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白细胞介素-6 受体依赖性分子开关通过 gp130 蛋白受体同源二聚体介导白细胞介素-27 细胞因子亚基 p28(白细胞介素-30)的信号转导。

An interleukin-6 receptor-dependent molecular switch mediates signal transduction of the IL-27 cytokine subunit p28 (IL-30) via a gp130 protein receptor homodimer.

机构信息

Institute of Biochemistry and Molecular Biology II, Medical Faculty, Heinrich-Heine University, 40225 Düsseldorf, Germany.

出版信息

J Biol Chem. 2013 Feb 8;288(6):4346-54. doi: 10.1074/jbc.M112.432955. Epub 2012 Dec 3.

DOI:10.1074/jbc.M112.432955
PMID:23209286
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3567685/
Abstract

IL-27 consists of the cytokine subunit p28 and the non-signaling α-receptor EBI3. p28 was shown to additionally act via the non-signaling membrane-bound IL-6 α-receptor (IL-6R) as an agonistic cytokine but also as a gp130 β-receptor antagonist, leading to inhibition of IL-6 signaling. Here, we developed a strategy for bacterial expression, purification, and refolding of murine p28. We show that p28 did not interfere with IL-6- or IL-27-induced signaling, indicating that p28 has no antagonistic properties. Moreover, we demonstrate that murine p28 acts as an agonistic cytokine via the murine and human IL-6R, indicating that p28 exhibits no species specificity. p28 was able to induce p28-trans-signaling via the soluble IL-6R (sIL-6R), a characteristic property that was initially described for trans-signaling of IL-6 via the sIL-6R. Of notice, p28/sIL-6R trans-signaling was inhibited by the IL-6 trans-signaling antagonist, soluble gp130. At higher concentrations, p28 but not IL-6 was able to induce signaling even in the absence of IL-6R or EBI3. Although IL-27 signals via a heterodimer of the β-receptor chains gp130 and Wsx-1, p28/IL-6R specifically recruits two gp130 β-receptor chains for signal transduction. The binding of p28 to a gp130/Wsx-1 heterodimer or a gp130 homodimer is highly selective and controlled by a novel molecular switch induced by EBI3 or IL-6R, respectively.

摘要

白细胞介素-27 由细胞因子亚基 p28 和非信号传导 EBI3 组成。已经表明,p28 还可以通过非信号传导的膜结合白细胞介素-6 α-受体(IL-6R)作为激动性细胞因子发挥作用,但也作为 gp130 β-受体拮抗剂,导致 IL-6 信号传导的抑制。在这里,我们开发了一种用于细菌表达、纯化和重折叠鼠 p28 的策略。我们表明,p28 不会干扰 IL-6 或 IL-27 诱导的信号,表明 p28 没有拮抗作用。此外,我们证明鼠 p28 通过鼠和人 IL-6R 作为激动性细胞因子发挥作用,表明 p28 没有种属特异性。p28 能够通过可溶性 IL-6R(sIL-6R)诱导 p28 转信号,这是最初描述的 IL-6 通过 sIL-6R 进行转信号的特征性质。值得注意的是,p28/sIL-6R 转信号被 IL-6 转信号拮抗剂可溶性 gp130 抑制。在较高浓度下,p28 但不是 IL-6 即使在没有 IL-6R 或 EBI3 的情况下也能够诱导信号。尽管白细胞介素-27 通过β-受体链 gp130 和 Wsx-1 的异二聚体信号传导,但 p28/IL-6R 特异性招募两个 gp130 β-受体链进行信号转导。p28 与 gp130/Wsx-1 异二聚体或 gp130 同二聚体的结合具有高度选择性,并分别由 EBI3 或 IL-6R 诱导的新型分子开关控制。

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