Biology Reference
In-Depth Information
Peaston, A. E., Evsikov, A. V., Graber, J. H., de Vries, W. N., Holbrook, A. E., Solter, D.,
et al. (2004). Retrotransposons regulate host genes in mouse oocytes and preimplantation
embryos. Developmental Cell , 7 , 597-606.
Peters, A. H., O'Carroll, D., Scherthan, H., Mechtler, K., Sauer, S., Schofer, C., et al. (2001).
Loss of the Suv39h histone methyltransferases impairs mammalian heterochromatin and
genome stability. Cell , 107 , 323-337.
Pidoux, A. L., &Allshire, R. C. (2005). The role of heterochromatin in centromere function.
Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences , 360 ,
569-579.
Pinheiro, I., Margueron, R., Shukeir, N., Eisold, M., Fritzsch, C., Richter, F. M., et al.
(2012). Prdm3 and Prdm16 are H3K9me1 methyltransferases required for mammalian
heterochromatin integrity. Cell , 150 , 948-960.
Plachta, N., Bollenbach, T., Pease, S., Fraser, S. E., & Pantazis, P. (2011). Oct4 kinetics pre-
dict cell lineage patterning in the early mammalian embryo. Nature Cell Biology , 13 ,
117-123.
Poznanski, A. A., &Calarco, P. G. (1991). The expression of intracisternal A particle genes in
the preimplantation mouse embryo. Developmental Biology , 143 , 271-281.
Probst, A. V.,Okamoto, I., Casanova,M., ElMarjou, F., LeBaccon, P., &Almouzni, G. (2010).
A strand-specific burst in transcription of pericentric satellites is required for chromocenter
formation and early mouse development. Developmental Cell , 19 , 625-638.
Probst, A. V., Santos, F., Reik, W., Almouzni, G., & Dean, W. (2007). Structural differences
in centromeric heterochromatin are spatially reconciled on fertilisation in the mouse
zygote. Chromosoma , 116 , 403-415.
Proudhon, C., Duffie, R., Ajjan, S., Cowley, M., Iranzo, J., Carbajosa, G., et al. (2012). Pro-
tection against de novo methylation is instrumental in maintaining parent-of-origin
methylation inherited from the gametes. Molecular Cell , 47 , 909-920.
Puschendorf, M., Terranova, R., Boutsma, E., Mao, X., Isono, K., Brykczynska, U., et al.
(2008). PRC1 and Suv39h specify parental asymmetry at constitutive heterochromatin
in early mouse embryos. Nature Genetics , 40 , 411-420.
Quivoron, C., Couronne, L., Della Valle, V., Lopez, C. K., Plo, I., Wagner-Ballon, O., et al.
(2011). TET2 inactivation results in pleiotropic hematopoietic abnormalities in mouse
and is a recurrent event during human lymphomagenesis. Cancer Cell , 20 , 25-38.
Quivy, J. P., Roche, D., Kirschner, D., Tagami, H., Nakatani, Y., & Almouzni, G. (2004). A
CAF-1 dependent pool of HP1 during heterochromatin duplication. The EMBO Journal ,
23 , 3516-3526.
Rea, S., Eisenhaber, F., O'Carroll, D., Strahl, B. D., Sun, Z. W., Schmid, M., et al. (2000).
Regulation of chromatin structure by site-specific histone H3 methyltransferases. Nature ,
406 , 593-599.
Regha, K., Sloane, M. A., Huang, R., Pauler, F. M., Warczok, K. E., Melikant, B., et al.
(2007). Active and repressive chromatin are interspersed without spreading in an
imprinted gene cluster in the mammalian genome. Molecular Cell , 27 (3), 353-366.
Rice, J., Briggs, S., Ueberheide, B., Barber, C., Shabanowitz, J., Hunt, D., et al. (2003). His-
tone methyltransferases direct different degrees of methylation to define distinct chroma-
tin domains. Molecular Cell , 12 , 1591-1598.
Rossant, J., & Lis, W. T. (1979). Potential of isolated mouse inner cell masses to form
trophectoderm derivatives in vivo. Developmental Biology , 70 , 255-261.
Rougier, N., Bourc'his, D., Gomes, D. M., Niveleau, A., Plachot, M., Paldi, A., et al.
(1998). Chromosome methylation patterns during mammalian preimplantation develop-
ment. Genes & Development , 12 , 2108-2113.
Rowe, H. M., Jakobsson, J., Mesnard, D., Rougemont, J., Reynard, S., Aktas, T., et al.
(2010). KAP1 controls endogenous retroviruses in embryonic stem cells. Nature , 463 ,
237-240.
Search WWH ::




Custom Search