫细胞在炎症关节中保留的基因,即连接黏附分子 A(JAM-A),并确定了这些分子在体内 T 细胞分化中的作用。因此,我们使用细胞追踪方法和炎症性关节炎的小鼠模型,鉴定了调节各种炎症部位细胞迁移的基因、途径和解剖特异性组织特征。这个皮肤和关节特异性数据集将是确定关节炎和其他炎症性疾病治疗靶点的宝贵资源。