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Ayer-LeLievre, C., St\214hlbom, P.-A. and Sara, V. R (1991). Expression of IGF-I and-II mRNA in the brain and craniofacial region of the rat foetus. Development 111, 105-115.[Abstract]

Barlow, D. P., St\232ger, R., Herrmann, B. G., Saito, K. and Schweifer, N (1991). The mouse insulin-like growth factor type-2 receptor is imprinted and closely linked to the Tme locus. Nature 349, 84-87.[Medline]

Bartolomei, M. S., Zemel, S. and Tilghman, S (1991). Parental imprinting of the mouse H19 gene. Nature 351, 153-155.[Medline]

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 and Development 7, 1663-1673.[Abstract/Free Full Text]

Bondy, C. A., Werner, H., Roberts, C. T. and LeRoith, D (1990). Cellular pattern of insulin-like growth factor-I (IGF-I) and type I IGF receptor gene expression in early organogenesis: comparison with IGF-II gene expression. Mol. Endo 4, 1386-1398.[Abstract/Free Full Text]

Brandeis, M., Kafri, T., Ariel, M., Chaillet, J. R., McCarrey, J., Razin, A. and Cedar, H (1993). The ontogeny of allele-specific methylation associated with imprinted genes in the mouse. EMBO J 12, 3669-3677.[Medline]

Brice, A. L., Cheetham, J. E., Bolton, V. N., Hill, N. C. W. and Schofield, P. N (1989). Temporal changes in the expression of the insulin-like growth factor ll gene associated with tissue maturation in the human fetus. Development 106, 543-554.[Abstract]

Chomczynsky, P. and Sacchi, N (1987). A single-step metod for isolation of RNA. Analyt. Biochem 162, 156-159.[Medline]

DeChiara, T. M., Robertson, E. J. and Efstratiadis, A (1991). Parental imprinting of the mouse insulin-like growth factor ll gene. Cell 64, 849-859.[Medline]

Epner, E., Kim, C. G. and Groudine, M (1992). What does the locus control region control?. Curr. Op. Genet. Develop 2, 262-264.

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

Glaser, A., Luthman, H., Stern, I. and Ohlsson, R (1992). The spatial distribution of active genes implicated in the regulation of insulin-like growth factor stimulatory loops in human decidual and placental tissue of first trimester pregnancy. Mol. Reprod. Develop 33, 7-15.[Medline]

Giannoukakis, N., Deal, C., Paquette, J., Goodyer, C. G. and Polychronakos, C (1993). Parental genomic imprinting of the human IGF2 gene. Nature Genet 4, 98-101.[Medline]

Hao, Y., Crenshaw, T., Moulton, T., Newcomb, E. and Tycko, B (1993). Tumour-suppressor activity of H19 RNA. Nature 365, 764-767.[Medline]

Han, V. K. M., Lund, P. K., Lee, D. C. and D'Ercole, A. J (1988). Expression of somatomedin/insulin-like growth factor messenger ribonucleic acids in the human fetus: identification, characterization, and tissue distribution. J. Clin. Endocrinol. Metab 66, 422-429.[Abstract/Free Full Text]

Lee, J., Pintar, J. and Efstratiadis, A (1990). Pattern of the insulin-like growth factor II gene expression during early mouse embryogenesis. Development 110, 151-159.[Abstract]

Leff, S., Brannan, C., Reed, M., \205z\215elik, T., Francke, U., Copeland, N. and Jenkins, N (1992). Maternal imprinting of the mouse Snrpn gene and conserved linkage homology with the human Pader-Willi syndrome region. Nature Genetics 2, 259-264.[Medline]

Ogawa, O., Eccles, M. R., Szeto, J., McNoe, L. A., Yun, K., Maw, M. A., Smith, P. J. and Reeve, A. E (1993). Relaxation of insulin-like growth factor ll gene imprinting implicated in Wilms' tumour. Nature 362, 749-751.[Medline]

Ohlsson, R., Larsson, E., Nilsson, O., Wahlstr\232m, T. and Sundstr\232m, P (1989). Blastocyst implantation precedes induction of insulin-like growth factor II gene expression in human trophoblasts. Development 106, 555-559.[Abstract]

Ohlsson, R., Holmgren, L., Glaser, A., Szpecht, A. and Pfeifer-Ohlsson, S (1989). Insulin-like growth factor 2 and short-range stimulatory loops in control of human placental growth. EMBO J 8, 1993-1999.[Medline]

Ohlsson, R., Nystr\232m, A., Pfeifer-Ohlsson, S., T\232h\232nen, V., Hedborg, F., Schofield, P., Flam, F. and Ekstr\232m, T. J (1993). IGF2 is parentally imprinted during human embryogenesis and in the Beckwith-Wiedemann syndrome. Nature Genet 4, 94-97.[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]

Rainer, S., Johnson, L. A., Dobry, C. J., Ping, A. J., Grundy, P. E. and Feinberg, A. P (1993). Relaxation of imprinted genes in human cancer. Nature 362, 747-749.[Medline]

Riggs, A. D. and Pfeifer, G (1992). X-chromosome inactivation and cell memory. Trends Genet 8, 169-174.[Medline]

Sasaki, H., Jones, P., Chaillet, J., Ferguson-Smith, A., Barton, S., Reik, W. and Surani, M (1992). Parental imprinting: potentially active chromatin of the repressed maternal allele of the mouse insulin-like growth factor II ( Igf2 ) gene. Genes and Development 6, 1843-1856.[Abstract/Free Full Text]

St\232ger, R., Kubicka, P., Liu, C.-G., Kafri, T., Razin, A., Cedar, H. and Barlow, D (1993). Maternal-specific methylation of the imprinted mouse Igf2r locus identifies the expressed locus as carrying the imprinting signal. Cell 73, 61-71.[Medline]

Stylianopoulou, F., Efstratiadis, A., Herbert, J. and Pintar, J (1988). Pattern of the insulin-like growth factor II gene expression during rat embryogenesis. Development 103, 497-506.[Abstract]

Stylianopoulou, F., Herbert, J., Soares, M. B. and Efstratiadis, A (1988). Expression of the insulin-like growth factor II gene in the choroid plexus and leptomeninges of the adult rat central nervous system. Proc. Natl. Acad. Sci. USA 85, 141-145.[Abstract/Free Full Text]

Surani, M. A. H (1991). Genomic imprinting: Developmental significance and molecular mechanisms. Curr. Op. Genet. Develop 1, 241-246.[Medline]

Sussenbach, J. S (1989). The gene structure of the insulin-like growth factor family. Prog. Growth Factor Res 1, 33-48.[Medline]

Zemel, S., Bartolomei, M. S. and Tilghman, S. M (1992). Physical linkage of two mammalian imprinted genes, H19 and Insulin-like growth factor 2. Nature Genet 2, 61-65.[Medline]

Zhang, Y. and Tycko, B (1992). Monoallelic expression of the human H19 gene. Nature Genet 1, 40-44.[Medline]


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