Ambros, V (1999). Cell cycle-dependent sequencing of cell fate decisions in Caenorhabditis elegans vulva precursor cells. Development 126, 1947-1956.[Abstract]
Aroian, R. V., Koga, M., Mendel, J. E., Ohshima, Y. and Sternberg, P. W (1990). The let-23 gene necessary for Caenorhabditis elegans vulval induction encodes a tyrosine kinase of the EGF receptor subfamily. Nature 348, 693-699.[Medline]
Beitel, G. J., Clark, S. G. and Horvitz, H. R (1990). Caenorhabditis elegansras gene let-60 acts as a switch in the pathway of vulval induction. Nature 348, 503-509.[Medline]
Beitel, G. J., Tuck, S., Greenwald, I. and Horvitz, H. R (1995). The Caenorhabditis elegans gene lin-1 encodes an ETS-domain protein and defines a branch of the vulval induction pathway. Genes Dev 9, 3149-3162.[Abstract/Free Full Text]
Brenner, S (1974). The genetics of Caenorhabditis elegans. Genetics 77, 71-94.[Abstract/Free Full Text]
Chamberlin, H. M. and Sternberg, P. W (1995). Mutations in the Caenorhabditis elegans gene vab-3 reveal distinct roles in fate specification and unequal cytokinesis in an asymmetric cell division. Dev. Biol 170, 679-689.[Medline]
Clark, S. G., Lu, X. and Horvitz, H. R (1994). The Caenorhabditis elegans locus lin-15 , a negative regulator of a tyrosine kinase signaling pathway, encodes two different proteins. Genetics 137, 987-997.[Abstract]
Euling, S. and Ambros, V (1996). Heterochronic genes control cell cycle progress and developmental competence of C. elegans vulval precursor cells. Cell 84, 667-676.[Medline]
Felix, M.-A. and Sternberg, P. W (1997). Two nested gonadal inductions of the vulva in nematodes. Development 124, 253-259.[Abstract]
Ferguson, E. L. and Horvitz, H. R (1989). The multivulva phenotype of certain Caenorhabditis elegans mutants results from defects in two functionally redundant pathways. Genetics 123, 109-121.[Abstract/Free Full Text]
Ferguson, E. L., Sternberg, P. W. and Horvitz, H. R (1987). A genetic pathway for the specification of the vulval cell lineages of Caenorhabditis elegans. Nature 326, 259-267.[Medline]
George, S. E., Simokat, K., Hardin, J. and Chisholm, A. D (1998). The VAB-1 Eph receptor tyrosine kinase functions in neural and epithelial morphogenesis in C. elegans. Cell 92, 633-643.[Medline]
Greenwald, I. and Rubin, G. M (1992). Making a difference: the role of cell-cell interactions in establishing separate identities for equivalent cells. Cell 68, 271-281.[Medline]
Greenwald, I. S., Sternberg, P. W. and Horvitz, H. R (1983). The lin-12 locus specifies cell fates in Caenorhabditis elegans. Cell 34, 435-444.[Medline]
Han, M. and Sternberg, P. W (1990). let-60 , a gene that specifies cell fates during C. elegans vulval induction, encodes a Ras protein. Cell 63, 921-931.[Medline]
Han, M. and Sternberg, P. W (1990). Analysis of dominant negative mutations of the Caenorhabditis elegans let-60 ras gene. Genes Dev 5, 2188-2198.[Abstract/Free Full Text]
Hedgecock, E. M., Culotti, J. G. and Hall, D. H (1990). The unc-5 , unc-6 , and unc-40 genes guide circumferential migrations of pioneer axons and mesodermal cells on the epidermis in C. elegans. Neuron 2, 61-85.
