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Bouniol, C., Nguyen, E., and Debey, p. (1995). Endogenous transcription occurs at the 1-cell stage in the mouse embryo. Exp. Cell Res. 218, 57¨C62.

Eckersley-Maslin, M.A., Svensson, V., Krueger, C., Stubbs, T.M., Giehr, p., Krueger, F., Miragaia, R.J., Kyriakopoulos, C., Berrens, R.V., Milagre, I., et al. (2016). MERVL/Zscan4 network activation results in transient genome-wide DNA demethylation of mESCs. Cell Rep. 17, 179¨C192.

Falco, G., Lee, S.L., Stanghellini, I., Bassey, U.C., Hamatani, T., and Ko, M.S. (2007). Zscan4: a novel gene expressed exclusively in late 2-cell embryos and embryonic stem cells. Dev. Biol. 307, 539¨C550.

Gabriels, J., Beckers, M.C., Ding, H., De Vriese, A., plaisance, S., van der Maarel, S.M., padberg, G.W., Frants, R.R., Hewitt, J.E., Collen, D., et al. (1999). Nucleotide sequence of the partially deleted D4Z4 locus in a patient with FSHD identifies a putative gene within each 3.3 kb element. Gene 236, 25¨C32.

Geng, L.N., Yao, Z., Snider, L., Fong, A.p., Cech, J.N., Young, J.M., van der Maarel, S.M., Ruzzo, W.L., Gentleman, R.C., Tawil, R., et al. (2012). DUX4 activates germline genes, retroelements, and immune mediators: implications for facioscapulohumeral dystrophy. Dev. Cell 22, 38¨C51.

Guo, M., Zhang, Y., Zhou, J., Bi, Y., Xu, J., Xu, C., Kou, X., Zhao, Y., Li, Y., Tu, Z., et al. (2019). precise temporal regulation of Dux is important for embryo development. Cell Res. 29, 956¨C959.

Ishiuchi, T., Enriquez-Gasca, R., Mizutani, E., Boskovic, A., ZieglerBirling, C., Rodriguez-Terrones, D., Wakayama, T., Vaquerizas, J.M., and Torres-padilla, M.E. (2015). Early embryonic-like cells are induced by downregulating replication-dependent chromatin assembly. Nat. Struct. Mol. Biol. 22, 662¨C671.

Lu, F., and Zhang, Y. (2015). Cell totipotency: molecular features, induction, and maintenance. Natl. Sci. Rev. 2, 217¨C225.

Macfarlan, T.S., Gifford, W.D., Driscoll, S., Lettieri, K., Rowe, H.M., Bonanomi, D., Firth, A., Singer, O., Trono, D., and pfaff, S.L. (2012). Embryonic stem cell potency fluctuates with endogenous retrovirus activity. Nature 487, 57¨C63.

Schultz, R.M. (1993). Regulation of zygotic gene activation in the mouse. Bioessays 15, 531¨C538.

Xu, Q., and Xie, W. (2018). Epigenome in early mammalian development: inheritance, reprogramming and establishment. Trends Cell Biol. 28, 237¨C253.

Zalzman, M., Falco, G., Sharova, L.V., Nishiyama, A., Thomas, M., Lee, S.L., Stagg, C.A., Hoang, H.G., Yang, H.T., Indig, F.E., et al. (2010). Zscan4 regulates telomere elongation and genomic stability in ES cells. Nature 464, 858¨C863.