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Birney, E., Kumar, S. and Krainer, A. R (1993). Analysis of the RNA-recognition motif and RS and RGG domains: conservation in metazoan pre-mRNA splicing factors. Nucleic Acids Res 21, 5803-16.[Abstract/Free Full Text]

Brookman, J. J., Toosy, A. T., Shashidhara, L. S. and White, R. A (1992). The 412 retrotransposon and the development of gonadal mesoderm in Drosophila. Development 116, 1185-92.[Abstract]

Clark, R. F., Wagner, C. R., Craig, C. A. and Elgin, S. C (1991). Distribution of chromosomal proteins in polytene chromosomes of Drosophila. Meth. Cell Biol 35, 203-27.[Medline]

Elgin, S. C (1996). Heterochromatin and gene regulation in Drosophila. Curr. Opin. Genet. Dev 6, 193-202.[Medline]

Frasch, M., Glover, D. M. and Saumweber, H (1986). Nuclear antigens follow different pathways into daughter nuclei during mitosis in early Drosophila embryos. J. Cell Sci 82, 155-72.[Abstract]

Garzino, V., Moretti, C. and Pradel, J (1987). Nuclear antigens differentially expressed during early development of Drosophila melanogaster. Biol. Cell 61, 5-13.[Medline]

Garzino, V., Pereira, A., Laurenti, P., Graba, Y., Levis, R. W., Le Parco, Y. and Pradel, J (1992). Cell lineage-specific expression of modulo, a dose-dependent modifier of variegation in Drosophila. EMBO J 11, 4471-9.[Medline]

Gatti, M. and Pimpinelli, S (1992). Functional elements in Drosophila melanogaster heterochromatin. Annu. Rev. Genet 26, 239-75.[Medline]

Golic, K. G (1991). Site-specific recombination between homologous chromosomes in Drosophila. Science 252, 958-61.[Abstract/Free Full Text]

Gotta, M. and Cockell, M (1997). Telomeres, not the end of the story. BioEssays 19, 367-70.[Medline]

Graba, Y., Aragnol, D., Laurenti, P., Garzino, V., Charmot, D., Berenger, H. and Pradel, J (1992). Homeotic control in Drosophila; the scabrous gene is an in vivo target of Ultrabithorax proteins. EMBO J 11, 3375-84.[Medline]

Hammond, M. P. and Laird, C. D (1985). Chromosome structure and DNA replication in nurse and follicle cells of Drosophila melanogaster. Chromosoma 91, 267-78.[Medline]

Henikoff, S (1996). Dosage-dependent modification of position-effect variegation in Drosophila. BioEssays 18, 401-9.[Medline]

Hilliker, A. J. and Appels, R (1982). Pleiotropic effects associated with the deletion of heterochromatin surrounding rDNA on the X chromosome of Drosophila. Chromosoma 86, 469-90.[Medline]

Karpen, G. H., Schaefer, J. E. and Laird, C. D (1988). A Drosophila rRNA gene located in euchromatin is active in transcription and nucleolus formation. Genes Dev 2, 1745-63.[Abstract/Free Full Text]

Kay, M. A. and Jacobs-Lorena, M (1987). Developmental genetics of ribosome synthesis in Drosophila. Trends Genet 3, 347-51.

Klug, W. S., King, R. C. and Wattiaux, J. M (1970). Oogenesis in the suppressor of hairy-wing mutant of Drosophila melanogaster . II. Nucleolar morphology and in vitro studies of RNA protein synthesis. J. Exp. Zool 174, 125-40.[Medline]

Krejci, E., Garzino, V., Mary, C., Bennani, N. and Pradel, J (1989). Modulo, a new maternally expressed Drosophila gene encodes a DNA-binding protein with distinct acidic and basic regions. Nucleic Acids Res 17, 8101-15.[Abstract/Free Full Text]

Mal'ceva, N. I., Belyaeva, E. S., King, R. C. and Zhimulev, I. F (1997). Nurse cell polytene chromosomes of Drosophila melanogasterotu mutants: morphological changes accompanying interallelic complementation and position effect variegation. Dev. Genet 20, 163-74.[Medline]

Morata, G. and Ripoll, P (1975). Minutes : mutants of Drosophila autonomously affecting cell division rate. Dev. Biol 42, 211-21.[Medline]

Orlando, V. and Paro, R (1993). Mapping Polycomb-repressed domains in the Bithorax complex using in vivo formaldehyde cross-linked chromatin. Cell 75, 1187-98.[Medline]

Pimpinelli, S., Berloco, M., Fanti, L., Dimitri, P., Bonaccorsi, S., Marchetti,E., Caizzi, R., Caggese, C. and Gatti, M (1995). Transposable elements are stable structural components of Drosophila melanogaster heterochromatin. Proc. Nat. Acad. Sci. USA 92, 3804-8.[Abstract/Free Full Text]

Procunier, J. D. and Dunn, R. J (1978). Genetic and molecular organization of the 5S locus and mutants in D. melanogaster. Cell 15, 1087-93.[Medline]

Reuter, G. and Spierer, P (1992). Position effect variegation and chromatin proteins. BioEssays 14, 605-12.[Medline]

Saeboe-Larssen, S., Lyamouri, M., Merriam, J., Oksvold, M. P. and Lambertsson, A (1998). Ribosomal protein insufficiency and the Minute syndrome in Drosophila: a dose-response relationship. Genetics 148, 1215-24.[Abstract/Free Full Text]

Sherman, J. M. and Pillus, L (1997). An uncertain silence. Trends Genet 13, 308-13.[Medline]

Shermoen, A. W. and Kiefer, B. I (1975). Regulation in rDNA-deficient Drosophila melanogaster. Cell 4, 275-80.[Medline]

Spofford, J. B. and DeSalle, R (1991). Nucleolus organizer-suppressedposition-effect variegation in Drosophila melanogaster. Genet. Res 57, 245-55.[Medline]

Storto, P. D. and King, R. C (1988). Multiplicity of functions for the otu gene products during Drosophila oogenesis. Dev. Genet 9, 91-120.[Medline]

Wallrath, L. L. and Elgin, S. C (1995). Position effect variegation in Drosophila is associated with an altered chromatin structure. Genes Dev 9, 1263-77.[Abstract/Free Full Text]

Warner, J. R (1990). The nucleolus and ribosome formation. Curr. Opin. Cell Biol 2, 521-7.[Medline]

Wakimoto, B. T (1998). Beyond the nucleosome: epigenetic aspects of position effect variegation in Drosophila. Cell 93, 321-4.[Medline]

Zhimulev, I. F (1998). Polytene chromosomes, heterochromatin, and position effect variegation. Adv. Genet 37, 1-566.[Medline]

Zhimulev, I. F., Belyaeva, E. S., Bolshakov, V. N. and Mal'ceva, N. I (1989). Position-effect variegation and intercalary heterochromatin: a comparative study. Chromosoma 98, 378-87.[Medline]




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