Mbikay M, Tadros H, Ishida N, Lerner C P, De Lamirande E, Chen A, El-Alfy M, Clermont Y, Seidah N G, Chrétien M, Gagnon C, Simpson E M
Laboratory of Molecular, Clinical Research Institute of Montreal, University of Montreal, Montreal QC, Canada H2W 1R7.
Proc Natl Acad Sci U S A. 1997 Jun 24;94(13):6842-6. doi: 10.1073/pnas.94.13.6842.
PC4 is a member of the proprotein convertase family of serine proteases implicated in the processing of a variety of polypeptides including prohormones, proneuropeptides, and cell surface proteins. In rodents, PC4 transcripts have been detected in spermatocytes and round spermatids exclusively, suggesting a reproductive function for this enzyme. In an effort to elucidate this function, we have disrupted its locus (Pcsk4) by homologous recombination in embryonic stem cells and have produced mice carrying the mutation. In intercrosses of heterozygous mutant mice, there was low transmission of the mutant Pcsk4 allele to the progeny, resulting in lower than expected incidence of heterozygosity and null homozygosity. The in vivo fertility of homozygous mutant males was severely impaired in the absence of any evident spermatogenic abnormality. In vitro, the fertilizing ability of Pcsk4 null spermatozoa was also found to be significantly reduced. Moreover, eggs fertilized by these spermatozoa failed to grow to the blastocyst stage. These results suggest that PC4 in the male may be important for achieving fertilization and for supporting early embryonic development in mice.
PC4是丝氨酸蛋白酶原蛋白转化酶家族的成员,参与多种多肽的加工过程,包括激素原、神经肽原和细胞表面蛋白。在啮齿动物中,仅在精母细胞和圆形精子细胞中检测到PC4转录本,表明该酶具有生殖功能。为了阐明这一功能,我们通过胚胎干细胞中的同源重组破坏了其基因座(Pcsk4),并培育出携带该突变的小鼠。在杂合突变小鼠的杂交后代中,突变的Pcsk4等位基因向子代的传递率较低,导致杂合性和纯合缺失的发生率低于预期。在没有任何明显生精异常的情况下,纯合突变雄性小鼠的体内生育能力严重受损。在体外,还发现Pcsk4基因敲除的精子受精能力显著降低。此外,由这些精子受精的卵子无法发育到囊胚阶段。这些结果表明,雄性小鼠中的PC4对于实现受精和支持早期胚胎发育可能很重要。