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Bach, I., Rhodes, S. J., Pearse, R. V., 2nd, Heinzel, T., Gloss, B., Scully, K. M., Sawchenko, P. E. and Rosenfeld, M.G (1995). P-Lim, a LIM homeodomain factor, is expressed during pituitary organ and cell commitment and synergizes with Pit-1. Proc. Natl. Acad. Sci. USA 92, 2720-2724.[Abstract/Free Full Text]

Bach, I., Carriere, C., Ostendorff, H. P., Andersen, B. and Rosenfeld, M. G (1997). A family of LIM domain-associated cofactors confer transcriptional synergism between LIM and Otx homeodomain proteins. Genes Dev 11, 1370-1380.[Abstract/Free Full Text]

Chalfie, M. and Au, M (1989). Genetic control of differentiation of the C. elegans touch receptor neurons. Science 243, 1027-1033.[Abstract/Free Full Text]

Chalfie, M., Horvitz, H. R. and Sulston, J. E (1981). Mutations that lead to reiterations in the cell lineages of Caenorhabditis elegans. Cell 24, 59-69.[Medline]

Chalfie, M. and Sulston, J (1981). Developmental genetics of the mechanosensory neurons of Caenorhabditis elegans. Dev. Biol 82, 358-370.[Medline]

Chalfie, M. and Thomson, J. N (1982). Structural and functional diversity in the neuronal microtubules of Caenorhabditis elegans. J. Cell Biol 93, 15-23.[Abstract/Free Full Text]

Dawid, I. B., Breen, J. J. and Toyama, R (1998). LIM domains: multiple roles as adapters and functional modifiers in protein interactions. Trends Genet 14, 156-162.[Medline]

Desai, C., Garriga, G., McIntire, S. L. and Horvitz, H. R (1988). A genetic pathway for the development of the Caenorhabditis elegans HSN motor neurons. Nature 336, 638-646.[Medline]

Driscoll, M. and Chalfie, M (1991). The mec-4 gene is a member of a family of Caenorhabditis elegans genes that can mutate to induce neuronal degeneration. Nature 349, 588-593.[Medline]

Feuerstein, R., Wang, X., Song, D., Cooke, N. E. and Liebhaber, S. A (1994). The LIM/double zinc-finger motif functions as a protein dimerization domain. Proc. Natl. Acad. Sci.USA 91, 10655-10659.[Abstract/Free Full Text]

Finney, M., Horvitz, H. R. and Ruvkun, G (1988). The C. elegans cell lineage and differentiation gene unc-86 encodes a protein with a homeodomain and extended similarity to transcription factors. Cell 55, 757-769.[Medline]

Finney, M. and Ruvkun, G (1990). The unc-86 gene product couples cell lineage and cell identity in C. elegans. Cell 63, 895-905.[Medline]

Fire, A., Harrison, S. W. and Dixon, D (1990). A modular set of lacZ fusion vectors for studying gene expression in Caenorhabditis elegans. Gene 93, 189-198.[Medline]

Hamelin, M., Scott, I. M., Way, J. C. and Culotti, J.G (1992). The mec-7 b-tubulin gene of C. elegans is expressed primarily in the touch receptor neurons. EMBO J 11, 2885-2893.[Medline]

Heine, U. and Blumenthal, T (1986). Characterization of regions of the Caenorhabditiselegans X chromosome containing vitellogenin genes. J. Mol. Biol 188, 301-312.[Medline]

Herr, W. and Cleary, M.A (1995). The POU domain: versatility in transcriptional regulation by a flexible two-in-one DNA-binding domain. Genes Dev 9, 1679-1693.[Free Full Text]

Heschl, M. F. P. and Baillie, D. L (1990). Functional elements and domains inferred from sequence comparisons of a heat shock gene in two nematodes. J. Mol. Evol 31, 3-9.[Medline]

Hobert, O., Mori, I., Yamashita, Y., Honda, H., Ohshima, Y., Liu, Y. and Ruvkun, G (1997). Regulation of interneuron function in the C. elegans thermoregulatory pathway by the ttx-3 LIM homeobox gene. Neuron 19, 345-357.[Medline]

Jones, D., Russnak, R. H., Kay, R. J. and Candido, P. M (1986). Structure, expression, and evolution of a heat shock gene locus in Caenorhabditis elegans that is flanked by repetitive elements. J. Biol. Chem 261, 12006-12015.[Abstract/Free Full Text]