Herskowitz, I (1989). A regulatory hierarchy for cell specification in yeast. Nature 342, 749-757.[Medline]
Hill, R. J. and Sternberg, P.W (1992). The gene lin-3 encodes an inductive signal for vulval development in C. elegans. Nature 358, 470-476.[Medline]
Horvitz, H. R. and Herskowitz, I (1992). Mechanisms of asymmetric cell division: two Bs or not two Bs, that is the question. Cell 68, 237-255.[Medline]
Huang, L. S., Tzou, P. and Sternberg, P. W (1994). The lin-15 locus encodes two negative regulators of Caenorhabditis elegans vulval development. Mol. Biol. Cell 5, 395-412.[Abstract]
Jan, Y. N. and Jan, L. Y (1998). Asymmetric cell division. Nature 392, 775-778.[Medline]
Jiang, L. I. and Sternberg, P. W (1998). Interaction of EGF, Wnt and HOM-C genes specify the P12 neuroectoblast fate in C. elegans. Development 125, 2337-2347.[Abstract]
Katz, W. S., Hill, R. J., Clandinin, T. R. and Sternberg, P. W (1995). Different levels of the C. elegans growth factor LIN-3 promote distinct vulval precursor fates. Cell 82, 297-307.[Medline]
Katz, W. S., Lesa, G. M., Yannoukakos, D., Clandinin, T. R., Schlessinger, J. and Sternberg, P. W (1996). A point mutation in the extracellular domain activates LET-23, the Caenorhabditis elegans epidermal growth factor receptor homolog. Mol. Cell. Biol 16, 529-537.[Abstract]
Kimble, J (1981). Alterations in cell lineage following laser ablation of cells in the somatic gonad of Caenorhabditis elegans. Dev. Biol 87, 286-300.[Medline]
Kimble, J. and Hirsh, D (1979). The postembryonic cell lineages of the hermaphrodite and male gonads in Caenorhabditis elegans. Dev. Biol 70, 396-417.[Medline]
Koga, M. and Ohshima, Y (1995). Mosaic analysis of the let-23 gene function in vulval induction of Caenorhabditis elegans. Development 121, 2655-2666.[Abstract]
Mello, C. C., Kramer, J. M., Stinchcomb, D. and Ambros, V (1991). Efficient gene transfer in C. elegans after microinjection of DNA into germline cytoplasm: extrachromosomal maintenance and integration of transforming sequences. EMBO J 10, 3959-3970.[Medline]
Miller, L. M., Gallegos, M. E., Morisseau, B. A. and Kim, S. K (1993). lin-31 , a Caenorhabditis elegans HNF-3/ fork head transcription factor homolog, specifies three alternative cell fates in vulval development. Genes Dev 7, 933-947.[Abstract/Free Full Text]
Newman, A. P., White, J. G. and Sternberg, P.W (1995). The Caenorhabditis elegans lin-12 gene mediates induction of ventral uterine specialization by the anchor cell. Development 121, 263-271.[Abstract]
Newman, A. P., White, J. G. and Sternberg, P. W (1996). Morphogenesis of the C. elegans hermaphrodite uterus. Development 122, 3617-3626.[Abstract]
Sawa, H., Lobel, L. and Horvitz, H. R (1996). The Caenorhabditis elegans gene lin-17 , which is required for certain asymmetric cell divisions, encodes a putative seven-transmembrane protein similar to the DrosophilaFrizzled protein. Genes Dev 10, 2189-2197.[Abstract/Free Full Text]
Seydoux, G. and Greenwald, I (1989). Cell autonomy of lin-12 function in a cell fate decision in C. elegans. Cell 57, 1237-1245.[Medline]
Sharma-Kishore, R., White, J. G., Southgate, E. and Podbilewicz, B (1999). Formation of the vulva in Caenorhabditis elegans : a paradigm for organogenesis. Development 126, 691-699.[Abstract]
Shemer, G., Kishore, R. and Podbilewicz, B (2000). Ring formation drives invagination of the vulva in Caenorhabditis elegans : Ras, cell fusion and cell migration determine structural fates. Dev. Biol 221, 233-248.[Medline]
Simske, J. S. and Kim, S. K (1995). Sequential signaling during Caenorhabditis elegans vulval induction. Nature 375, 142-146.[Medline]
Sternberg, P. W (1988). Lateral inhibition during vulval induction in Caenorhabditis elegans. Nature 335, 551-554.[Medline]
Sternberg, P. W. and Horvitz, H. R (1986). Pattern formation during vulval induction in C. elegans. Cell 44, 761-772.[Medline]
Sternberg, P. W. and Horvitz, H. R (1988). lin-17 mutations of Caenorhabditis elegans disrupt certain asymmetric cell divisions. Dev. Biol 130, 67-73.[Medline]
Sternberg, P. W. and Horvitz, H. R (1989). The combined action of two intercellular signaling pathways specifies three cell fates during vulval induction in C. elegans. Cell 58, 679-693.[Medline]
Sulston, J. E. and Horvitz, H. R (1977). Postembryonic cell lineages of the nematode Caenorhabditis elegans. Dev. Biol 56, 110-156.[Medline]
Sulston, J. E. and White, J. G (1980). Regulation and cell autonomy during postembryonic development of Caenorhabditis elegans. Dev. Biol 78, 577-597.[Medline]
Tan, P. O. and Kim, S. K (1999). Signaling specificity, the RTK/RAS/MAP kinase pathway in metazoans. Trends Genet 15, 145-149.[Medline]
Thomas, J. H., Stern, M. J. and Horvitz, H. R (1990). Cell interactions coordinate the development of the C. elegans egg-laying system. Cell 62, 1041-1052.[Medline]
Vinson, C. R., Conover, S. and Adler, P. N (1989). A Drosophila tissue polarity locus encodes a protein containing seven potential transmembrane domains. Nature 338, 263-264.[Medline]
Wang, M. and Sternberg, P. W (1999). Competence and commitment of Caenorhabditis elegans vulval precursor cells. Dev. Biol 212, 12-24.[Medline]
Way, J. C., Run, J.-Q. and Wang, A. Y (1992). Regulation of anterior cell-specific mec-3 expression during asymmetric cell division in C. elegans. Dev. Dynamics 194, 289-302.[Medline]
Way, J. C., Wang, L., Run, J.-Q. and Wang, A (1991). The mec-3 gene contains cis -acting elements mediating positive and negative regulation in cells produced by asymmetric cell division in Caenorhabditis elegans. Genes Dev 5, 2199-2211.[Abstract/Free Full Text]