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Transcriptional control of apical protein clustering drives de novo cell polarity establishment in the early mouse embryo

View ORCID ProfileMeng Zhu, Peizhe Wang, Charlotte E. Handford, Jie Na, Magdalena Zernicka-Goetz
doi: https://doi.org/10.1101/2020.02.10.942201
Meng Zhu
1University of Cambridge, Department of Physiology, Development and Neuroscience; Downing Street, Cambridge, CB2 3DY, UK.
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  • ORCID record for Meng Zhu
Peizhe Wang
2Centre for Stem Cell Biology and Regenerative Medicine, School of Medicine, Tsinghua University, Beijing, 100084, China.
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Charlotte E. Handford
1University of Cambridge, Department of Physiology, Development and Neuroscience; Downing Street, Cambridge, CB2 3DY, UK.
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Jie Na
2Centre for Stem Cell Biology and Regenerative Medicine, School of Medicine, Tsinghua University, Beijing, 100084, China.
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Magdalena Zernicka-Goetz
1University of Cambridge, Department of Physiology, Development and Neuroscience; Downing Street, Cambridge, CB2 3DY, UK.
3California Institute of Technology (Caltech), Division of Biology and Biological Engineering, Pasadena, CA 91125, USA.
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  • For correspondence: mz205@cam.ac.uk
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Summary

The establishment of cell polarity de novo in the early mammalian embryo triggers the transition from totipotency to differentiation to generate embryonic and extra-embryonic lineages. However, the molecular mechanisms governing the timing of cell polarity establishment remain unknown. Here, we identify stage-dependent transcription of Tfap2c and Tead4 as well as Rho GTPase signaling as key for the onset of cell polarization. Importantly, advancing their activity can induce precocious cell polarization and ectopic lineage differentiation in a cell-autonomous manner. Moreover, we show that the asymmetric clustering of apical proteins, regulated by Tfap2c-Tead4, and not actomyosin flow, mediates apical protein polarization. These findings identify the long-sought mechanism for the onset of polarization and the first lineage segregation in the mouse embryo.

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Posted February 10, 2020.
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Transcriptional control of apical protein clustering drives de novo cell polarity establishment in the early mouse embryo
Meng Zhu, Peizhe Wang, Charlotte E. Handford, Jie Na, Magdalena Zernicka-Goetz
bioRxiv 2020.02.10.942201; doi: https://doi.org/10.1101/2020.02.10.942201
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Transcriptional control of apical protein clustering drives de novo cell polarity establishment in the early mouse embryo
Meng Zhu, Peizhe Wang, Charlotte E. Handford, Jie Na, Magdalena Zernicka-Goetz
bioRxiv 2020.02.10.942201; doi: https://doi.org/10.1101/2020.02.10.942201

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