Kramer, J. M., French, R. P., Park, E.-U. and Johnson, J. J (1990). The Caenorhabditis elegans rol-6 gene, which interacts with the sqt-1 collagen gene to determine organismal morphology, encodes a collagen. Molec. Cell. Biol 10, 2081-2089.[Abstract/Free Full Text]

Krause, M. W. and Hirsh, D (1987). A trans-spliced leader sequence in actin mRNA in C. elegans. Cell 49, 753-761.[Medline]

Kumagai, A. and Dunphy, W. G (1991). The cdc25 protein controls tyrosine dephosphorylation of the cdc2 protein in a cell-free system. Cell 64, 903-914.[Medline]

Kuwabara, P. E. and Shah, S (1994). Cloning by synteny: identifying C. briggsae homologues of C. elegans genes. Nucleic Acids Res 22, 4414-4418.[Abstract/Free Full Text]

Lai, C. C., Hong, K., Xue, J., Chalfie, M. and Driscoll, M (1996). Sequence and transmembrane topology of MEC-4, an ion channel subunit required for mechanotransduction in C. elegans. J. Cell Biol 133, 1071-1081.[Abstract/Free Full Text]

Lee, Y. H., Huang, X. Y., Hirsch, D., Fox, G. E. and Hecht, R. M (1992). Conservation of gene organization and trans-splicing in the glyceraldehyde-3-phosphate dehydrogenase-encoding genes of Caenorhabditis briggsae. Gene 121, 227-235.[Medline]

Lichtsteiner, S. and Tjian, R (1995). Synergistic activation of transcription by UNC-86 and MEC-3 in Caenorhabditis elegans embryo extracts. EMBO J 14, 3937-3945.[Medline]

Lundgren, S. E., Callahan, C. A., Thor, S. and Thomas, J. B (1995). Control of neuronal pathway selection by the Drosophila LIM homeodomain gene apterous. Development 121, 1769-1773.[Abstract]

Ma, C. and Simons, R. W (1990). The IS10 antisense RNA blocks ribosome binding at the transposase translation initiation site. EMBO J 9, 1267-1274.[Medline]

Maxam, A. M. and Gilbert, W (1980). Sequencing end-labeled DNA with base-specific chemical cleavages. Meth. Enzymol 65, 499-560.[Medline]

Mead, D. A., Szczesna-Skorupa, E. and Kemper, B (1986). Single-stranded DNA blue T7 promoter plasmids a versatile tandem promoter system for cloning and protein engineering. Protein Engineer 1, 67-74.[Abstract/Free Full Text]

Mello, C. and Fire, A (1995). DNA Transformation. In Caenorhabditis elegans: Modern Biological Analysis of an Organism . (ed. H. F. Epstein and D. C. Shakes),. Methods in Cell Biology 48, 451-482.[Medline]

Mello, C. C., Kramer, J. M., Stinchcomb, D. and Ambros, V (1991). Efficient gene transfer in C. elegans : Extrachromosomal maintenance and integration of transforming sequences. EMBO J 10, 3959-3970.[Medline]

Mitani, S., Du. H, Hall, D. H., Driscoll, M. and Chalfie, M (1993). Combinatorial control of touch receptor neuron expression in Caenorhabditis elegans. Development 119, 773-783.[Abstract]

Moffat, B. A. and Studier, F. W (1987). T7 lysozyme inhibits transcription by T7 RNA polymerase. Cell 49, 221-227.[Medline]

Molkentin, J. D., and Olson, E. N (1996). Combinatorial control of muscle development by basic helix-loop-helix and MADS-box transcription factors. Proc. Natl. Acad. Sci.USA 93, 9366-9373.[Abstract/Free Full Text]

Palazzolo, M.J., Hamilton, B. A., Ding, D., Martin, C. H., Mead, D. A., Mierendorf, R. C., Raghaven, K. V., Meyerowitz, E. M. and Lipshitz, H. D (1990). Phage lambda cDNA cloning vectors for subtractive hybridization, fusion-protein synthesis and Cre- loxP automatic plasmid subcloning. Gene 88, 25-36.[Medline]

Ryan, A. K. and Rosenfeld, M. G (1997). POU domain family values: flexibility, partnerships, and developmental codes. Genes Dev 11, 1207-1225.[Free Full Text]

