Colas P, Serras F, Van Loon A E
Department of Experimental Zoology, Utrecht University, The Netherlands.
Int J Dev Biol. 1993 Dec;37(4):589-94.
The suc1 protein is a cell cycle regulator whose precise function remains to be elucidated. The suc1 cDNA of the mollusk Patella vulgata was cloned and sequenced. It encodes a 9 kD protein showing a strong similarity with its human counterparts and to a lesser extend with its yeast counterparts. The expression of suc1 in maturing oocytes was shown to be tightly cell cycle-regulated. The abundance of the suc1 transcripts is high in prophase- and metaphase-arrested oocytes but drops dramatically upon exit from M-phase, after fertilization. The microinjection of suc1 synthetic messengers into embryonic blastomeres delayed the cell cycle clock, thus disrupting the perfect cell cycle synchrony exhibited by the blastomeres of early Patella embryos. Interestingly, this suc1 delaying effect was significantly reversed when cyclin B messengers were co-injected with suc1 messengers. These results show that Patella embryos offer a quite valuable model to study cell cycle regulation. Moreover, they support the existence of a negative control exerted by suc1 on the cell cycle traverse in a higher eukaryote.
suc1蛋白是一种细胞周期调节因子,其确切功能尚待阐明。对软体动物笠贝的suc1 cDNA进行了克隆和测序。它编码一种9 kD的蛋白质,与人类对应物有很强的相似性,与酵母对应物的相似性较小。研究表明,suc1在成熟卵母细胞中的表达受到严格的细胞周期调控。suc1转录本在前期和中期停滞的卵母细胞中丰度很高,但在受精后从M期退出时急剧下降。将suc1合成信使显微注射到胚胎卵裂球中会延迟细胞周期时钟,从而破坏早期笠贝胚胎卵裂球所表现出的完美细胞周期同步性。有趣的是,当细胞周期蛋白B信使与suc1信使共同注射时,这种suc1延迟效应会显著逆转。这些结果表明,笠贝胚胎为研究细胞周期调控提供了一个非常有价值的模型。此外,它们支持了suc1对高等真核生物细胞周期进程施加负调控的存在。