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Developmental Timing of Synthesis and Translation of Arylsulfatase mRNA in Sea Urchin Embryo: (sea urchin embryo/arylsulfatase/transcription/actinomycin D/emetine)., Sasaki H, Akasaka K, Shiroya T, Shimada H., Dev Growth Differ. August 1, 1987; 29 (4): 317-322.


Dermatan sulfate formation in gastrulae of the sea urchin Clypeaster japonicus., Yamaguchi M, Kinoshita S, Suzuki N., J Biochem. July 1, 1989; 106 (1): 158-62.


Duplication and remoulding of tRNA genes during the evolutionary rearrangement of mitochondrial genomes., Cantatore P, Gadaleta MN, Roberti M, Saccone C, Wilson AC., Nature. October 1, 1987; 329 (6142): 853-5.


Detection of nuclear lamin B epitopes in oocyte nuclei from mice, sea urchins, and clams using a human autoimmune serum., Maul GG, Schatten G, Jimenez SA, Carrera AE., Dev Biol. June 1, 1987; 121 (2): 368-75.


Domain organization and intron positions in Caenorhabditis elegans collagen genes: the 54-bp module hypothesis revisited., Fields C., J Mol Evol. December 1, 1988; 28 (1-2): 55-63.


Development of the Basal Lamina and Its Role in Migration and Pattern Formation of Primary Mesenchyme Cells in Sea Urchin Embryos: (sea urchin/primary mesenchyme cell/basal lamina/TEM/SEM)., Amemiya S., Dev Growth Differ. April 1, 1989; 31 (2): 131-145.


Do ribosomes regulate mitochondrial RNA synthesis?, Jacobs HT., Bioessays. July 1, 1989; 11 (1): 27-34.


Density-dependent size regulation and negative growth in the sea urchin Diadema antillarum Philippi., Levitan DR., Oecologia. September 1, 1988; 76 (4): 627-629.


Differences in the binding of H1 variants to DNA. Cooperativity and linker-length related distribution., Clark DJ, Thomas JO., Eur J Biochem. December 1, 1988; 178 (1): 225-33.


Developmentally regulated proteolytic processing of a yolk glycoprotein complex in embryos of the sea urchin, Strongylocentrotus purpuratus., Lee GF, Fanning EW, Small MP, Hille MB., Cell Differ Dev. January 1, 1989; 26 (1): 5-17.


DNA Replication and Its Regulation in Cleavage Embryos of Sea Urchin: (DNA replication/cytoplasmic factor/cleavage embryo/sea urchin)., Shimada H., Dev Growth Differ. October 1, 1987; 29 (5): 417-425.


Dynein isoforms in sea urchin eggs., Porter ME, Grissom PM, Scholey JM, Salmon ED, McIntosh JR., J Biol Chem. May 15, 1988; 263 (14): 6759-71.


Degradation of sperm histones in vitro by cytoplasm of the sea urchin egg., Betzalel M, Moav B., Cell Differ. March 1, 1987; 20 (2-3): 125-36.


Developmental and tissue-specific regulation of beta-tubulin gene expression in the embryo of the sea urchin Strongylocentrotus purpuratus., Harlow P, Nemer M., Genes Dev. April 1, 1987; 1 (2): 147-60.


Detection and molecular cloning of highly repeated DNA in the sea cucumber sperm., Sainz J, Azorín F, Cornudella L., Gene. August 1, 1989; 80 (1): 57-64.


Diadema antillarum Was Not a Keystone Predator in Cryptic Reef Environments., Jackson JB, Kaufmann KW., Science. February 6, 1987; 235 (4789): 687-9.


Distribution of somatostatin and glucagon immunoreactive cells in the gastric mucosa of some cartilaginous fishes., Tagliafierro G, Farina L, Faraldi G, Rossi GG, Vacchi M., Gen Comp Endocrinol. July 1, 1989; 75 (1): 1-9.


