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Summary Expression Gene Literature (11969) GO Terms (0) Nucleotides (8) Proteins (2) Interactants (1441) Wiki
ECB-GENEPAGE-23018802

Papers associated with LOC100887844 (and LOC590297)



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Deciphering the underlying mechanism of specification and differentiation: the sea urchin gene regulatory network., Ben-Tabou de-Leon S, Davidson EH., Sci STKE. November 14, 2006; 2006 (361): pe47.


Cytoskeleton alterations induced by Geodia corticostylifera depsipeptides in breast cancer cells., Rangel M, Prado MP, Konno K, Naoki H, Freitas JC, Machado-Santelli GM., Peptides. September 1, 2006; 27 (9): 2047-57.


Functional analysis of the sea urchin-derived arylsulfatase (Ars)-element in mammalian cells., Watanabe S, Watanabe S, Sakamoto N, Sato M, Akasaka K., Genes Cells. September 1, 2006; 11 (9): 1009-21.


Cytotoxicity in the marine dinoflagellate Prorocentrum mexicanum from Brazil., Naves JL, Prado MP, Rangel M, De Sanctis B, Machado-Santelli G, Freitas JC., Comp Biochem Physiol C Toxicol Pharmacol. May 1, 2006; 143 (1): 73-7.


RhoA regulates initiation of invagination, but not convergent extension, during sea urchin gastrulation., Beane WS, Gross JM, McClay DR., Dev Biol. April 1, 2006; 292 (1): 213-25.


Temporal change in local forces and total force all over the surface of the sea urchin egg during cytokinesis., Miyoshi H, Satoh SK, Yamada E, Hamaguchi Y., Cell Motil Cytoskeleton. April 1, 2006; 63 (4): 208-21.


Calcium-responsive contractility during fertilization in sea urchin eggs., Stack C, Lucero AJ, Shuster CB., Dev Dyn. April 1, 2006; 235 (4): 1042-52.


Dual oxidases., Donkó A, Péterfi Z, Sum A, Leto T, Geiszt M., Philos Trans R Soc Lond B Biol Sci. December 29, 2005; 360 (1464): 2301-8.


cis-Regulatory inputs of the wnt8 gene in the sea urchin endomesoderm network., Minokawa T, Wikramanayake AH, Davidson EH., Dev Biol. December 15, 2005; 288 (2): 545-58.


[Sea star (Asteroidea) association structures on the rocky reef in the Gulf of California, Mexico]., Reyes Bonilla H, González Azcárraga A, Rojas Sierra A., Rev Biol Trop. December 1, 2005; 53 Suppl 3 233-44.


The micro1 gene is necessary and sufficient for micromere differentiation and mid/hindgut-inducing activity in the sea urchin embryo., Yamazaki A, Kawabata R, Shiomi K, Amemiya S, Sawaguchi M, Mitsunaga-Nakatsubo K, Yamaguchi M., Dev Genes Evol. September 1, 2005; 215 (9): 450-59.


Contrahelicase activity of the mitochondrial transcription termination factor mtDBP., Polosa PL, Deceglie S, Roberti M, Gadaleta MN, Cantatore P., Nucleic Acids Res. July 8, 2005; 33 (12): 3812-20.            


Transmission electron microscopy characterization of macromolecular domain cavities and microstructure of single-crystal calcite tooth plates of the sea urchin Lytechinus variegatus., Robach JS, Stock SR, Veis A., J Struct Biol. July 1, 2005; 151 (1): 18-29.


Ca release induced by cyclic adenosine diphosphoribose (cADPr) in sea urchin egg homogenates: mechanisms of release and heterogeneity of the Ca compartments., Becker P, Brose T, Abercrombie R., Cell Calcium. March 1, 2005; 37 (3): 193-201.


Phosphoinositide metabolism at fertilization of sea urchin eggs measured with a GFP-probe., Thaler CD, Kuo RC, Patton C, Preston CM, Yagisawa H, Epel D., Dev Growth Differ. October 1, 2004; 46 (5): 413-23.


Actin-Mediated Retrograde Flow in Sea Urchin Coelomocytes: Conversion From a Lamellipodial-Dominated to a Filopodial-Dominated Form., Fried CA, Reina M, Henson JH., Biol Bull. October 1, 2004; 207 (2): 161.


