Department of Immunology, The University of Texas M. D. Anderson Cancer Center, Houston, TX 77030, USA.
J Leukoc Biol. 2012 Sep;92(3):445-59. doi: 10.1189/jlb.0212052. Epub 2012 May 1.
DCs have a vital role in the immune system by recognizing exogenous or self-antigens and eliciting appropriate stimulatory or tolerogenic adaptive immune responses. DCs also contribute to human autoimmune disease and, when depleted, to immunodeficiency. Moreover, DCs are being explored for potential use in clinical therapies including cancer treatment. Thus, understanding the molecular mechanisms that regulate DCs is crucial to improving treatments for human immune disease and cancer. DCs constitute a heterogeneous population including plasmacytoid (pDC) and classic (cDC) subsets; however, the majority of DCs residing in lymphoid organs and peripheral tissues in steady state share common progenitor populations, originating with hematopoietic stem cells. Like other hematopoietic lineages, DCs require extracellular factors including cytokines, as well as intrinsic transcription factors, to control lineage specification, commitment, and maturation. Here, we review recent findings on the roles for cytokines and cytokine-activated STAT transcription factors in DC subset development. We also discuss how cytokines and STATs intersect with lineage-regulatory transcription factors and how insight into the molecular basis of human disease has revealed transcriptional regulators of DCs. Whereas this is an emerging area with much work remaining, we anticipate that knowledge gained by delineating cytokine and transcription factor mechanisms will enable a better understanding of DC subset diversity, and the potential to manipulate these important immune cells for human benefit.
树突状细胞(DCs)通过识别外源性或自身抗原,并引发适当的刺激或耐受适应性免疫反应,在免疫系统中发挥着至关重要的作用。DCs 也与人类自身免疫性疾病有关,在耗尽时会导致免疫缺陷。此外,DCs 也正在被探索用于临床治疗,包括癌症治疗。因此,了解调节 DCs 的分子机制对于改善人类免疫性疾病和癌症的治疗至关重要。DCs 构成一个异质性群体,包括浆细胞样(pDC)和经典(cDC)亚群;然而,在稳态下存在于淋巴器官和外周组织中的大多数 DC 共享共同的祖细胞群体,起源于造血干细胞。与其他造血谱系一样,DCs 需要细胞外因子,包括细胞因子,以及内在的转录因子来控制谱系特异性、承诺和成熟。在这里,我们回顾了细胞因子和细胞因子激活的 STAT 转录因子在 DC 亚群发育中的作用的最新发现。我们还讨论了细胞因子和 STATs 如何与谱系调节转录因子相互作用,以及对人类疾病分子基础的深入了解如何揭示了 DCs 的转录调节剂。尽管这是一个新兴的领域,还有很多工作要做,但我们预计,通过描绘细胞因子和转录因子机制获得的知识将使我们更好地理解 DC 亚群的多样性,并有可能为人类利益操纵这些重要的免疫细胞。