4.8 Article

TFEB controls vascular development by regulating the proliferation of endothelial cells

期刊

EMBO JOURNAL
卷 38, 期 3, 页码 -

出版社

WILEY
DOI: 10.15252/embj.201798250

关键词

angiogenesis; embryo; membrane trafficking; miRNA transcription; proliferation

资金

  1. Associazione Italiana per la Ricerca sul Cancro (AIRC) [12182, 18652, 14284, 11982, 17639, 20240]
  2. Ministry of University and Research [RBAP11BYNP, RBFR08F2FS-002]
  3. MIUR FIRB [RBAP11Z3YA]
  4. European Research Council [694282]
  5. U.S. National Institutes of Health [R01-NS078072]
  6. Huffington Foundation
  7. Fondazione Cassa di Risparmio
  8. Italian Telethon Foundation [TGM16CB6]
  9. Regione Piemonte Project Deflect
  10. EU-Trascan
  11. European Research Council (ERC) [694282] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

Transcription factor TFEB is thought to control cellular functions-including in the vascular bed-primarily via regulation of lysosomal biogenesis and autophagic flux. Here, we report that TFEB also orchestrates a non-canonical program that controls the cell cycle/VEGFR2 pathway in the developing vasculature. In endothelial cells, TFEB depletion halts proliferation at the G1-S transition by inhibiting the CDK4/Rb pathway. TFEB-deficient cells attempt to compensate for this limitation by increasing VEGFR2 levels at the plasma membrane via microRNA-mediated mechanisms and controlled membrane trafficking. TFEB stimulates expression of the miR-15a/16-1 cluster, which limits VEGFR2 transcript stability and negatively modulates expression of MYO1C, a regulator of VEGFR2 trafficking to the cell surface. Altered levels of miR-15a/16-1 and MYO1C in TFEB-depleted cells cause increased expression of plasma membrane VEGFR2, but in a manner associated with low signaling strength. An endothelium-specific Tfeb-knockout mouse model displays defects in fetal and newborn mouse vasculature caused by reduced endothelial proliferation and by anomalous function of the VEGFR2 pathway. These previously unrecognized functions of TFEB expand its role beyond regulation of the autophagic pathway in the vascular system.

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