Savage, C., Hamelin, M., Culotti, J. G., Coulson, A., Albertson, D. G. and Chalfie, M (1989). mec-7 is a b-tubulin gene required for the production of 15-protofilament microtubules in Caenorhabditis elegans. Genes Dev 3, 870-881.[Abstract/Free Full Text]

Schmeichel, K. L. and Beckerle, M. C (1994). The LIM domain is a modular protein-binding interface. Cell 79, 211-219.[Medline]

Sheng, H. Z., Zhadanov, A. B., Mosinger, B., Jr, Fujii, T., Bertuzzi, S.,Grinberg, A., Lee, E. J., Huang, S. P., Mahon, K. A. and Westphal, H (1996). Specification of pituitary cell lineages by the LIM homeobox gene Lhx3. Science 272, 1004-1007.[Abstract]

Simpson-Brose, M., Treisman, J. and Desplan, C (1994). Synergy between the hunchback and bicoid morphogens is required for anterior patterning in Drosophila. Cell 78, 855-865.[Medline]

Stringham, E. G., Dixon, D. K., Jones, D. and Candido E. P. M (1992). Temporal and spatial expression patterns of the small heat shock ( hsp16 ) genes in transgenic Caenorhabditis elegans. Mol. Biol. Cell 3, 221-233.[Abstract]

Studier, F. W (1991). Use of bacteriophage T7 lysozyme to improve an inducible T7 expression system. J. Mol. Biol 219, 37-46.[Medline]

Studier, F. W. and Moffat, B. A (1986). Use of bacteriophage T7 RNA polymerase to direct selective high-level expression of cloned genes. J. Mol. Biol 189, 113-130.[Medline]

Sulston, J. E., Schierenberg, E., White, J. G. and Thomson, J. N (1983). The embryonic cell lineage of the nematode Caenorhabditis elegans. Dev. Biol 100, 64-119.[Medline]

Sze, J. Y., Liu, Y. and Ruvkun, G (1997). VP16-activation of the neural specification transcription factor UNC-86 suppresses mutations in downstream genes and causes defects in neural migration and axon outgrowth. Development 124, 1159-1168.[Abstract]

Thor, S. and Thomas, J. B (1997). The Drosophila islet gene governs axon pathfinding and neurotransmitter identity. Neuron 18, 397-409.[Medline]

Tremblay, J. J., Lanct\231t, C. and Drouin, J (1998). The pan-pituitary activator of transcription, Ptx1 (pituitary homeobox 1), acts in synergy with SF-1 andPit1 and is an upstream regulator of the Lim-homeodomain gene Lim3/Lhx3. Mol. Endocrinol 12, 428-441.[Abstract/Free Full Text]

Trent, C., Tsung, N. and Horvitz, H. R (1983). Egg-laying defective mutants of the nematode Caenorhabditis elegans. Genetics 104, 619-647.[Abstract/Free Full Text]

Tsuchida, T., Ensini, M., Morton, S. B., Baldasarre, M., Edlund, T., Jessell, T. M. and Pfaff, S. L (1994). Topographic organization of embryonic motor neurons defined by expression of LIM homeobox genes. Cell 79, 957-970.[Medline]

Vervoort, M., Dambly-Chaudiere, C. and Ghysen, A (1997). Cell fate determination in Drosophila. Curr. Opin. Neurobiol 7, 21-28.[Medline]

Way, J. C. and Chalfie, M (1988). mec-3 , a homeobox-containing gene that specifies differentiation of the touch receptor neurons in C. elegans. Cell 54, 5-16.[Medline]

Way, J. C. and Chalfie, M (1989). The mec-3 gene of Caenorhabditis elegans requires its own product for maintained expression and is expressed in three neuronal subtypes. Genes Dev 3, 1823-1833.[Abstract/Free Full Text]

Way, J. C., Wang, L., Ran, 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]

Xue, D., Finney, M., Ruvkun, G. and Chalfie, M (1992). Regulation of the mec-3 gene by the C. elegans homeoproteins UNC-86 and MEC-3. EMBO J 11, 4969-4979.[Medline]

Xue, D., Tu, Y. and Chalfie, M (1993). Cooperative interaction between the C. elegans homeoproteins UNC-86 and MEC-3. Science 261, 1324-1328.[Abstract/Free Full Text]

Zucker-Aprison, E. and Blumenthal, T (1989). Potential regulatory elements of nematode vitellogenin genes revealed by interspecies sequence comparison. J. Mol. Evol 28, 487-496.[Medline]




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