| Bournias-Vardiabasis et al., Banbury Rep. 26: Developmental Toxicology: Mechanisms & Risk, Cold Spring Harbor Lab. (1987) pp. 3-16. |
| Lawson et al., Mol. Gen. Genetics 198:116-124 (1984). |
| Seecof, R. L. Preparation of cell cultures from Drosophila melanogaster embryos, Tissue Culture Association Manual 5(1):1019-1022, 1979. |
| Bournias-Vardiabasis, N., and R. L. Teplitz, Use of Drosophila embryo cell cultures as an in vitro teratogen assay, Teratog. Carcinog. Mutagen, 2:333-341, 1982. |
| Bournias-Vardiabasis, N., et al., Detection of teratogens in the Drosophila embryonic cell culture test: assay of 100 chemicals, Teratology 28:109-122, 1983. |
| Ritossa, F., A new puffing pattern induced by temperature shock and DNP in Drosophila, Experientia 18(12):571-573, 1962. |
| Craig, E. A., The heat shock response, CRC Crit. Rev. Biochem 18(3):239-280, 1985. |
| Sirotkin, K., and N. Davidson, Developmentally regulated transcription from Drosophila melanogaster chromosomal site 67B, Dev. Biol 89:196-210, 1982. |
| Mason, P. J., et al., The expression of heat shock genes during normal development in Drosophila melanogaster, Mol. Gen. Genet. 194:73-78, 1984. |
| Ireland, R. C., et al., Ecdysterone induces the transcription of four heat-shock genes in Drosophila S3 cells and imaginal discs, Dev. Biol. 93:498-507, 1982. |
| Buzin, C. H. and N. Bournias-Vardiabasis, The induction of a subset of heat-shock proteins by drugs that inhibit differentiation in Drosophila embryonic cell cultures, in Heat shock: from bacteria to man, M. J. Schlesinger et al., eds., Cold Spring Harbor Laboratory, Cold Spring Harbor, NY, pp. 387-394, 1982. |
| Buzin, C. H., and N. Bournias-Vardiabasis, Teratogens induce a subset of small heat shock proteins in Drosophila primary embryonic cell cultures, Proc. Natl. Acad. Sci. USA 81:4075-4079, 1984. |
| Rubin, G. M., and A. C. Spradling, Genetic transformation of Drosophila with transposable element vectors, Science 218:348-353, 1982. |
| Di Nocera, P. P., and I. B. Dawid, Transient expression of genes introduced into cultured cells of Drosophila, Proc. Natl. Acad. Sci. USA 80:7095-7098, 1983. |
| Voellmy, R., et al., A DNA segment isolated from chromosomal site 67B in D. melanogaster contains four closely linked heat-shock genes, Cell 23:261-270, 1981. |
| Lawson, R., et al., Ecdysterone selectively stimulates the expression of a 23000-Da heat-shock protein--.beta.-galactosidase hybrid gene in cultured Drosophila cells, Dev. Biol. 110:321--330, 1985. |
| Mestril, R., et al., Identification of a sequence element in the promoter of the Drosophila melanogaster hsp23 gene that is required for its heat activation, EMBO J. 4(11):2971-2976, 1985. |
| Mestril, R., et al., Heat shock and ecdysterone activation of the Drosophila melanogaster hsp23 gene: a sequence element implied in developmental regulation, EMBO J. 5(7):1667-1674, 1986. |
| Lis, J. T., et al., New heat shock puffs and .beta.-galactosidase activity resulting from transformation of Drosophila with an hsp70-lacZ hybrid gene, Cell 35:403-410, 1983. |
| Voellmy, R., The heat shock genes: a family of highly conserved genes with a superbly complex expression pattern, BioEssays 1(5):213-217, 1985. |
| Southgate, R., et al., Nucleotide sequence analysis of the Drosophila small heat shock gene cluster at locus 67B, J. Mol. Biol. 165:35-37, 1983. |
| Lis, J. T., et al., A novel arrangement of tandemly repeated genes at a major heat shock site in D. melanogaster, Cell 14:901-919, 1978. |
| Bournias-Vardiabasis, N., and J. Flores, Drug metabolizing enzymes in Drosophila melanogaster: teratogenicity of cyclophosphamide in vitro, Teratog. Carcinog. Mutag. 3:255-262, 1983. |