During fertilization in mammalian species, a sperm-induced intracellular Ca2+ signal [Ca2+] is well suited to mediate the highly specialized spatiotemporal patterns of [Ca2+]i responses that underlie fertilization. Recently, we demonstrated that the expression pattern of inositol 1,4,5- triphosphate receptor type 1 (IP3R1) did not change during in vitro maturation and parthenogenetic activation in mouse oocytes; however, the phosphorylation status of IP3R1 depended on the cell cycle during meiosis. Moreover, it was shown that IP3R1 phosphorylation played a crucial role in the induction of [Ca2+]i oscillations (Lee et al. 2006 Development 133, 4355–4365). In other species, expression of IP3R1, especially phosphorylation levels of IP3R1 during meiosis, has not been examined. The aim of this study was to examine the kinetics of IP3R1 expression and phosphorylation during in vitro maturation and activation in pig oocytes. Immature oocytes at the germinal vesicle (GV) stage were collected from ovaries and cultured in modified NCSU37 up to 48 h. After culture, cumulus cells were removed and oocytes were parthenogenetically activated by 25 µm Ca2+ ionophore for 3 min and 2 mm 6-DMAP for 6 h. After activation, oocytes were further cultured up to the 2-cell stage. Groups of 30 oocytes were collected at each culture period for detection of IP3R1. According to our previous report in the mouse, IP3R1s were detected by western blotting using MPM-2 and Rbt03 antibody for detecting IP3R1 phosphorylation and total IP3R1 expression, respectively (Lee et al. 2006). In pig oocytes, IP3R1 was abundantly expressed at the GV stage. The total level of IP3R1 expression did not change during in vitro maturation or after activation. However, phosphorylated IP3R1 levels increased by 24 h although they were undetectable at the start of culture. Phosphorylation of IP3R1 reached maximal levels at 36 h. After activation, phosphorylation levels decreased progressively until the pronuclear (PN) stage. Phosphorylation of IP3R1 was observed at mitosis I to some extent. From these results, we detected for the first time IP3R1 expression and phosphorylation in pig oocytes. Moreover, our data suggest that phosphorylation of IP3R1 is dependent on cell cycle at least during meiosis, especially M-phase, as already shown for mouse oocytes. In vitro kinase assays for p34cdc2 kinase and MAPK will be carried out to clarify the relationship between IP3R1 phosphorylation and M-phase kinase(s).
The rat, as well as the mouse, is one of the most valuable experimental animals for biomedical and physiological research. There are numerous valuable mutant rats including transgenetic strains. Cryopreservation of rat oocytes and sperm as haploid germ cells is a key technology for banking the genetic resources efficiently. The aim of the present study was to examine survival of vitrified/warmed oocytes and developmental competence of resultant zygotes in the rat. Rats used in the present study were all Wistar rats. Epididymal spermatozoa were frozen as described previously (Seita et al. 2005 Reprod. Fertil. Dev. 18, 256). After thawing, spermatozoa were sonicated to obtain sperm heads for intracytoplasmic sperm injection (ICSI). Oocytes were collected from immature females superovulated with eCG and hCG. Oocytes were equilibrated in 7.5% (v/v) ethylene glycol (EG) + 7.5% (v/v) dimethylsulfoxide (DMSO) + 20% (v/v) FCS in PB1 for 5 min and then transferred into 15.0% EG (v/v) + 15.0% DMSO (v/v) + 20% FCS + 0.5 m sucrose in PB1 (vitrification solution) for 1 min at room temperature (22–24C). During exposure to the vitrification solution, oocytes were loaded on a Cryotop (Kitazato Supply Co., Tokyo, Japan). At warming, the film of Cryotop was directly immersed into PB1 containing 0.5 m sucrose and 20% FCS at 37.5C. The warmed oocytes were washed three times and put into a HEPES-buffered (22 mm) modified R1ECM (310 mOsm) medium. The sperm heads were microinjected intracytoplasmically into the warmed oocytes. Then, presumptive zygotes were transferred surgically into the oviducts of recipient females (Day 0), and Caesarean section of the recipients was performed on Day 22. After vitrification and warming, 245 of 275 (88%) oocytes survived morphologically, 240 of the warmed oocytes were injected, and 156 oocytes (65%) were morphologically normal after the injection. To confirm development to term of zygotes derived from cryopreserved oocytes and sperm, 143 injected oocytes were transferred to 9 recipients, resulting in 3 pregnancies and the generation of one live pup. The results indicate that rat zygotes derived from cryopreserved oocytes and sperm through ICSI can develop to term, and full developmental competence can be preserved in rat oocytes after cryopreservation.