4.8 Article

Transcription factor FOXP2 is a flow-induced regulator of collecting lymphatic vessels

期刊

EMBO JOURNAL
卷 40, 期 12, 页码 -

出版社

WILEY
DOI: 10.15252/embj.2020107192

关键词

lymphatic vessel; shear stress; valve

资金

  1. BioVis facility (Uppsala University, Sweden)
  2. Swedish Cancer Society [CAN 2016/535]
  3. European Research Council [ERC-2014-CoG-646849]
  4. Knut and Alice Wallenberg Foundation [2015.0030, 2018.0218]
  5. Swedish Research Council [542-2014-3535, 2020-02692, 2018-05973, SNIC 2018/8-62, SNIC 2020/16-159]
  6. Swiss National Science Foundation [CRSII5_177191, 310030_182528]
  7. Swiss National Science Foundation (SNF) [CRSII5_177191, 310030_182528] Funding Source: Swiss National Science Foundation (SNF)
  8. Swedish Research Council [2020-02692] Funding Source: Swedish Research Council

向作者/读者索取更多资源

This study identifies FOXP2 as a new flow-induced transcriptional regulator of collecting lymphatic vessel morphogenesis. Loss of FOXP2 results in enlarged collecting vessels and defective valves, highlighting the unique transcription factor codes in establishing vessel-type-specific endothelial cell identities.
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(T2) 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.

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