Bacca H, Huvet A, Fabioux C, Daniel J-Y, Delaporte M, Pouvreau S, Van Wormhoudt A, Moal J
UMR Physiologie et Ecophysiologie des Mollusques Marins, Ifremer, Centre de Brest, B.P. 70, 29280 Plouzané, France.
Comp Biochem Physiol B Biochem Mol Biol. 2005 Apr;140(4):635-46. doi: 10.1016/j.cbpc.2005.01.005.
To investigate the control at the mRNA level of glycogen metabolism in the cupped oyster Crassostrea gigas, we report in the present paper the cloning and characterization of glycogen phosphorylase and synthase cDNAs (Cg-GPH and Cg-GYS, respectively, transcripts of main enzymes for glycogen use and storage), and their first expression profiles depending on oyster tissues and seasons. A strong expression of both genes was observed in the labial palps and the gonad in accordance with specific cells located in both tissues and ability to store glucose. Cg-GPH expression was also found mainly in muscle suggesting ability to use glycogen as readily available glucose to supply its activity. For seasonal examinations, expression of Cg-GYS and Cg-GPH genes appeared to be regulated according to variation in glycogen content. Relative levels of Cg-GYS transcripts appeared highest in October corresponding to glycogen storage and resting period. Relative levels of Cg-GPH transcripts were highest in May corresponding to mobilization of glycogen needed for germ cell maturation. Expression of both genes would likely be driven by the oyster's reproductive cycle, reflecting the central role of glycogen in energy storage and gametogenic development in C. gigas. Both genes are useful molecular markers in the regulation of glycogen metabolism and reproduction in C. gigas but enzymatic regulation of glycogen phosphorylase and synthase remains to be elucidated.
为了研究太平洋牡蛎(Crassostrea gigas)糖原代谢在mRNA水平的调控,我们在本文中报告了糖原磷酸化酶和合酶cDNA(分别为Cg-GPH和Cg-GYS,糖原利用和储存的主要酶的转录本)的克隆与表征,以及它们在牡蛎不同组织和季节中的首次表达谱。在唇瓣和性腺中观察到这两个基因的强烈表达,这与这两个组织中特定细胞的存在以及储存葡萄糖的能力一致。Cg-GPH的表达也主要在肌肉中发现,表明其有能力将糖原用作现成的葡萄糖来支持其活性。对于季节性检测,Cg-GYS和Cg-GPH基因的表达似乎根据糖原含量的变化而受到调控。Cg-GYS转录本的相对水平在10月最高,对应糖原储存和静止期。Cg-GPH转录本的相对水平在5月最高,对应生殖细胞成熟所需糖原的动员。这两个基因的表达可能受牡蛎生殖周期驱动,反映了糖原在太平洋牡蛎能量储存和配子发生发育中的核心作用。这两个基因都是太平洋牡蛎糖原代谢和繁殖调控中的有用分子标记,但糖原磷酸化酶和合酶的酶促调控仍有待阐明。