DEVELOPMENT, METAMORPHOSIS, AND SEASONAL ABUNDANCE OF EMBRYOS AND LARVAE OF THE ANTARCTIC SEA URCHIN STERECHINUS NEUMAYERI., Bosch I, Beauchamp KA, Steele ME, Pearse JS., Biol Bull. August 1, 1987; 173 (1): 126-135.


Direct coupling of marine invertebrate spawning with phytoplankton blooms., Starr M, Himmelman JH, Therriault JC., Science. March 2, 1990; 247 (4946): 1071-4.


Development of Sea Urchin Embryos in Artificial Sea Water Containing Br- in Place of Cl- : (sea urchin/spicule formation/Cl- -deficient sea water/Br- )., Fujino Y, Mitsunaga K, Yasumasu I., Dev Growth Differ. November 1, 1987; 29 (6): 599-605.


DNA sequence analysis and structural relationships among the cytoskeletal actin genes of the sea urchin Strongylocentrotus purpuratus., Durica DS, Garza D, Restrepo MA, Hryniewicz MM., J Mol Evol. December 1, 1988; 28 (1-2): 72-86.


Determination of cell fate in sea urchin embryos., Livingston BT, Wilt FH., Bioessays. March 1, 1990; 12 (3): 115-9.


Development of the esophageal muscles in embryos of the sea urchin Strongylocentrotus purpuratus., Burke RD, Alvarez CM., Cell Tissue Res. May 1, 1988; 252 (2): 411-7.


Direction of force generated by the inner row of dynein arms on flagellar microtubules., Fox LA, Sale WS., J Cell Biol. October 1, 1987; 105 (4): 1781-7.


DEVELOPMENTAL CONSEQUENCES OF AN EVOLUTIONARY CHANGE IN EGG SIZE: AN EXPERIMENTAL TEST., Sinervo B, McEdward LR., Evolution. September 1, 1988; 42 (5): 885-899.


Direct measurements of sliding between outer doublet microtubules in swimming sperm flagella., Brokaw CJ., Science. March 24, 1989; 243 (4898): 1593-6.


Developmental expression of a cell-surface protein involved in calcium uptake and skeleton formation in sea urchin embryos., Farach MC, Valdizan M, Park HR, Decker GL, Lennarz WJ., Dev Biol. August 1, 1987; 122 (2): 320-31.


Differential regulation of histone H1 and ribosomal S6 kinases during sea star oocyte maturation., Meijer L, Pelech SL, Krebs EG., Biochemistry. December 1, 1987; 26 (24): 7968-74.


Does the M-Phase Promoting Factor (MPF) Activate a Major Ca2+ -and Cyclic Nucleotide-Independent Protein Kinase in Starfish Ocytes?: (cell cycle/protein kinase/starfish oocyte)., Labbe JC, Picard A, Doree M., Dev Growth Differ. April 1, 1988; 30 (2): 197-207.


Drosophila kinesin: characterization of microtubule motility and ATPase., Saxton WM, Porter ME, Cohn SA, Scholey JM, Raff EC, McIntosh JR., Proc Natl Acad Sci U S A. February 1, 1988; 85 (4): 1109-13.


Developmental and tissue-specific regulation of a novel transcription factor of the sea urchin., Barberis A, Superti-Furga G, Vitelli L, Kemler I, Busslinger M., Genes Dev. May 1, 1989; 3 (5): 663-75.


Determination of dorso-ventral axis in early embryos of the sea urchin, Hemicentrotus pulcherrimus., Kominami T., Dev Biol. May 1, 1988; 127 (1): 187-96.


Developmental appearance of factors that bind specifically to cis-regulatory sequences of a gene expressed in the sea urchin embryo., Calzone FJ, Thézé N, Thiebaud P, Hill RL, Britten RJ, Davidson EH., Genes Dev. September 1, 1988; 2 (9): 1074-88.


