4.8 Article

Endothelial cell invasion is controlled by dactylopodia

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2023829118

关键词

angiogenesis; endothelial cells; invasion; actin; myosin

资金

  1. European Research Council [679368]
  2. European Union H2020-TWINN2015-Twinning [692322]
  3. Fundacao para a Ciencia e a Tecnologia [IF/00412/2012, EXPL/BEX-BCM/2258/2013, PTDC/MED-PAT/31639/2017, PTDC/BIA-CEL/32180/2017, CEECIND/04251/2017, CEE-CIND/02589/2018]
  4. Fondation Leducq [17CVD03]
  5. Fundação para a Ciência e a Tecnologia [PTDC/BIA-CEL/32180/2017, EXPL/BEX-BCM/2258/2013, PTDC/MED-PAT/31639/2017] Funding Source: FCT
  6. European Research Council (ERC) [679368] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

The study shows that endothelial tip cells use dactylopodia as the main cellular protrusion for invasion, and this process is regulated by the balance of myosin IIA and actin-related protein activity. Autonomous ablation of these proteins in endothelial cells may lead to abnormal protrusion formation, affecting angiogenesis.
Sprouting angiogenesis is fundamental for development and contributes to cancer, diabetic retinopathy, and cardiovascular diseases. Sprouting angiogenesis depends on the invasive properties of endothelial tip cells. However, there is very limited knowledge on how tip cells invade into tissues. Here, we show that endothelial tip cells use dactylopodia as the main cellular protrusion for invasion into nonvascular extracellular matrix. We show that dactylopodia and filopodia protrusions are balanced by myosin IIA (NMIIA) and actin-related protein 2/3 (Arp2/3) activity. Endothelial cell-autonomous ablation of NMIIA promotes excessive dactylopodia formation in detriment of filopodia. Conversely, endothelial cell-autonomous ablation of Arp2/ 3 prevents dactylopodia development and leads to excessive filopodia formation. We further show that NMIIA inhibits Rac1-dependent activation of Arp2/3 by regulating the maturation state of focal adhesions. Our discoveries establish a comprehensive model of how endothelial tip cells regulate its protrusive activity and will pave the way toward strategies to block invasive tip cells during sprouting angiogenesis.

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