Vertebrate Development Maternal to Zygotic Control (Advances in Experimental Medicine and Biology)

(nextflipdebug2) #1

34


Breed WG, Leigh CM (1990) Morphological changes in the oocyte and its surrounding vestments
during in vivo fertilization in the dasyurid marsupial sminthopsis crassicaudata. J Morphol
204:177–196. doi:10.1002/jmor.1052040207
Brind S, Swann K, Carroll J (2000) Inositol 1,4,5-trisphosphate receptors are downregulated in
mouse oocytes in response to sperm or adenophostin A but not to increases in intracellular Ca2+
or egg activation. Dev Biol 223:251–265. doi:10.1006/dbio.2000.9728
Busa WB (1990) Involvement of calcium and inositol phosphates in amphibian egg activation.
J Reprod Fertil Suppl 42:155–161
Busa WB, Nuccitelli R (1985) An elevated free cytosolic Ca2+ wave follows fertilization in eggs of
the frog, Xenopus laevis. J Cell Biol 100:1325–1329. doi:10.1083/jcb.100.4.1325
Butterfield NJ (2000) Bangiomorpha pubescens n. gen., n. sp.: implications for the evolution of
sex, multicellularity, and the Mesoproterozoic/Neoproterozoic radiation of eukaryotes.
Paleobiology 26:386–404. doi:10.1666/0094-8373(2000)026<0386:BPNGNS>2.0.CO;2
Campbell KD, Reed WA, White KL (2000) Ability of integrins to mediate fertilization, intracel-
lular calcium release, and parthenogenetic development in bovine oocytes. Biol Reprod
62:1702–1709. doi:10.1095/biolreprod62.6.1702
Carvacho I, Lee HC, Fissore RA, Clapham DE (2013) TRPV3 channels mediate strontium-induced
mouse-egg activation. Cell Rep 5:1375–1386. doi:10.1016/j.celrep.2013.11.007
Castro A, Peter M, Magnaghi-Jaulin L, Vigneron S, Galas S, Lorca T, Labbé JC (2001) Cyclin B/
cdc2 induces c-Mos stability by direct phosphorylation in Xenopus oocytes. Mol Biol Cell
12:2660–2671. doi:10.1091/mbc.12.9.2660
Charbonneau M, Moreau M, Picheral B, Vilain JP, Guerrier P (1983) Fertilization of amphibian
eggs: a comparison of electrical responses between anurans and urodeles. Dev Biol 98:304–



  1. doi:10.1016/0012-1606(83)90361-5
    Coggins L (1973) An ultrastructural and radioautographic study of early oogenesis in the toad
    Xenopus laevis. J Cell Sci 12:71–93
    Colonna R, Tatone C, Malgaroli A, Eusebi F, Mangia F (1989) Effects of protein kinase C stimula-
    tion and free Ca2+ rise in mammalian egg activation. Gamete Res 24:171–183. doi:10.1002/
    mrd.1120240205
    Conti M, Andersen CB, Richard FJ, Shitsukawa K, Tsafriri A (1998) Role of cyclic nucleotide
    phosphodiesterases in resumption of meiosis. Mol Cell Endocrinol 145:9–14. doi:10.1016/
    S0303-7207(98)00187-7
    Coronado R, Morrissette J, Sukhareva M, Vaughan DM (1994) Structure and function of ryanodine
    receptors. Am J Physiol 266:1485–1504
    Coward K, Campos-Mendoza A, Larman M, Hibbitt O, McAndrew B, Bromage N, Parrington J
    (2003) Teleost fish spermatozoa contain a cytosolic protein factor that induces calcium release
    in sea urchin egg homogenates and triggers calcium oscillations when injected into mouse
    oocytes. Biochem Biophys Res Commun 305:299–304. doi:10.1016/S0006-291X(03)00753-8
    Coward K, Ponting CP, Chang HY, Hibbitt O, Savolainen P, Jones KT, Parrington J (2005)
    Phospholipase Cζ, the trigger of egg activation in mammals, is present in a non-mammalian
    species. Reproduction 130:157–163. doi:10.1530/rep.1.00707
    Coward K, Ponting CP, Zhang N, Young C, Huang CJ, Chou CM, Kashir J, Fissore RA, Parrington
    J (2011) Identification and functional analysis of an ovarian form of the egg activation factor
    phospholipase C zeta (PLCζ) in pufferfish. Mol Reprod Dev 78:48–56. doi:10.1002/mrd.21262
    Cox LJ, Larman MG, Saunders CM, Hashimoto K, Swann K, Lai FA (2002) Sperm phospholipase
    Cζ from humans and cynomolgus monkeys triggers Ca2+ oscillations, activation and develop-
    ment of mouse oocytes. Reproduction 124:611–623. doi:10.1530/rep.0.1240611
    Cuthbertson KR, Cobbold P (1985) Phorbol ester and sperm activate mouse oocytes by inducing
    sustained oscillations in cell Ca2+. Nature 316:541–542. doi:10.1038/316541a0
    Daar I, Paules RS, Woude GV (1991) A characterization of cytostatic factor activity from Xenopus
    eggs and c-mos-transformed cells. J Cell Biol 114:329–335. doi:10.1083/jcb.114.2.329
    Davail B, Pakdel F, Bujo H, Perazzolo LM, Waclawek M, Schneider WJ, Le Menn F (1998)
    Evolution of oogenesis: the receptor for vitellogenin from the rainbow trout. J Lipid Res
    39:1929–1937


Z. Machaty et al.
Free download pdf