Biology Reference
In-Depth Information
Chen, E. S., Zhang, K., Nicolas, E., Cam, H. P., Zofall, M., & Grewal, S. I. (2008). Cell
cycle control of centromeric repeat transcription and heterochromatin assembly. Nature ,
451 , 734-737.
Chow, J. C., Ciaudo, C., Fazzari, M. J., Mise, N., Servant, N., Glass, J. L., et al. (2010).
LINE-1 activity in facultative heterochromatin formation during X chromosome inac-
tivation. Cell , 141 , 956-969.
Cleveland, D. W., Mao, Y., & Sullivan, K. F. (2003). Centromeres and kinetochores: From
epigenetics to mitotic checkpoint signaling. Cell , 112 , 407-421.
Cohen, D. E., & Lee, J. T. (2002). X-chromosome inactivation and the search for
chromosome-wide silencers. Current Opinion in Genetics & Development , 12 , 219-224.
Colmenares, S. U., Buker, S. M., Buhler, M., Dlakic, M., &Moazed, D. (2007). Coupling of
double-stranded RNA synthesis and siRNA generation in fission yeast RNAi. Molecular
Cell , 27 , 449-461.
Daujat, S., Weiss, T., Mohn, F., Lange, U. C., Ziegler-Birling, C., Zeissler, U., et al. (2009).
H3K64 trimethylation marks heterochromatin and is dynamically remodeled during
developmental reprogramming. Nature Structural & Molecular Biology , 16 , 777-781.
Dawlaty, M. M., Ganz, K., Powell, B. E., Hu, Y. C., Markoulaki, S., Cheng, A. W., et al.
(2011). Tet1 is dispensable for maintaining pluripotency and its loss is compatible with
embryonic and postnatal development. Cell Stem Cell , 9 , 166-175.
Dodge, J., Kang, Y.-K., Beppu, H., Lei, H., & Li, E. (2004). Histone H3-K9 methyl-
transferase ESET is essential for early development. Molecular and Cellular Biology , 24 ,
2478-2486.
Donohoe, M. E., Zhang, X., McGinnis, L., Biggers, J., Li, E., & Shi, Y. (1999). Targeted
disruption of mouse Yin Yang 1 transcription factor results in peri-implantation lethality.
Molecular and Cellular Biology , 19 , 7237-7244.
Eckardt, S., Leu, N. A., Kurosaka, S., & McLaughlin, K. J. (2005). Differential repro-
gramming of somatic cell nuclei after transfer into mouse cleavage stage blastomeres.
Reproduction , 129 , 547-556.
Efroni, S., Duttagupta, R., Cheng, J., Dehghani, H., Hoeppner, D. J., Dash, C., et al. (2008).
Global transcription in pluripotent embryonic stem cells. Cell Stem Cell , 2 , 437-447.
Erhardt, S., Su, I. H., Schneider, R., Barton, S., Bannister, A., Perez-Burgos, L., et al. (2003).
Consequences of the depletion of zygotic and embryonic enhancer of zeste 2 during pre-
implantation mouse development. Development (Cambridge, England) , 130 , 4235-4248.
Evsikov, A. V., de Vries, W. N., Peaston, A. E., Radford, E. E., Fancher, K. S., Chen, F. H.,
et al. (2004). Systems biology of the 2-cell mouse embryo. Cytogenetic and Genome
Research , 105 , 240-250.
Fadloun, A., Le Gras, S., Jost, B., Ziegler-Birling, C., Takahashi, H., Gorab, E., et al. (2013).
Chromatin signatures and retrotransposon profiling in mouse embryos reveal regulation
of LINE-1 by RNA. Nature Structural & Molecular Biology , http://dx.doi.org/10.1038/
nsmb.2495. [Epub ahead of print].
Farthing, C. R., Ficz, G., Ng, R. K., Chan, C. F., Andrews, S., Dean, W., et al. (2008).
Global mapping of DNA methylation in mouse promoters reveals epigenetic repro-
gramming of pluripotency genes. PLoS Genetics , 4 , e1000116.
Faust, C., Lawson, K. A., Schork, N. J., Thiel, B., & Magnuson, T. (1998). The Polycomb-
group gene eed is required for normal morphogenetic movements during gastrulation in
the mouse embryo. Development (Cambridge, England) , 125 , 4495-4506.
Folco, H. D., Pidoux, A. L., Urano, T., & Allshire, R. C. (2008). Heterochromatin and
RNAi are required to establish CENP-A chromatin at centromeres. Science , 319 , 94-97.
Goll, M. G., & Bestor, T. H. (2005). Eukaryotic cytosine methyltransferases. Annual Review of
Biochemistry , 74 , 481-514.
Search WWH ::




Custom Search