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Ainscough, J. F., Koide, T., Tada, M., Barton, S. and Surani, M. A (1997). Imprinting of Igf2 and H19 from a 130 kb YAC transgene. Development 124, 3621-3632.[Abstract]

Ainscough, J. F.-X., Dandolo, L. and Surani, M. A. H (2000). Appropriate expression of the mouse H19 gene utilises three or more distinct enhancer regions spread over more than 130 kb. Mech. Dev 91, 368-372.

Bartolomei, M. S., Webber, A. L., Brunkow, M. E. and Tilghman, S. M (1993). Epigenetic mechanisms underlying the imprinting of the mouse H19 gene. Genes Dev 7, 1663-1673.[Abstract/Free Full Text]

Bell, A. C. and Felsenfeld, G (2000). Methylation of a CTCF-dependent boundary controls imprinted expression of the Igf2 gene. Nature 405, 482-485.[Medline]

Boggs, B. A. and Chinault, A. C (1997). Analysis of DNA replication by fluorescence in situ hybridization. Methods 13, 259-270.[Medline]

Brenton, J. D., Drewell, R. A., Viville, S., Hilton, K. J., Barton, S. C., Ainscough, J. F.-X. and Surani, M. A (1999). A silencer element identified in Drosophila is required for imprinting of H19 reporter transgenes in mice. Proc. Natl Acad. Sci. USA 96, 9242-9247.[Abstract/Free Full Text]

Caspary, T., Cleary, M. A., Baker, C. C., Guan, X. J. and Tilghman, S. M (1998). Multiple mechanisms regulate imprinting of the mouse distal chromosome 7 gene cluster. Mol. Cell. Biol 18, 3466-3474.[Abstract/Free Full Text]

DeChiara, T. M., Efstratiadis, A. and Robertson, E. J (1990). A growth-deficiency phenotype in heterozygous mice carrying an insulin-like growth factor II gene disrupted by targeting. Nature 345, 78-80.[Medline]

Donze, D., Adams, C. R., Rine, J. and Kamakaka, R. T (1999). The boundaries of the silenced HMR domain in Saccharomyces cerevisiae. Genes Dev 13, 698-708.[Abstract/Free Full Text]

Elson, D. A. and Bartolomei, M. S (1997). A 5differentially methylated sequence and the 3 -flanking region are necessary for H19 transgene imprinting. Mol. Cell. Biol 17, 309-317.[Abstract]

Ferguson-Smith, A. C., Sasaki, H., Cattanach, B. M. and Surani, M. A (1993). Parental-origin-specific modification of the mouse H19 gene. Nature 362, 751-755.[Medline]

Fourel, G., Revardel, E., Koering, C. E. and Gilson, E (1999). Cohabitation of insulators and silencing elements in yeast subtelomeric regions. EMBO J 18, 2522-2537.[Medline]

Greally, J. M., Starr, D. J., Hwang, S., Song, L., Jaarola, M. and Zemel,S (1998). The mouse H19 locus mediates a transition between imprinted and non-imprinted DNA replication patterns. Hum. Mol. Genet 7, 91-96.[Abstract/Free Full Text]

Hagstrom, K., Muller, M. and Schedl, P (1997). A Polycomb and GAGA dependent silencer adjoins the Fab-7 boundary in the Drosophila bithorax complex. Genetics 146, 1365-1380.[Abstract]

Hark, A. T., Schoenherr, C. J., Katz, D. J., Ingram, R. S., Levorse, J. M. and Tilghman, S. M (2000). CTCF mediates methylation-sensitive enhancer-blocking activity at the H19/Igf2 locus. Nature 405, 486-489.[Medline]

Hark, A. T. and Tilghman, S. M (1998). Chromatin conformation of the H19 epigenetic mark. Hum. Mol. Gen 7, 1979-1985.[Abstract/Free Full Text]

Jones, B. K., Levorse, J. M. and Tilghman, S. M (1998). Igf2 imprintingdoes not require its own DNA methylation or H19 RNA. Genes Dev 12, 2200-2207.[Abstract/Free Full Text]

Jouvenot, Y., Poirier, F., Jami, J., Paldi, A (1999). Biallelic transcription of Igf2 and H19 in individual cells suggests a post-transcriptional contribution to genomic imprinting. Curr. Biol 9, 1199-1202.[Medline]

Khosla, S., Aitchison, A., Gregory, R., Allen, N. D. and Feil, R (1999). Parental allele-specific chromatin configuration in a boundary-imprinting-control element upstream of the mouse H19 gene. Mol. Cell. Biol 19, 2556-2566.[Abstract/Free Full Text]

Kitsberg, D., Selig, S., Brandeis, M., Simon, I., Keshet, I., Driscoll, D. J., Nicholls, R. D. and Cedar, H (1993). Allele-specific replication timing of imprinted gene regions. Nature 364, 459-463.[Medline]

Leighton, P. A., Ingram, R. S., Eggenschwiler, J., Efstratiadis, A. and Tilghman, S. M (1995). Disruption of imprinting caused by deletion of the H19 gene region in mice. Nature 375, 34-39.[Medline]

Leighton, P. A., Saam, J. R., Ingram, R. S., Stewart, C. L. and Tilghman, S. M (1995). An enhancer deletion affects both H19 and Igf2 expression. Gene Dev 9, 2079-2089.[Abstract/Free Full Text]

