Flores Rafael R, Kim Eun, Zhou Liqiao, Yang Chenjie, Zhao Jing, Gambotto Andrea, Robbins Paul D
Department of Metabolism and Aging, The Scripps Research Institute, Jupiter, FL, USA.
Departments of Surgery, University of Pittsburgh, Pittsburgh, PA, USA.
Eur J Immunol. 2015 Nov;45(11):3114-25. doi: 10.1002/eji.201445403. Epub 2015 Sep 1.
The IL-12 family of heterodimeric cytokines, consisting of IL-12, IL-23, IL-27, and IL-35, has important roles in regulating the immune response. IL-12 family members are comprised of a heterodimer consisting of α and β chains: IL-12 (p40 and p35), IL-23 (p40 and p19), IL-27 (Ebi3 and p28), and IL-35 (Ebi3 and p35). Given the combinatorial nature of the IL-12 family, we generated adenoviral vectors expressing two putative IL-12 family members not yet found naturally, termed IL-X (Ebi3 and p19) and IL-Y (p40 and p28), as single-chain molecules. Single chain IL-Y (scIL-Y), but not scIL-X, was able to stimulate significantly a unique cytokine/chemokine expression profile as well as activate STAT3 in mice, in part, through a pathway involving IL-27Rα in splenocytes. Adenoviral-mediated, intratumoral delivery of scIL-Y increased tumor growth in contrast to the anti-tumor effects of scIL-12 and scIL-23. Similarly, treatment of prediabetic NOD mice by intravenous injection of Ad.scIL-Y prevented the onset of hyperglycemia. Analysis of cells from Ad.scIL-Y-treated NOD mice demonstrated that scIL-Y reduced expression of inflammatory mediators such as IFN-γ. Our data demonstrate that a novel, synthetic member of the IL-12 family, termed IL-Y, confers unique immunosuppressive effects in two different disease models and thus could have therapeutic applications.
由白细胞介素-12(IL-12)、白细胞介素-23(IL-23)、白细胞介素-27(IL-27)和白细胞介素-35(IL-35)组成的异源二聚体细胞因子白细胞介素-12家族在调节免疫反应中起重要作用。白细胞介素-12家族成员由α链和β链组成的异源二聚体构成:IL-12(p40和p35)、IL-23(p40和p19)、IL-27(Ebi3和p28)以及IL-35(Ebi3和p35)。鉴于白细胞介素-12家族的组合性质,我们构建了腺病毒载体,以单链分子形式表达两种尚未在自然界中发现的假定白细胞介素-12家族成员,分别称为IL-X(Ebi3和p19)和IL-Y(p40和p28)。单链IL-Y(scIL-Y)而非scIL-X能够显著刺激独特的细胞因子/趋化因子表达谱,并部分通过涉及脾细胞中IL-27Rα的途径激活小鼠体内的信号转导和转录激活因子3(STAT3)。与scIL-12和scIL-23的抗肿瘤作用相反,腺病毒介导的scIL-Y瘤内递送促进了肿瘤生长。同样,通过静脉注射Ad.scIL-Y治疗糖尿病前期非肥胖糖尿病(NOD)小鼠可预防高血糖症的发生。对Ad.scIL-Y治疗的NOD小鼠的细胞分析表明,scIL-Y降低了诸如γ干扰素等炎症介质的表达。我们的数据表明,白细胞介素-12家族的一种新型合成成员IL-Y在两种不同的疾病模型中具有独特的免疫抑制作用,因此可能具有治疗应用价值。