Triazine dyes are agonists of the NAADP receptor., Billington RA, Bak J, Martinez-Coscolla A, Debidda M, Genazzani AA., Br J Pharmacol. August 1, 2004; 142 (8): 1241-6.


Revisiting the role of H+ in chemotactic signaling of sperm., Solzin J, Helbig A, Van Q, Brown JE, Hildebrand E, Weyand I, Kaupp UB., J Gen Physiol. August 1, 2004; 124 (2): 115-24.              


Cladogenesis in a starfish species complex from southern Australia: evidence for vicariant speciation?, Waters JM, O'Loughlin PM, Roy MS., Mol Phylogenet Evol. July 1, 2004; 32 (1): 236-45.


Evaluation of developmental phenotypes produced by morpholino antisense targeting of a sea urchin Runx gene., Coffman JA, Dickey-Sims C, Haug JS, McCarthy JJ, Robertson AJ., BMC Biol. May 7, 2004; 2 6.      


Polycystins: what polycystic kidney disease tells us about sperm., Kierszenbaum AL., Mol Reprod Dev. April 1, 2004; 67 (4): 385-8.


Pigment cells trigger the onset of gastrulation in tropical sea urchin Echinometra mathaei., Takata H, Kominami T., Dev Growth Differ. February 1, 2004; 46 (1): 23-35.


Integrins on eggs: the betaC subunit is essential for formation of the cortical actin cytoskeleton in sea urchin eggs., Burke RD, Murray G, Rise M, Wang D., Dev Biol. January 1, 2004; 265 (1): 53-60.


An IQGAP-like protein is involved in actin assembly together with Cdc42 in the sea urchin egg., Nishimura Y, Mabuchi I., Cell Motil Cytoskeleton. December 1, 2003; 56 (4): 207-18.


Actin-based centripetal flow: phosphatase inhibition by calyculin-A alters flow pattern, actin organization, and actomyosin distribution., Henson JH, Kolnik SE, Fried CA, Nazarian R, McGreevy J, Schulberg KL, Detweiler M, Trabosh VA., Cell Motil Cytoskeleton. December 1, 2003; 56 (4): 252-66.


Influence of cucumariosides upon intracellular [Ca2+]i and lysosomal activity of macrophages., Agafonova IG, Aminin DL, Avilov SA, Stonik VA., J Agric Food Chem. November 19, 2003; 51 (24): 6982-6.


A Rho GTPase controls the rate of protein synthesis in the sea urchin egg., Manzo S, Martínez-Cadena G, López-Godínez J, Pedraza-Reyes M, García-Soto J., Biochem Biophys Res Commun. October 24, 2003; 310 (3): 685-90.


NAADP activates a Ca2+ current that is dependent on F-actin cytoskeleton., Moccia F, Lim D, Nusco GA, Ercolano E, Santella L., FASEB J. October 1, 2003; 17 (13): 1907-9.


Spdeadringer, a sea urchin embryo gene required separately in skeletogenic and oral ectoderm gene regulatory networks., Amore G, Yavrouian RG, Peterson KJ, Ransick A, McClay DR, Davidson EH., Dev Biol. September 1, 2003; 261 (1): 55-81.


Store-operated calcium channels trigger exocytosis of the sea urchin sperm acrosomal vesicle., Hirohashi N, Vacquier VD., Biochem Biophys Res Commun. May 2, 2003; 304 (2): 285-92.


Purification and characteristics of Ca2+,Mg2+- and Ca2+,Mn2+-dependent and acid DNases from spermatozoa of the sea urchin Strongylocentrotus intermedius., Shastina VV, Menzorova NI, Sibirtsev YT, Rasskazov VA., Biochemistry (Mosc). May 1, 2003; 68 (5): 582-92.


Lipopolysaccharides induce intestinal serum amyloid A expression in the sea cucumber Holothuria glaberrima., Santiago-Cardona PG, Berríos CA, Ramírez F, García-Arrarás JE., Dev Comp Immunol. February 1, 2003; 27 (2): 105-10.


A method of analyzing procoagulant activity in monocytes at single cell level., Recalde H, Miranda GR., Haematologica. January 1, 2003; 88 (1): 44-53.


