Abe Hiroki, Hirai Shun, Okada Shigeru
Department of Aquatic Bioscience, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Bunkyo, Tokyo 113-8657, Japan.
Comp Biochem Physiol A Mol Integr Physiol. 2007 Jan;146(1):40-6. doi: 10.1016/j.cbpa.2006.08.027. Epub 2006 Aug 30.
In response to hypoxia at PO(2) 1.3-1.7 mg/L for 6 h, the kuruma prawn Marsupenaeus (Penaeus) japonicus showed a dramatic decrease in phosphoarginine storage in muscle, with normal levels restored during 4-h post-hypoxic recovery. Large stores of muscle glycogen only decreased between 4 and 6 h during hypoxia, but greatly diminished during recovery. Muscle ATP levels and energy charge decreased only slightly under hypoxia. Lactate levels increased slightly during hypoxia and promptly returned to control levels during recovery. These data indicate that phosphoarginine works in muscle as an ATP buffer during hypoxia and glycogen is utilized as an energy source during recovery. Under hypoxia, up- and down-regulated proteins were identified after 2D electrophoresis and partial sequences were obtained after protease digestion. Fructose bisphosphate aldolase was down-regulated during hypoxia, suggesting the suppression of glycolysis under hypoxia. Several partial sequences from three protein spots up-regulated under hypoxia were all assigned to arginine kinase, suggesting the existence of several isoforms of arginine kinase in the muscle of M. japonicus. This arginine kinase up-regulation under hypoxia may indicate a provision for oxygen re-supply after anaerobiosis. This is consistent with the prompt replenishment of phosphoarginine stores during recovery from hypoxia.
在对处于1.3 - 1.7毫克/升的氧分压下6小时的缺氧环境做出反应时,日本对虾(凡纳滨对虾)肌肉中的磷酸精氨酸储备显著减少,在缺氧恢复后的4小时内恢复到正常水平。大量的肌肉糖原仅在缺氧期间的4至6小时内减少,但在恢复过程中大幅减少。缺氧条件下肌肉中的三磷酸腺苷(ATP)水平和能荷仅略有下降。乳酸水平在缺氧期间略有上升,并在恢复过程中迅速恢复到对照水平。这些数据表明,磷酸精氨酸在缺氧期间在肌肉中作为ATP缓冲剂起作用,而糖原在恢复过程中被用作能量来源。在缺氧条件下,通过二维电泳鉴定出上调和下调的蛋白质,并在蛋白酶消化后获得部分序列。缺氧期间果糖二磷酸醛缩酶下调,表明缺氧时糖酵解受到抑制。在缺氧条件下上调的三个蛋白质斑点的几个部分序列均被鉴定为精氨酸激酶,这表明日本对虾肌肉中存在几种精氨酸激酶同工型。缺氧条件下这种精氨酸激酶的上调可能表明在无氧代谢后为氧气再供应做准备。这与从缺氧恢复过程中磷酸精氨酸储备的迅速补充是一致的。