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Albertson, D. G., Sulston, J. E. and White, J. G (1978). Cell Cycling and DNA Replication in a Mutant Blocked in Cell Division in the Nematode Caenorhabditis elegans. Dev. Biol 63, 165-178.[Medline]

Ambros, V (1999). Cell cycle-dependent sequencing of cell fate decisions in Caenorhabditis elegans vulva precursor cells. Development 126, 1947-56.[Abstract]

Ambros, V. and Horvitz, H. R (1984). Heterochronic mutants of the nematode Caenorhabditis elegans. Science 266, 409-416.

Barstead, R. J., Kleiman, L. and Waterston, R. H (1991). Cloning, sequencing, and mapping of an alpha-actinin gene from the nematode Caenorhabditis elegans. Cell Motil. Cytoskeleton 20, 69-78.[Medline]

Boxem, M., Srinivasan, D. G. and van den Heuvel, S (1999). The Caenorhabditis elegans gene ncc-1 encodes a cdc2-related kinase required for M phase in meiotic and mitotic cell divisions, but not for S phase. Development 126, 2227-2239.[Abstract]

Burdine, R. D., Branda, C. S. and Stern, M. J (1998). EGL-17(FGF) expression coordinates the attraction of the migrating sex myoblasts with vulval induction in C. elegans. Development 125, 1083-1093.[Abstract]

Cui, X. and Doe, C. Q (1995). The role of the cell cycle and cytokinesis in regulating neuroblast sublineage gene expression in the Drosophila CNS. Development 121, 3233-3243.[Abstract]

Davies, A. M (1994). Intrinsic programmes of growth and survival in developing vertebrate neurons. Trends Neurosci 17, 195-199.[Medline]

de Nooij, J. C. and Hariharan, I. K (1995). Uncoupling cell fate determination from patterned cell division in the Drosophila eye. Science 270, 983-985.[Abstract/Free Full Text]

Durand, B., Fero, M. L., Roberts, J. M. and Raff, M. C (1998). p27Kip1 alters the response of cells to mitogen and is part of a cell-intrinsic timer that arrests the cell cycle and initiates differentiation. Curr Biol 8, 431-40.[Medline]

Dyson, N (1998). The regulation of E2F by pRB-family proteins. Genes Dev 12, 2245-2262.[Free Full Text]

Edgar, B. A. and O'Farrell, P. H (1990). The three postblastoderm cell cycles of Drosophila embryogenesis are regulated in G2 by string. Cell 62, 469-480.[Medline]

Euling, S. and Ambros, V (1996). Reversal of cell fate determination in Caenorhabditis elegans vulval development. Development 122, 2507-15.[Abstract]

Ferguson, E. L. and Horvitz, H. R (1985). Identification and characterization of 22 genes that affect the vulval cell lineages of the nematode Caenorhabditis elegans. Genetics 110, 17-72.[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]

Fire, A., Xu, S., Montgomery, M. K., Kostas, S. A., Driver, S. E. and Mello, C. C (1998). Potent and specific genetic interference by double-stranded RNA in Caenorhabditis. Nature 391, 806-811.[Medline]

Francis, R. and Waterston, R. H (1991). Muscle cell attachment in Caenorhabditis elegans. J. Cell Biol 114, 465-479.[Abstract/Free Full Text]

Freyd, G., Kim, S. K. and Horvitz, H. R (1990). Novel cysteine-rich motif and homeodomain in the product of the Caenorhabditis elegans cell lineage gene lin-11. Nature 344, 876-879.[Medline]

Gao, F. B., Durand, B. and Raff, M (1997). Oligodendrocyte precursor cells count time but not cell divisions before differentiation. Curr. Biol 7, 152-155.[Medline]

Greenwald, I. S., Sternberg, P. W. and Horvitz, H. R (1983). The lin-12 locus specifies cell fates in C. elegans. Cell 34, 435-444.[Medline]

Hanna-Rose, W. and Han, M (1999). COG-2, a sox domain protein necessary for establishing a functional vulval-uterine connection in Caenorhabditis elegans. Development 126, 169-179.[Abstract]

Hedgecock, E. M. and White, J. G (1985). Polyploid tisssues in the nematode C.elegans. Dev. Biol 107, 128-133.[Medline]

Herman, R. K. and Hedgecock, E. M (1990). Limitation of the size of the vulval primordium of Caenorhabditis elegans by lin-15 expression in surrounding hypodermis. Nature 348, 169-171.[Medline]

Herman, T. and Horvitz, H. R (1999). Three proteins involved in Caenorhabditis elegans vulval invagination are similar to components of a glycosylation pathway. Proc. Natl Acad. Sci. USA 96, 974-979.[Abstract/Free Full Text]

Hobert, O., D'Alberti, T., Liu, Y. and Ruvkun, G (1998). Control of neural development and function in a thermoregulatory network by the LIM homeobox gene lin-11. J. Neurosci 18, 2084-2096.[Abstract/Free Full Text]

Hong, Y., Roy, R. and Ambros, V (1998). Developmental regulation of a cyclin-dependent kinase inhibitor controls postembryonic cell cycle progression in Caenorhabditis elegans. Development 125, 3585-3597.[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]

Kelly, W. G., Xu, S., Montgomery, M. K. and Fire, A (1997). Distinct requirements for somatic and germline expression of a generally expressed Caenorhabditis elegans gene. Genetics 146, 227-238.[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]

Kipreos, E. T., Lander, L. E., Wing, J. P., He, W. W. and Hedgecock, E. M (1996). cul-1 is required for cell cycle exit in C. elegans and identifies a novel gene family. Cell 85, 829-839.[Medline]

