Pediatric Oncology Branch, Center for Cancer Research, National Cancer Institute, Bethesda, MD 20892, USA.
Proc Natl Acad Sci U S A. 2013 May 7;110(19):E1761-70. doi: 10.1073/pnas.1222303110. Epub 2013 Apr 22.
Human soluble interleukin-7 receptor (sIL7R)α circulates in high molar excess compared with IL-7, but its biology remains unclear. We demonstrate that sIL7Rα has moderate affinity for IL-7 but does not bind thymic stromal lymphopoietin. Functionally, sIL7Rα competes with cell-associated IL-7 receptor to diminish excessive IL-7 consumption and, thus, enhances the bioactivity of IL-7 when the cytokine is limited, as it is presumed to be in vivo. IL-7 signaling in the presence of sIL7Rα also diminishes expression of CD95 and suppressor of cytokine signaling 1, both regulatory molecules. Murine models confirm diminished consumption of IL-7 in the presence of sIL7Rα and also demonstrate a potentiating effect of sIL7Rα on IL-7-mediated homeostatic expansion and experimental autoimmune encephalomyelitis exacerbation. In multiple sclerosis and several other autoimmune diseases, IL7R genotype influences susceptibility. We measured increased sIL7Rα levels, as well as increased IL-7 levels, in multiple sclerosis patients with the predisposing IL7R genotype, consistent with diminished IL-7 consumption in vivo. This work demonstrates that sIL7Rα potentiates IL-7 bioactivity and provides a basis to explain the increased risk of autoimmunity observed in individuals with genotype-induced elevations of sIL7Rα.
人可溶性白细胞介素-7 受体(sIL7R)α与白细胞介素-7 相比,循环中存在高摩尔过量,但它的生物学特性仍不清楚。我们证明 sIL7Rα 对白细胞介素-7 具有中等亲和力,但不结合胸腺基质淋 巴生成素。功能上,sIL7Rα与细胞相关的白细胞介素-7 受体竞争,以减少过度的白细胞介素-7 消耗,从而增强细胞因子有限时白细胞介素-7 的生物活性,因为人们认为细胞因子在体内是有限的。在存在 sIL7Rα 的情况下,白细胞介素-7 信号也会降低 CD95 和细胞因子信号转导抑制剂 1 的表达,这两种都是调节分子。鼠模型证实,sIL7Rα 的存在可减少白细胞介素-7 的消耗,并增强 sIL7Rα 对白细胞介素-7 介导的稳态扩张和实验性自身免疫性脑脊髓炎恶化的作用。在多发性硬化症和其他几种自身免疫性疾病中,IL7R 基因型影响易感性。我们测量了多发性硬化症患者中具有易感性 IL7R 基因型的患者中 sIL7Rα 水平的增加,以及白细胞介素-7 水平的增加,这与体内白细胞介素-7 消耗减少相一致。这项工作表明,sIL7Rα 增强了白细胞介素-7 的生物活性,并为解释具有基因型诱导的 sIL7Rα 升高的个体中观察到的自身免疫风险增加提供了依据。