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Ezquieta, B. and Vallejo, C.G (1986). Lipovitellin inhibition of Artemia trypsin-like proteinase: a role for storage protein in regulating proteinase activity during development. Arch. Biochem. Biophys 250, 410-417.[Medline]

Fagotto, F (1990). Yolk degradation in tick eggs: I. Occurrence of a cathepsin L-like acid proteinase in yolk spheres. Arch. Insect Biochem. Physiol 14, 217-235.[Medline]

Fagotto, F (1990). Yolk degradation in tick eggs: II. Evidence that cathepsinL-like proteinase is stored as a latent, acid-activatable proenzyme. Arch. Insect Biochem. Physiol 14, 237-252.[Medline]

Fagotto, F (1991). Yolk degradation in tick eggs: III. Developmentally regulated acidification of the yolk spheres. Dev. Growth Differ 33, 57-66.

Fagotto, F. and Maxfield, F. R (1994). Yolk platelets in Xenopus oocytes maintain an acidic internal pH which may be essential for sodium accumulation. J. Cell Biol 125, 1047-1056.[Abstract/Free Full Text]

Fagotto, F. and Maxfield, F. R (1994). Changes in yolk platelet pH during Xenopus laevis development correlate with yolk utilization. A quantitative confocal microsc opy study. J. Cell Sci 107, 3325-3337.[Abstract]

Kageyama, T., Takahashi, S. Y. and Takahashi, K (1981). Occurrence of thiol proteinases in the eggs of the silk worm, Bombix mori. J. Biochem 90, 665-671.

Mallya, S., Partin, J. S., Valdizan, M. C. and Lennarz, W. J (1992). Proteolysis of the major yolk glycoproteins is regulated by acidification of the yolk platelets in sea urchin embryos. J. Cell Biol 117, 1211-1221.[Abstract/Free Full Text]

Medina, M. and Vallejo, C. G (1989). The maternal origin of acid hydrolases in Drosophila and their relation with yolk degradation. Dev. Growth Differ 31, 241-247.

Nordin, J. H., Beaudoin, E. L. and Lin, X (1991). Acidification of yolk granules in Blattella germanica eggs coincide with proteolytic processing of vitellin. Arch. Insect Biochem. Physiol 18, 177-192.

Opresko, L., Wiley, H. S. and Wallace, R. A (1980). Differential postendocytotic compartmentation in Xenopus oocytes is mediated by a specifically bound ligand. Cell 22, 4-57.

Opresko, L. K. and Karpf, R. A (1987). Specific proteolysis regulates fusion between endocytic compartments in Xenopus oocytes. Cell 51, 557-568.[Medline]

Pasteels, J. J (1966). Les corps multivesiculaires de l'oeuf de Barnea candida (Mollusque bivalve) etudies au microscope electronique. Activite phosphatasique et accumulation du rouge neutre. J. Embryol. Exp. Morphol 16, 301-310.[Medline]

Perona, R. and Vallejo, C. G (1982). The lysosomal proteinase of Artemia: Purification and characterization. Eur. J. Biochem 124, 357-362.[Medline]

Salisbury, N., Calaprice, N. and Triplett, E (1980). Amphibian embryo protease inhibitor. VI: Maternal origin and identity with lipovitellin heavy subunit. Cell Differ 9, 219-227.

Slack C., Warner, A. and Warren, A. E (1973). The distribution of sodium and potassium in amphibian embryos during early development. J. Physiol 232, 297-312.


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