INSERM, U643, CHU Nantes, Institut de Transplantation et de Recherche en Transplantation, ITERT, and Université de Nantes, Faculté de Médecine, Nantes, France.
J Leukoc Biol. 2010 Sep;88(3):507-15. doi: 10.1189/jlb.1109738. Epub 2010 May 25.
DCs play a central role in the development of innate and adaptive immunity but also in the induction and maintenance of immune tolerance. Identification of factors that govern DC activation, their maturation state, and their capacity to induce proinflammatory or tolerogeneic responses therefore represents a crucial aim of research. We previously identified a new molecule, Tmem176B (which we named TORID initially), as highly expressed in a model of allograft tolerance in the rat. We showed that its overexpression in rat DCs blocked their maturation, suggesting a role for this molecule in the maturation process. To characterize the function of Tmem176B further, we used a split-ubiquitin yeast, two-hybrid system to identify interacting partners and found that Tmem176B associated with itself but also with Tmem176A, a membrane protein similar to Tmem176B. Interestingly, these two molecules showed similar mRNA expression patterns among various murine tissues and immune cells and were both down-regulated following DC maturation. In addition, we showed that in using RNAi, these molecules are both involved in the maintenance of the immature state of the DCs. Taken together, these data suggest that Tmem176B and Tmem176A associate to form multimers and restrain DC maturation. Therefore, these two molecules may represent valid targets to regulate DC function.
树突状细胞 (DCs) 在先天和适应性免疫的发展中发挥核心作用,但也在诱导和维持免疫耐受中发挥作用。因此,确定控制 DC 激活、成熟状态及其诱导促炎或耐受反应能力的因素是研究的关键目标。我们之前在大鼠同种异体移植耐受模型中鉴定了一种新分子 Tmem176B(我们最初将其命名为 TORID),该分子在该模型中高度表达。我们表明,其在大鼠 DC 中的过表达阻止了它们的成熟,这表明该分子在成熟过程中发挥作用。为了进一步表征 Tmem176B 的功能,我们使用了一种分裂泛素酵母双杂交系统来鉴定相互作用的伙伴,并发现 Tmem176B 与自身以及与 Tmem176A 相关,Tmem176A 是一种类似于 Tmem176B 的膜蛋白。有趣的是,这两个分子在各种鼠组织和免疫细胞中的 mRNA 表达模式相似,并且在 DC 成熟后均下调。此外,我们表明,在使用 RNAi 时,这两个分子都参与维持 DC 的未成熟状态。总之,这些数据表明 Tmem176B 和 Tmem176A 形成多聚体并抑制 DC 成熟。因此,这两个分子可能代表调节 DC 功能的有效靶点。