Allman David, Dalod Marc, Asselin-Paturel Carine, Delale Thomas, Robbins Scott H, Trinchieri Giorgio, Biron Christine A, Kastner Philippe, Chan Susan
Department of Pathology and Laboratory Medicine, University of Pennsylvania, Philadelphia, USA.
Blood. 2006 Dec 15;108(13):4025-34. doi: 10.1182/blood-2006-03-007757. Epub 2006 Aug 15.
Plasmacytoid dendritic cells (pDCs) are specialized DCs that produce high levels of type I IFN upon viral infection. Despite their key immunoregulatory role, little is known about pDC ontogeny or how developmental events regulate their function. We show that mice expressing low levels of the transcription factor Ikaros (Ik(L/L)) lack peripheral pDCs, but not other DC subsets. Loss of pDCs is associated with an inability to produce type I IFN after challenge with Toll-like receptor-7 and -9 ligands, or murine cytomegalovirus (MCMV) infection. In contrast, conventional DCs are present in normal numbers and exhibit normal responses in vivo after challenge with MCMV or inactivated toxoplasma antigen. Interestingly, Ik(L/L) bone marrow (BM) cells contain a pDC population that appears blocked at the Ly-49Q- stage of differentiation and fails to terminally differentiate in response to Flt-3L, a cytokine required for pDC differentiation. This differentiation block is strictly dependent on a cell-intrinsic requirement for Ikaros in pDC-committed precursors. Global gene expression profiling of Ik(L/L) BM pDCs reveals an up-regulation of genes not normally expressed, or expressed at low levels, in WT pDCs. These studies suggest that Ikaros controls pDC differentiation by silencing a large array of genes.
浆细胞样树突状细胞(pDC)是一种特殊的树突状细胞,在病毒感染时可产生高水平的I型干扰素。尽管它们具有关键的免疫调节作用,但关于pDC的个体发生或发育事件如何调节其功能却知之甚少。我们发现,表达低水平转录因子Ikaros(Ik(L/L))的小鼠缺乏外周pDC,但其他树突状细胞亚群不受影响。pDC的缺失与在用Toll样受体-7和-9配体刺激后或感染鼠巨细胞病毒(MCMV)后无法产生I型干扰素有关。相比之下,常规树突状细胞数量正常,在用MCMV或灭活的弓形虫抗原刺激后,在体内表现出正常反应。有趣的是,Ik(L/L)骨髓(BM)细胞中含有一个pDC群体,该群体似乎在Ly-49Q-分化阶段受阻,并且在对pDC分化所需的细胞因子Flt-3L作出反应时无法终末分化。这种分化阻滞严格依赖于pDC定向前体细胞中Ikaros的细胞内在需求。对Ik(L/L) BM pDC进行全基因组表达谱分析发现,在野生型pDC中通常不表达或低表达的基因上调。这些研究表明,Ikaros通过沉默大量基因来控制pDC的分化。