Visualization of endothelial cell cycle dynamics in mouse using the Flt-1/eGFP-anillin system

K Herz, A Becker, C Shi, M Ema, S Takahashi… - Angiogenesis, 2018 - Springer
K Herz, A Becker, C Shi, M Ema, S Takahashi, M Potente, M Hesse, BK Fleischmann…
Angiogenesis, 2018Springer
Endothelial cell proliferation is a key process during vascular growth but its kinetics could
only be assessed in vitro or ex vivo so far. To enable the monitoring and quantification of cell
cycle kinetics in vivo, we have generated transgenic mice expressing an eGFP-anillin
construct under control of the endothelial-specific Flt-1 promoter. This construct labels the
nuclei of endothelial cells in late G1, S and G2 phase and changes its localization during the
different stages of M phase, thereby enabling the monitoring of EC proliferation and …
Abstract
Endothelial cell proliferation is a key process during vascular growth but its kinetics could only be assessed in vitro or ex vivo so far. To enable the monitoring and quantification of cell cycle kinetics in vivo, we have generated transgenic mice expressing an eGFP-anillin construct under control of the endothelial-specific Flt-1 promoter. This construct labels the nuclei of endothelial cells in late G1, S and G2 phase and changes its localization during the different stages of M phase, thereby enabling the monitoring of EC proliferation and cytokinesis. In Flt-1/eGFP-anillin mice, we found eGFP+ signals specifically in Ki67+/PECAM+ endothelial cells during vascular development. Quantification using this cell cycle reporter in embryos revealed a decline in endothelial cell proliferation between E9.5 to E12.5. By time-lapse microscopy, we determined the length of different cell cycle phases in embryonic endothelial cells in vivo and found a M phase duration of about 80 min with 2/3 covering karyokinesis and 1/3 cytokinesis. Thus, we have generated a versatile transgenic system for the accurate assessment of endothelial cell cycle dynamics in vitro and in vivo.
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