N-Acylethanolamines in human reproductive fluids., Schuel H, Burkman LJ, Lippes J, Crickard K, Forester E, Piomelli D, Giuffrida A., Chem Phys Lipids. December 31, 2002; 121 (1-2): 211-27.


A fucosylated chondroitin sulfate from echinoderm modulates in vitro fibroblast growth factor 2-dependent angiogenesis., Tapon-Bretaudière J, Chabut D, Zierer M, Matou S, Helley D, Bros A, Mourão PA, Fischer AM., Mol Cancer Res. December 1, 2002; 1 (2): 96-102.


Phenylbutyrate inhibits the invasive properties of prostate and breast cancer cell lines in the sea urchin embryo basement membrane invasion assay., Dyer ES, Paulsen MT, Markwart SM, Goh M, Livant DL, Ljungman M., Int J Cancer. October 10, 2002; 101 (5): 496-9.


Two kinase activities are sufficient for sea urchin sperm chromatin decondensation in vitro., Stephens S, Beyer B, Balthazar-Stablein U, Duncan R, Kostacos M, Lukoma M, Green GR, Poccia D., Mol Reprod Dev. August 1, 2002; 62 (4): 496-503.


Effect of luminal and extravesicular Ca2+ on NAADP binding and release properties., Bak J, Billington RA, Genazzani AA., Biochem Biophys Res Commun. July 26, 2002; 295 (4): 806-11.


Ectoderm gene activation in sea urchin embryos mediated by the CCAAT-binding factor., Li X, Bhattacharya C, Dayal S, Maity S, Klein WH., Differentiation. May 1, 2002; 70 (2-3): 109-19.


Functional characterization of Ets-binding sites in the sea urchin embryo: three base pair conversions redirect expression from mesoderm to ectoderm and endoderm., Consales C, Arnone MI., Gene. April 3, 2002; 287 (1-2): 75-81.


Repairing a torn cell surface: make way, lysosomes to the rescue., McNeil PL., J Cell Sci. March 1, 2002; 115 (Pt 5): 873-9.


Wound closure in the lamellipodia of single cells: mediation by actin polymerization in the absence of an actomyosin purse string., Henson JH, Nazarian R, Schulberg KL, Trabosh VA, Kolnik SE, Burns AR, McPartland KJ., Mol Biol Cell. March 1, 2002; 13 (3): 1001-14.


Calcium involvement in the luminescence control of three ophiuroid species (Echinodermata)., Dewael Y, Mallefet J., Comp Biochem Physiol C Toxicol Pharmacol. February 1, 2002; 131 (2): 153-60.


Assortative fertilization and selection at larval stage in the mussels Mytilus edulis and M. galloprovincialis., Bierne N, David P, Boudry P, Bonhomme F., Evolution. February 1, 2002; 56 (2): 292-8.


Interactions between calcium release pathways: multiple messengers and multiple stores., Galione A, Churchill GC., Cell Calcium. January 1, 2002; 32 (5-6): 343-54.


Cacofurans A and B, new furanoditerpenes from a marine sponge., Tanaka J, Marriott G, Higa T, Higa T., J Nat Prod. November 1, 2001; 64 (11): 1468-70.


Saturable binding of the echinoderm microtubule-associated protein (EMAP) on microtubules, but not filamentous actin or vimentin filaments., Eichenmüller B, Ahrens DP, Li Q, Suprenant KA., Cell Motil Cytoskeleton. November 1, 2001; 50 (3): 161-72.


[Cholinergic regulation of the sea urchin embryonic and larval development]., Buznikov GA, Bezuglov VV, Nikitina LA, Slotkin TA, Lauder JM., Ross Fiziol Zh Im I M Sechenova. November 1, 2001; 87 (11): 1548-56.


Division and motility of mitochondria in sea urchin embryogenesis., Soukhomlinova MY, Fais D, Kireev II, Gianguzza F, Morici G, Giudice G, Poliakov VY., J Submicrosc Cytol Pathol. October 1, 2001; 33 (4): 433-42.


MUP-4 is a novel transmembrane protein with functions in epithelial cell adhesion in Caenorhabditis elegans., Hong L, Elbl T, Ward J, Franzini-Armstrong C, Rybicka KK, Gatewood BK, Baillie DL, Bucher EA., J Cell Biol. July 23, 2001; 154 (2): 403-14.                

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