Kawaguchi Mari, Nakagawa Masahiro, Noda Tsutomu, Yoshizaki Norio, Hiroi Junya, Nishida Mutsumi, Iuchi Ichiro, Yasumasu Shigeki
Life Science Institute, Sophia University, Tokyo, Japan.
FEBS J. 2008 Jun;275(11):2884-98. doi: 10.1111/j.1742-4658.2008.06427.x. Epub 2008 Apr 22.
The hatching enzyme of oviparous euteleostean fishes consists of two metalloproteases: high choriolytic enzyme (HCE) and low choriolytic enzyme (LCE). They cooperatively digest the egg envelope (chorion) at the time of embryo hatching. In the present study, we investigated the hatching of embryos of the ovoviviparous black rockfish Sebastes schlegelii. The chorion-swelling activity, HCE-like activity, was found in the ovarian fluid carrying the embryos immediately before the hatching stage. Two kinds of HCE were partially purified from the fluid, and the relative molecular masses of them matched well with those deduced from two HCE cDNAs, respectively, by MALDI-TOF MS analysis. On the other hand, LCE cDNAs were cloned; however, the ORF was not complete. These results suggest that the hatching enzyme is also present in ovoviviparous fish, but is composed of only HCE, which is different from the situation in other oviparous euteleostean fishes. The expression of the HCE gene was quite weak when compared with that of the other teleostean fishes. Considering that the black rockfish chorion is thin and fragile, such a small amount of enzyme would be enough to digest the chorion. The black rockfish hatching enzyme is considered to be well adapted to the natural hatching environment of black rockfish embryos. In addition, five aberrant spliced LCE cDNAs were cloned. Several nucleotide substitutions were found in the splice site consensus sequences of the LCE gene, suggesting that the products alternatively spliced from the LCE gene are generated by the mutations in intronic regions responsible for splicing.
高溶膜酶(HCE)和低溶膜酶(LCE)。它们在胚胎孵化时协同消化卵膜(绒毛膜)。在本研究中,我们调查了卵胎生黑鲪(Sebastes schlegelii)胚胎的孵化情况。在孵化阶段即将开始前,在携带胚胎的卵巢液中发现了类似HCE的卵膜肿胀活性。从该液体中部分纯化出了两种HCE,通过基质辅助激光解吸电离飞行时间质谱(MALDI - TOF MS)分析,它们的相对分子质量分别与从两个HCE cDNA推导出来的分子量非常匹配。另一方面,克隆了LCE cDNA;然而,开放阅读框(ORF)并不完整。这些结果表明,孵化酶在卵胎生鱼类中也存在,但仅由HCE组成,这与其他卵生真骨鱼类的情况不同。与其他硬骨鱼类相比,HCE基因的表达相当微弱。考虑到黑鲪的卵膜薄且脆弱,如此少量的酶就足以消化卵膜。黑鲪孵化酶被认为很好地适应了黑鲪胚胎的自然孵化环境。此外,克隆了五个异常剪接的LCE cDNA。在LCE基因的剪接位点共有序列中发现了几个核苷酸替换,这表明从LCE基因选择性剪接产生的产物是由负责剪接的内含子区域中的突变产生的。