Involvement of atypical transcription factor E2F8 in the polyploidization during mouse and human decidualization

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Abstract

Polyploid decidual cells are specifically differentiated cells during mouse uterine decidualization. However, little is known about the regulatory mechanism and physiological significance of polyploidization in pregnancy. Here we report a novel role of E2F8 in the polyploidization of decidual cells in mice. E2F8 is highly expressed in decidual cells and regulated by progesterone through HB-EGF/EGFR/ERK/STAT3 signaling pathway. E2F8 transcriptionally suppresses CDK1, thus triggering the polyploidization of decidual cells. E2F8-mediated polyploidization is a response to stresses which are accompanied by decidualization. Interestingly, polyploidization is not detected during human decidualization with the down-regulation of E2F8, indicating differential expression of E2F8 may lead to the difference of decidual cell polyploidization between mice and humans.

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Qi, Q. R., Zhao, X. Y., Zuo, R. J., Wang, T. S., Gu, X. W., Liu, J. L., & Yang, Z. M. (2015). Involvement of atypical transcription factor E2F8 in the polyploidization during mouse and human decidualization. Cell Cycle, 14(12), 1842–1858. https://doi.org/10.1080/15384101.2015.1033593

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