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CCDC88B 对于树突状细胞的迁移和炎症功能是必需的。

CCDC88B is required for mobility and inflammatory functions of dendritic cells.

机构信息

Department of Biochemistry, McGill University, Montreal, Quebec, Canada.

McGill Research Center for Complex Traits, McGill University, Montreal, Quebec, Canada.

出版信息

J Leukoc Biol. 2020 Dec;108(6):1787-1802. doi: 10.1002/JLB.3A0420-386R. Epub 2020 Jun 1.

Abstract

The Coiled Coil Domain Containing Protein 88B (CCDC88B) gene is associated with susceptibility to several inflammatory diseases in humans and its inactivation in mice protects against acute neuroinflammation and models of intestinal colitis. We report that mice lacking functional CCDC88B (Ccdc88b ) are defective in several dendritic cells (DCs)-dependent inflammatory and immune reactions in vivo. In these mice, an inflammatory stimulus (LPS) fails to induce the recruitment of DCs into the draining lymph nodes (LNs). In addition, OVA-pulsed Ccdc88b DCs injected in the footpad do not induce recruitment and activation of antigen-specific CD4 and CD8 T cells in their draining LN. Experiments in vitro indicate that this defect is independent of the ability of mutant DCs to capture and present peptide antigen to T cells. Rather, kinetic analyses in vivo of wild-type and Ccdc88b DCs indicate a reduced migration capacity in the absence of the CCDC88B protein expression. Moreover, using time-lapse light microscopy imaging, we show that Ccdc88b DCs have an intrinsic motility defect. Furthermore, in vivo studies reveal that these reduced migratory properties lead to dampened contact hypersensitivity reactions in Ccdc88b mutant mice. These findings establish a critical role of CCDC88B in regulating movement and migration of DCs. Thus, regulatory variants impacting Ccdc88b expression in myeloid cells may cause variable degrees of DC-dependent inflammatory response in situ, providing a rationale for the genetic association of CCDC88B with several inflammatory and autoimmune diseases in humans.

摘要

卷曲螺旋结构域蛋白 88B(CCDC88B)基因与人的几种炎症性疾病的易感性相关,其在小鼠中的失活可保护其免受急性神经炎症和结肠炎模型的影响。我们报告称,缺乏功能性 CCDC88B(Ccdc88b)的小鼠在体内几种树突状细胞(DC)依赖性炎症和免疫反应中存在缺陷。在这些小鼠中,炎症刺激(LPS)未能诱导 DC 募集到引流淋巴结(LNs)中。此外,在足底注射 OVA 脉冲的 Ccdc88b DC 不会诱导其引流 LN 中抗原特异性 CD4 和 CD8 T 细胞的募集和激活。体外实验表明,这种缺陷与突变型 DC 捕获和呈递肽抗原给 T 细胞的能力无关。相反,体内对野生型和 Ccdc88b DC 的动力学分析表明,在缺乏 CCDC88B 蛋白表达的情况下,迁移能力降低。此外,使用延时显微镜成像,我们表明 Ccdc88b DC 具有内在的运动缺陷。此外,体内研究表明,这些迁移能力的降低导致 Ccdc88b 突变小鼠的接触超敏反应减弱。这些发现确立了 CCDC88B 在调节 DC 运动和迁移中的关键作用。因此,影响髓样细胞中 Ccdc88b 表达的调节变体可能导致 CCDC88B 与人类几种炎症性和自身免疫性疾病的遗传关联,导致局部 DC 依赖性炎症反应的程度不同。

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