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同二聚化减弱白细胞介素-37的抗炎活性。

Homodimerization attenuates the anti-inflammatory activity of interleukin-37.

作者信息

Ellisdon Andrew M, Nold-Petry Claudia A, D'Andrea Laura, Cho Steven X, Lao Jason C, Rudloff Ina, Ngo Devi, Lo Camden Y, Soares da Costa Tatiana P, Perugini Matthew A, Conroy Paul J, Whisstock James C, Nold Marcel F

机构信息

Biomedicine Discovery Institute and Department of Biochemistry and Molecular Biology, Monash University, Melbourne, Victoria 3800, Australia.

Australian Research Council Centre of Excellence in Advanced Molecular Imaging, Monash University, Melbourne, Victoria 3800, Australia.

出版信息

Sci Immunol. 2017 Feb 10;2(8). doi: 10.1126/sciimmunol.aaj1548.

Abstract

Dysregulation of the inflammatory response underlies numerous diseases. Although most interleukin-1 family cytokines are proinflammatory, human interleukin-37 (IL-37) is a powerful, broad-spectrum inhibitor of inflammation and immunity. We determined the crystal structure of IL-37 to establish the anti-inflammatory mechanism of this key cytokine in view of developing IL-37-based therapies. We found that two β-trefoil fold IL-37 molecules form a head-to-head dimer that is stable in solution. IL-37 variants mutated to convert the cytokine into an obligate monomer were up to 13-fold more effective than the dimer in suppressing proinflammatory events both in primary human blood cells and in vivo in murine endotoxic shock. Therapeutic exploitation of the powerful anti-inflammatory properties of monomeric IL-37 may prove beneficial in treating a wide range of inflammatory and autoimmune disorders.

摘要

炎症反应失调是众多疾病的根源。尽管大多数白细胞介素-1家族细胞因子具有促炎作用,但人白细胞介素-37(IL-37)是一种强大的、广谱的炎症和免疫抑制剂。为了开发基于IL-37的疗法,我们确定了IL-37的晶体结构,以建立这种关键细胞因子的抗炎机制。我们发现,两个具有β-三叶折叠的IL-37分子形成头对头二聚体,该二聚体在溶液中稳定。在原代人血细胞和小鼠内毒素休克的体内实验中,经突变转化为强制单体的IL-37变体在抑制促炎事件方面比二聚体有效多达13倍。对单体IL-37强大抗炎特性的治疗性开发可能对治疗多种炎症和自身免疫性疾病有益。

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