Department of Immunology, Genetics and Pathology, Uppsala University, Uppsala, Sweden.
Vascular and Tumor Biology Laboratory, Department of Oncology UNIL CHUV, Ludwig Institute for Cancer Research Lausanne, Lausanne, Switzerland.
EMBO J. 2021 Jun 15;40(12):e107192. doi: 10.15252/embj.2020107192. Epub 2021 May 2.
The lymphatic system is composed of a hierarchical network of fluid absorbing lymphatic capillaries and transporting collecting vessels. Despite distinct functions and morphologies, molecular mechanisms that regulate the identity of the different vessel types are poorly understood. Through transcriptional analysis of murine dermal lymphatic endothelial cells (LECs), we identified Foxp2, a member of the FOXP family of transcription factors implicated in speech development, as a collecting vessel signature gene. FOXP2 expression was induced after initiation of lymph flow in vivo and upon shear stress on primary LECs in vitro. Loss of FOXC2, the major flow-responsive transcriptional regulator of lymphatic valve formation, abolished FOXP2 induction in vitro and in vivo. Genetic deletion of Foxp2 in mice using the endothelial-specific Tie2-Cre or the tamoxifen-inducible LEC-specific Prox1-CreER line resulted in enlarged collecting vessels and defective valves characterized by loss of NFATc1 activity. Our results identify FOXP2 as a new flow-induced transcriptional regulator of collecting lymphatic vessel morphogenesis and highlight the existence of unique transcription factor codes in the establishment of vessel-type-specific endothelial cell identities.
淋巴系统由一个分级的液体吸收毛细淋巴管和运输收集管网络组成。尽管具有不同的功能和形态,但调节不同血管类型特征的分子机制还知之甚少。通过对小鼠皮肤淋巴管内皮细胞(LEC)的转录分析,我们确定了 Foxp2,即涉及言语发育的 FOXP 家族转录因子的一个成员,为收集管的特征基因。FOXP2 的表达在体内淋巴液流动开始后以及体外原发性 LEC 受到切应力时被诱导。淋巴管瓣膜形成的主要流动反应性转录调节因子 FOXC2 的缺失,在体外和体内均消除了 FOXP2 的诱导。使用内皮特异性 Tie2-Cre 或他莫昔芬诱导的 LEC 特异性 Prox1-CreER 系在小鼠中敲除 Foxp2,导致收集管增大和瓣膜缺陷,其特征为 NFATc1 活性丧失。我们的结果确定 FOXP2 为一种新的流动诱导的收集淋巴管形态发生的转录调节剂,并强调了在建立血管类型特异性内皮细胞特征方面存在独特的转录因子编码。