LIIPAT, Institute of Pathology, University of Oslo, Oslo, Norway.
Arterioscler Thromb Vasc Biol. 2013 Feb;33(2):e47-55. doi: 10.1161/ATVBAHA.112.253427. Epub 2012 Nov 15.
Interleukin (IL)-33 is a nuclear protein that is released from stressed or damaged cells to act as an alarmin. We investigated the effects of IL-33 on endothelial cells, using the prototype IL-1 family member, IL-1β, as a reference.
Human umbilical vein endothelial cells were stimulated with IL-33 or IL-1β, showing highly similar phosphorylation of signaling molecules, induction of adhesion molecules, and transcription profiles. However, intradermally injected IL-33 elicited significantly less proinflammatory endothelial activation when compared with IL-1β and led us to observe that quiescent endothelial cells (ppRb(low)p27(high)) were strikingly resistant to IL-33. Accordingly, the IL-33 receptor was preferentially expressed in nonquiescent cells of low-density cultures, corresponding to selective induction of adhesion molecules and chemokines. Multiparameter phosphoflow cytometry confirmed that signaling driven by IL-33 was stronger in nonquiescent cells. Manipulation of nuclear IL-33 expression by siRNA or adenoviral transduction revealed no functional link between nuclear, endogenous IL-33, and exogenous IL-33 responsiveness.
In contrast to other inflammatory cytokines, IL-33 selectively targets nonquiescent endothelial cells. By this novel concept, quiescent cells may remain nonresponsive to a proinflammatory stimulus that concomitantly triggers a powerful response in cells that have been released from contact inhibition.
白细胞介素(IL)-33 是一种核蛋白,从应激或受损细胞中释放出来,作为警报素发挥作用。我们以原型白细胞介素-1 家族成员白细胞介素-1β为参照,研究了白细胞介素-33 对血管内皮细胞的影响。
用人脐带静脉内皮细胞刺激白细胞介素-33 或白细胞介素-1β,发现信号分子的磷酸化、粘附分子的诱导和转录谱非常相似。然而,与白细胞介素-1β相比,皮内注射白细胞介素-33 引起的促炎内皮激活明显较少,这使我们观察到静止的内皮细胞(ppRb(low)p27(high))对白细胞介素-33 具有惊人的抗性。因此,白细胞介素-33 受体优先在低密度培养的非静止细胞中表达,对应于粘附分子和趋化因子的选择性诱导。多参数磷酸化流式细胞术证实,白细胞介素-33 驱动的信号在非静止细胞中更强。通过 siRNA 或腺病毒转导对核内白细胞介素-33 表达的操作表明,核内、内源性白细胞介素-33 和外源性白细胞介素-33 反应之间没有功能联系。
与其他炎症细胞因子不同,白细胞介素-33 选择性靶向非静止的内皮细胞。通过这一新概念,静止细胞可能对促炎刺激保持不反应,而这种刺激同时在已经脱离接触抑制的细胞中引发强大的反应。