Developmental control of promoter-specific factors responsible for the embryonic activation and inactivation of the sea urchin early histone H3 gene., DiLiberto M, Lai ZC, Fei H, Childs G., Genes Dev. July 1, 1989; 3 (7): 973-85.


Dependence of sea urchin primary mesenchyme cell migration on xyloside- and sulfate-sensitive cell surface-associated components., Lane MC, Solursh M., Dev Biol. May 1, 1988; 127 (1): 78-87.


Developmental regulation of micro-injected histone genes in sea urchin embryos., Vitelli L, Kemler I, Lauber B, Birnstiel ML, Busslinger M., Dev Biol. May 1, 1988; 127 (1): 54-63.


DNA sequence and pattern of expression of the sea urchin (Paracentrotus lividus) alpha-tubulin genes., Gianguzza F, Di Bernardo MG, Sollazzo M, Palla F, Ciaccio M, Carra E, Spinelli G., Mol Reprod Dev. January 1, 1989; 1 (3): 170-81.


Dispersal of sperm surface antigens in the plasma membranes of polyspermically fertilized sea urchin eggs., Nishioka D, Porter DC, Trimmer JS, Vacquier VD., Exp Cell Res. December 1, 1987; 173 (2): 628-32.


Direct introduction of cloned DNA into the sea urchin zygote nucleus, and fate of injected DNA., Franks RR, Hough-Evans BR, Britten RJ, Davidson EH., Development. February 1, 1988; 102 (2): 287-99.


Determination and morphogenesis in the sea urchin embryo., Wilt FH., Development. August 1, 1987; 100 (4): 559-76.


Dynamic conformational changes of 21 S dynein ATPase coupled with ATP hydrolysis revealed by proteolytic digestion., Inaba K, Mohri H., J Biol Chem. May 15, 1989; 264 (14): 8384-8.


Determination of the average shape of flagellar bends: a gradient curvature model., Eshel D, Brokaw CJ., Cell Motil Cytoskeleton. January 1, 1988; 9 (4): 312-24.


Deprenyl, an Inhibitor of Monoamine Oxidase B, Delays the First Two Mitotic Cycles of Sea Urchin eggs: (deprenyl/mitotic cylcle/sea urchin)., Nicotra A, Serafino A, Arizzi M., Dev Growth Differ. February 1, 1989; 31 (1): 17-21.


Deformation analyses in cell and developmental biology. Part II--Mechanical experiments on cells., Cheng LY., J Biomech Eng. February 1, 1987; 109 (1): 18-24.


Differential stimulation of sea urchin early and late H2B histone gene expression by a gastrula nuclear extract after injection into Xenopus laevis oocytes., Maxson R, Ito M, Balcells S, Thayer M, French M, Lee F, Etkin L., Mol Cell Biol. March 1, 1988; 8 (3): 1236-46.


Drosophila has a single copy of the gene encoding a highly conserved histone H2A variant of the H2A.F/Z type., van Daal A, White EM, Gorovsky MA, Elgin SC., Nucleic Acids Res. August 11, 1988; 16 (15): 7487-97.


Degradation of yolk proteins in sea urchin eggs and embryos., Yokota Y, Kato KH., Cell Differ. April 1, 1988; 23 (3): 191-200.


Developmental distribution of a cell surface glycoprotein in the sea urchin Strongylocentrotus purpuratus., Decker GL, Valdizan MC, Wessel GM, Lennarz WJ., Dev Biol. October 1, 1988; 129 (2): 339-49.


Direct demonstration of termination signals for RNA polymerase II from the sea urchin H2A histone gene., Briggs D, Jackson D, Whitelaw E, Proudfoot NJ., Nucleic Acids Res. October 25, 1989; 17 (20): 8061-71.


Description of a Novel Symbiotic Bacterium from the Brittle Star, Amphipholis squamata., Lesser MP, Blakemore RP., Appl Environ Microbiol. August 1, 1990; 56 (8): 2436-2440.

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