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The Journal of Cell Biology|October 1, 1986
Regulation of glucose-6-phosphate dehydrogenase activity in sea urchin eggs by reversible association with cell structural elementsR R Swezey, D EpelDevelopmental Biology|June 1, 1995
The in vivo rate of glucose-6-phosphate dehydrogenase activity in sea urchin eggs determined with a photolabile caged substrateR R Swezey, D EpelDevelopmental Biology|November 1, 1991
In vivo protein phosphorylation and labeling of ATP in sea urchin eggs loaded with 32PO4 via electroporationD A Larochelle, D EpelThe Biological Bulletin|January 5, 2018
Multixenobiotic Resistance in Urechis caupo Embryos: Protection From Environmental ToxinsB H Toomey, D EpelThe Journal of Experimental Zoology|November 1, 1985
The Limulus sperm motility-initiating peptide initiates acrosome reactions in sea water lacking potassiumD L Clapper, D EpelNature|August 19, 1976
Intracellular pH and activation of sea urchin eggs after fertilisationJ D Johnson, D EpelDevelopmental Biology|December 10, 1999
The roles of changes in NADPH and pH during fertilization and artificial activation of the sea urchin eggB Schomer Miller, D EpelSeminars in Reproductive Medicine|March 21, 2001
Cytoskeletal aspects of assisted fertilizationL Hewitson, C Simerly, G SchattenMolecular Reproduction and Development|March 29, 2000
Microfilament stabilization by jasplakinolide arrests oocyte maturation, cortical granule exocytosis, sperm incorporation cone resorption, and cell-cycle progression, but not DNA replication, during fertilization in miceY Terada, C Simerly, G SchattenProceedings of the National Academy of Sciences of the United States of America|November 1, 1975
Turning on of activities in unfertilized sea urchin eggs: correlation with changes of the surfaceD Mazia, G Schatten, R SteinhardtPageof 19