Perreault S D, Naish S J, Zirkin B R
Biol Reprod. 1987 Feb;36(1):239-44. doi: 10.1095/biolreprod36.1.239.
The relationship between the timing of both sperm nuclear decondensation and male pronucleus formation in the oocyte and the relative level of disulfide bonds within the sperm nucleus was evaluated. Since reduction of sperm nuclear disulfide (S-S) bonds is a prerequisite for sperm nuclear decondensation in vitro and in vivo, we hypothesized that sperm nuclei with relatively few S-S bonds would require less time to decondense in the oocyte than sperm nuclei with higher numbers of S-S bonds, and that male pronucleus formation would occur more rapidly as well. Four types of hamster sperm nuclei, in which the extent of S-S bonding differed, were microinjected into hamster oocytes, and the time course of sperm nuclear decondensation and male pronucleus formation was charted. Cauda epididymal sperm nuclei, which are rich in S-S bonds, required 45-60 min to decondense. In contrast, nuclei containing few S-S bonds (namely sonication-resistant spermatid nuclei and cauda epididymal sperm nuclei treated in vitro with the S-S bond-reducing agent dithiothreitol) decondensed within 5-10 min of microinjection. Caput epididymal sperm nuclei, with intermediate S-S bond content, decondensed in 10-20 min. Regardless of when decondensation occurred, formation of the male pronucleus never preceded that of the female pronucleus, which occurred 1.25-1.5 h after microinjection. However, sperm nuclei with few S-S bonds were more likely than S-S rich nuclei to transform into male pronuclei in synchrony with the formation of the female pronucleus. We conclude that the timing sperm nuclear decondensation and pronucleus formation depends in part upon the S-S bond content of the sperm nucleus.
评估了精子核去浓缩和雄原核在卵母细胞中形成的时间与精子核内二硫键相对水平之间的关系。由于精子核二硫键(S-S)的还原是体外和体内精子核去浓缩的先决条件,我们推测,与具有较多S-S键的精子核相比,具有相对较少S-S键的精子核在卵母细胞中去浓缩所需的时间更少,并且雄原核的形成也会更快。将四种二硫键结合程度不同的仓鼠精子核显微注射到仓鼠卵母细胞中,并绘制精子核去浓缩和雄原核形成的时间进程图。富含S-S键的附睾尾精子核去浓缩需要45-60分钟。相比之下,含较少S-S键的核(即抗超声处理的精子细胞核和体外经二硫键还原剂二硫苏糖醇处理的附睾尾精子核)在显微注射后5-10分钟内去浓缩。附睾头精子核的S-S键含量处于中等水平,在10-20分钟内去浓缩。无论去浓缩何时发生,雄原核的形成从不先于雌原核,雌原核在显微注射后1.25-1.5小时形成。然而,与富含S-S键的核相比,含较少S-S键的精子核更有可能与雌原核的形成同步转化为雄原核。我们得出结论,精子核去浓缩和原核形成的时间部分取决于精子核的S-S键含量。