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Calzone, F. J., Lee, J. J., Le, N., Britten, R. J. and Davidson, E. H (1988). A long, nontranslatable poly(A) RNA stored in the egg of the sea urchin Strongylocentrotus purpuratus. Genes Dev 2, 305-318.[Abstract/Free Full Text]

Chen, Z. Q., Kan, N. C., Pribyl, L., Lautenberger, J. A., Moudrianakis, E. and Papas, T. S (1988). Molecular cloning of the EST-protooncogene of the sea urchin and analysis of its developmental expression. Dev. Biol 125, 432-440.[Medline]

Costantini, F. D., Britten, R. J. and Davidson, E. H (1980). Message sequences and short repetitive sequences are interspersed in sea urchin egg poly(A)+RNAs. Nature 287, 111-117.[Medline]

, 3269-3290. Duncan, R. and Humphreys, T (1981). Most sea urchin maternal mRNA sequences in every abundance class appear in both polyadenylated and nonpolyadenylated molecules. Dev. Biol 88, 201-210.[Medline]

Evans, T., Rosenthal, E., Youngblom, J., Distel, D. and Hunt, T (1983). Cyclin: A protein specified by maternal mRNA in sea urchin eggs that is destroyed at each cleavage division. Cell 33, 389-396.[Medline]

Flytzanis, C. N., Brandhorst, B. P., Britten, R. J. and Davidson, E. H (1982). Developmental patterns of cytoplasmic transcript prevalence in sea urchin embryos. Dev. Biol 91, 27-35.[Medline]

Galau, G. A., Klein, W. H., Davis, M. M., Wold, B. J., Britten, R. J. and Davidson, E. H (1976). Structural gene sets active in embryos and adult tissues of the sea urchin. Cell 7, 487-505.[Medline]

Galau, G. A., Lipson, E. D., Britten, R. J. and Davidson, E. H (1977). Synthesis and turnover of polysomal mRNAs in sea urchin embryos. Cell 10, 415-432.[Medline]

Goustin, A. S (1981). Two temporal phases for the control of histone gene activity in cleaving sea urchin embryos ( S. purpurtus ). Dev. Biol 87, 163-.[Medline]

Johnston, S. H., Rauskolb, C., Wilson, R., Prabhakaran, B., Irvine, K. D. and Vogt, T. F (1997). A family of mammalian Fringe genes implicated in boundary determination and the Notch pathway. Development 124, 2245-2254.[Abstract]

Kelsowine-Miller, L., Yoon, J., Peeler, M. T. and Winkler, M. M (1993). Sea urchin maternal messenger RNA classes with distinct developmental regulation. Dev. Genet 14, 397-406.[Medline]

Lasky, L. A., Lev, Z., Xin, J.-H., Britten, R. J. and Davidson, E. H (1980). Messenger RNA prevalence in sea urchin embryos measured with cloned cDNAs. Proc. Natl. Acad. Sci. USA 77, 5317-5321.[Abstract/Free Full Text]

Maier, E., Meier-Ewert, S., Ahmadi, A. R., Curtis, J. and Lehrach, H (1994). Application of robotic technology to automated sequence fingerprint analysis by oligonucleotide hybridization. J. Biotech 35, 191-203.[Medline]

Pines, J. and Hunt, T (1987). Molecular cloning and characterization of the messenger RNA for cyclin from sea urchin eggs. EMBO J 6, 2987-2995.[Medline]

Ponce, M. R., Micol, J. L., Peterson, K. J. and Davidson, E. H (1999). SpBMP5-7, a new member of the transforming growth factor-superfamily expressed in sea urchin embryo. Mol. Biol. Evol., 16, 634-645.[Abstract]

Reynolds, S. D., Angerer, L. M., Palis, J., Nasir, A. and Angerer, R. C (1992). Early mRNAs, spatially restricted along the animal-vegetal axis of sea urchin embryos, include one encoding a protein related to tolloid and BMP-1. Development 114, 769-786.[Abstract]

Sherwood, D. R. and McClay, D. R (1997). Identification and localization of sea urchin Notch homologue: Insights into vegetal plate regionalization and Notch receptor regulation. Development 124, 3363-3374.[Abstract]

Stenzel, P., Angerer, L. M., Smith, B. J., Angerer, R. C. and Vale, W. W (1994). The univin gene encodes a member of the transforming growth factor-beta superfamily with restricted expression in the sea urchin embryo. Dev. Biol 166, 149-158.[Medline]

Xin, J.-H., Brandhorst, B. P., Britten, R. J. and Davidson, E. H (1982). Cloned embryo mRNAs not detectably expressed in adult sea urchin coelomocytes. Dev. Biol 89, 527-531.[Medline]




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