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Biochemistry|December 19, 1995
Zinc uptake and distribution in Xenopus laevis oocytes and embryosK H Falchuk, M Montorzi, B L ValleeMolecular Reproduction and Development|December 22, 1999
Xenopus laevis embryo development: arrest of epidermal cell differentiation by the chelating agent 1,10-phenanthrolineM Montorzi, M H Burgos, K H FalchukBiochemical and Biophysical Research Communications|May 16, 1994
Xenopus laevis vitellogenin is a zinc proteinM Montorzi, K H Falchuk, B L ValleeBiochemistry|July 29, 1975
DNA distribution in the cell cycle of Euglena gracilis. Cytofluorometry of zinc deficient cellsK H Falchuk, A Drishan, B L ValleeBiochemistry|May 20, 1986
Inhibition of Euglena gracilis and wheat germ zinc RNA polymerases II by 1,10-phenanthroline acting as a chelating agentB Mazus, K H Falchuk, B L ValleeJournal of Cell Science|January 1, 1975
Role of zinc in cell division of Euglena gracilisK H Falchuk, D W Fawcett, B L ValleeBiochemistry|October 25, 1983
Composition and structure of zinc-deficient Euglena gracilis chromatinA J Stankiewicz, K H Falchuk, B L ValleeBiochemistry|February 9, 1993
A Euglena gracilis zinc endonucleaseM Czupryn, K H Falchuk, A Stankiewicz, et al.Biochemical and Biophysical Research Communications|May 16, 1994
1,10-Phenanthroline and Xenopus laevis teratologyH Jörnvall, K H Falchuk, G Geraci, et al.Biochemistry|October 5, 1976
Euglena gracilis DNA dependent RNA polymerase II: a zinc metalloenzymeK H Falchuk, B Mazus, L Ulpino, et al.Pageof 38