Department of Immunology, Erasmus University Medical Center, 3015 GE Rotterdam, The Netherlands.
J Immunol. 2011 Nov 15;187(10):5069-76. doi: 10.4049/jimmunol.1101880. Epub 2011 Oct 12.
The critical role of Langerhans cells (LC) in contact hypersensitivity (CHS) was recently questioned in studies using different LC-depletion mouse models. On one hand, inducible ablation of LC led to diminished ear swelling, suggesting functional redundancy between LC and (Langerin(+)) dermal dendritic cells (DC). On the other hand, constitutive or acute depletion of LC resulted in an enhanced reaction, supporting a regulatory role of LC in CHS. To address this controversy by conditional gene targeting, we generated Langerin-Cre knockin mice. Breeding these mice to a Cre-reporter strain demonstrated robust and specific DNA recombination in LC, as well as other Langerin(+) tissue DC. In agreement with the vital requirement of TGF-β signaling for LC development, crossing Langerin-Cre to mice homozygous for a loxP-flanked TGF-βR1 allele resulted in permanent LC deficiency, whereas the homeostasis of dermal Langerin(+) DC was unaffected. In the absence of LC, induction of CHS in these Langerin(+) DC-specific TGF-βR1-deficient mice elicited decreased ear swelling compared with controls. This novel approach provided further evidence against a regulatory function of LC in CHS. Moreover, these Langerin-Cre mice represent a unique and powerful tool to dissect the role and molecular control of Langerin(+) DC populations beyond LC.
朗格汉斯细胞 (LC) 在接触性超敏反应 (CHS) 中的关键作用最近在使用不同 LC 耗竭小鼠模型的研究中受到质疑。一方面,LC 的诱导性消融导致耳朵肿胀减轻,表明 LC 和(Langerin(+))真皮树突状细胞 (DC) 之间存在功能冗余。另一方面,LC 的组成性或急性耗竭导致反应增强,支持 LC 在 CHS 中的调节作用。为了解决这个争议,我们通过条件性基因靶向生成了 Langerin-Cre 敲入小鼠。将这些小鼠与 Cre 报告品系杂交表明,LC 以及其他 Langerin(+) 组织 DC 中存在强烈和特异性的 DNA 重组。与 TGF-β 信号对 LC 发育的重要需求一致,将 Langerin-Cre 与 TGF-βR1 等位基因缺失的纯合小鼠杂交导致 LC 永久性缺乏,而真皮 Langerin(+) DC 的稳态不受影响。在没有 LC 的情况下,在这些 Langerin(+) DC 特异性 TGF-βR1 缺陷小鼠中诱导 CHS 引起的耳朵肿胀比对照小鼠减轻。这种新方法进一步证明了 LC 在 CHS 中没有调节作用。此外,这些 Langerin-Cre 小鼠代表了一种独特而强大的工具,可用于研究 Langerin(+) DC 群体在 LC 之外的作用和分子控制。