Knoblich, J. A., Sauer, K., Jones, L., Richardson, H., Saint, R. and Lehner, C. F (1994). Cyclin E controls S phase progression and its down-regulation during Drosophila embryogenesis is required for the arrest of cell proliferation. Cell 77, 107-120.[Medline]

Krek, W (1998). Proteolysis and the G1-S transition: the SCF connection. Curr. Opin. Genet. Dev 8, 36-42.[Medline]

Lu, X. and Horvitz, H. R (1998). lin-35 and lin-53 , two genes that antagonize a C. elegans Ras pathway, encode proteins similar to Rb and its binding protein RbAp48. Cell 95, 981-991.[Medline]

Mello, C. and Fire, A (1995). DNA transformation. Methods Cell Biol 48, 451-482.[Medline]

Mohler, W. A., Simske, J. S., Williams-Masson, E. M., Hardin, J. D. and White, J. G (1998). Dynamics and ultrastructure of developmental cell fusions in the Caenorhabditis elegans hypodermis. Curr. Biol 8, 1087-1090.[Medline]

Nigg, E. A (1995). Cyclin-dependent protein kinases: key regulators of the eukaryotic cell cycle. Bioessays 17, 471-480.[Medline]

Ohtsubo, M. and Roberts, J. M (1993). Cyclin-dependent regulation of G1in mammalian fibroblasts. Science 259, 1908-1912.[Abstract/Free Full Text]

Park, M. and Krause, M. W (1999). Regulation of postembryonic G(1) cell cycle progression in Caenorhabditis elegans by a cyclin D/CDK-like complex. Development 126, 4849-4860.[Abstract]

Pulak, R. and Anderson, P (1993). mRNA surveillance by the Caenorhabditis elegans smg genes. Genes Dev 7, 1885-1897.[Abstract/Free Full Text]

Raff, M. C., Durand, B. and Gao, F. B (1998). Cell number control andtiming in animal development: the oligodendrocyte cell lineage. Int. J. Dev. Biol 42, 263-267.[Medline]

Richardson, H. E., O'Keefe, L. V., Reed, S. I. and Saint, R (1993). A Drosophila G1-specific cyclin E homolog exhibits different modes of expression during embryogenesis. Development 119, 673-690.[Abstract]

Seydoux, G., Savage, C. and Greenwald, I (1993). Isolation and characterization of mutations causing abnormal eversion of the vulva in Caenorhabditis elegans. Dev. Biol 157, 423-436.[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]

Shiels, B., Aslam, N., McKellar, S., Smyth, A. and Kinnaird, J (1997). Modulation of protein synthesis relative to DNA synthesis alters the timing of differentiation in the protozoan parasite Theileria annulata. J. Cell Sci 110, 1441-1451.[Abstract]

Singer, J. D., Gurian-West, M., Clurman, B. and Roberts, J. M (1999). Cullin-3 targets cyclin E for upiquitination and controls S phase in mammalian cells. Genes Dev 13, 2375-2387.[Abstract/Free Full Text]

Sternberg, P. W (1988). Lateral inhibition during vulval induction in Caenorhabditis elegans. Nature 335, 551-554.[Medline]

Sternberg, P. W. and Han, M (1998). Genetics of RAS signaling in C. elegans. Trends Genet 14, 466-472.[Medline]

Sternberg, P. W. and Horvitz, H. R (1986). Pattern formation during vulval development in C. elegans. Cell 44, 761-772.[Medline]

Strausfeld, U. P., Howell, M., Descombes, P., Chevalier, S., Rempel, R. E., Adamczewski, J., Maller, J. L., Hunt, T. and Blow, J. J (1996). Both cyclin A and cyclin E have S-phase promoting (SPF) activity in Xenopus egg extracts. J. Cell Sci 109, 1555-1563.[Abstract]

Sulston, J. E. and Horvitz, H. R (1977). Post-embryonic cell lineages of the nematode, Caenorhabditis elegans. Dev. Biol 56, 110-156.[Medline]

Terns, R. M., Kroll-Conner, P., Zhu, J., Chung, S. and Rothman, J. H (1997). A deficiency screen for zygotic loci required for establishment and patterning of the epidermis in Caenorhabditis elegans. Genetics 146, 185-206.[Abstract]

Wai, P., Truong, B. and Bhat, K. M (1999). Cell division genes promote asymmetric interaction between Numb and Notch in the Drosophila CNS. Development 126, 2759-2770.[Abstract]

Wang, M. and Sternberg, P. W (1999). Competence and commitment of Caenorhabditis elegans vulval precursor cells. Dev. Biol 212, 12-24.[Medline]

White, J. G., Horvitz, H. R. and Sulston, J. E (1982). Neurone differentiation in cell lineage mutants of Caenorhabditis elegans. Nature 297, 584-587.[Medline]

Wood, W. G., Bunch, C., Kelly, S., Gunn, Y. and Breckon, G (1985). Control of haemoglobin switching by a developmental clock?. Nature 313, 320-323.[Medline]

Yochem, J., Weston, K. and Greenwald, I (1988). The Caenorhabditis eleganslin-12 gene encodes a transmembrane protein with overall similarity to Drosophila Notch. Nature 335, 547-550.[Medline]

Yu, Z. K., Gervais, J. L. and Zhang, H (1998). Human CUL-1 associates with the SKP1/SKP2 complex and regulates p21(CIP1/WAF1) and cyclin D proteins. Proc. Natl Acad. Sci. USA 95, 11324-11329.[Abstract/Free Full Text]




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