Li, E., Beard, C. and Jaenisch, R (1993). Role of DNA methylation in genomic imprinting. Nature 366, 362-365.[Medline]

Lyko, F., Brenton, J. D., Surani, M. A. and Paro, R (1997). An imprinting element from the mouse H19 locus functions as a silencer in Drosophila. Nat. Genet 16, 171-173.[Medline]

Lyko, F., Buiting, K., Horsthemke, B. and Paro, R (1998). Identification of a silencing element in the human 15q11-q13 imprinting center by using transgenic Drosophila. Proc. Natl Acad. Sci. USA 95, 1698-1702.[Abstract/Free Full Text]

Mihaly, J., Hogga, I., Gausz, J., Gyurkovics, H. and Karch, F (1997). In situ dissection of the Fab-7 region of the bithorax complex into a chromatin domain boundary and a Polycomb-response element. Development 124, 1809-1820.[Abstract]

Nagy, A., Rossant, J., Nagy, R., Abramow Newerly, W. and Roder, J. C (1993). Derivation of completely cell culture-derived mice from early-passage embryonic stem cells. Proc. Natl Acad. Sci. USA 90, 8424-8428.[Abstract/Free Full Text]

Olek, A. and Walter, J (1997). The pre-implantation ontogeny of the H19 methylation imprint [letter]. Nature Genetics 17, 275-276.[Medline]

Poirier, F., Chan, C.-T. J., Timmons, P. M., Robertson, E. J., Evans, M. J. and Rigby, P. W. J (1991). The murine H19 gene is activated during embryonic stem cell differentiation in vitro and at the time of implantation in the developing embryo. Development 113, 1105-1114.[Abstract]

Reik, W. and Walter, J (1998). Imprinting mechanisms in mammals. Curr. Opin. Gen. Dev 8, 154-164.[Medline]

Ripoche, M. A., Kress, C., Poirier, F. and Dandolo, L (1997). Deletion of the H19 transcription unit reveals the existence of a putative imprinting control element. Gene Dev 11, 1596-1604.[Abstract/Free Full Text]

Schmidt, J. V., Levorse, J. M. and Tilghman, S. M (1999). Enhancer competition between H19 and Igf2 does not mediate their imprinting. Proc. Natl Acad. Sci.USA 96, 9733-9738.[Abstract/Free Full Text]

Schwartz, F., Maeda, N., Smithies, O., Hickey, R., Edelmann, W., Skoultchi, A. and Kucherlapati, R (1991). A dominant positive and negative selectable gene for use in mammalian cells. Proc. Natl Acad. Sci. USA 88, 10416-10420.[Abstract/Free Full Text]

Simon, I., Tenzen, T., Reubinoff, B., E., Hillman, D., McCarrey, J., R. and Cedar, H (1999). Asynchronous replication of imprinted genes is established in the gametes and maintained during development. Nature 401, 929-932.[Medline]

Srivastava, M., Hsieh, S., Grinberg, A., Williams-Simons, L., Huang, S.-P. and Pfeifer, K (2000). H19 and Igf2 monoallelic expression is regulated in two distinct ways by a shared cis acting regulatory region upstream of H19. Genes Dev 14, 1186-1195.[Abstract/Free Full Text]

Surani, M. A (1998). Imprinting and the initiation of gene silencing in the germ line. Cell 93, 309-312.[Medline]

Szabo, P. E., Tang, S.-H. E., Rentsendorj, A., Pfeifer, G. P. and Mann, J. R (2000). Maternal-specific footprints at putative CTCF sites in the H19 imprinting control region give evidence for insulator function. Curr. Biol 10, 607-610.[Medline]

Thorvaldsen, J. L., Duran, K. L. and Bartolomei, M. S (1998). Deletion of the H19 differentially methylated domain results in loss of imprinted expression of H19 and Igf2. Genes Dev 12, 3693-3702.[Abstract/Free Full Text]

Tilghman, S. M (1999). The sins of the fathers and mothers: genomic imprinting in mammalian development. Cell 96, 185-193.[Medline]

Tremblay, K. D., Duran, K. L. and Bartolomei, M. S (1997). A 52-kilobase-pair region of the imprinted mouse H19 gene exhibits exclusive paternal methylation throughout development. Mol. Cell. Biol 17, 4322-4329.[Abstract]

Tremblay, K. D., Saam, J. R., Ingram, R. S., Tilghman, S. M. and Bartolomei, M. S (1995). A paternal-specific methylation imprint marks the alleles of the mouse H19 gene. Nat. Genet 9, 407-413.[Medline]

Webber, A. L., Ingram, R. S., Levorse, J. M. and Tilghman, S. M (1998). Location of enhancers is essential for the imprinting of H19 and Igf2 genes. Nature 391, 711-715.[Medline]

Wilkinson, D. G. and Nieto, M. A (1993). Detection of message RNA by insitu hybridisation to tissue sections and whole mounts. Methods Enzymol 225, 361-373.[Medline]

Wood, S. A., Pascoe, W. S., Schmidt, C., Kemler, R., Evans, M. J. and Allen, N. D (1993). Simple and efficient production of embryonic stem cell-embryo chimeras by coculture. Proc. Natl Acad. Sci. USA 90, 4582-4585.[Abstract/Free Full Text]

Zhou, J. and Levine, M (1999). A novel cis-regulatory element, the PTS, mediates an anti-insulator activity in the Drosophila embryo. Cell 99, 567-575.[Medline]


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