Jungreis A M, Dailey J C, Hereth M L
Am J Physiol. 1975 Nov;229(5):1448-54. doi: 10.1152/ajplegacy.1975.229.5.1448.
Magnesium metabolism has been studied in Hyalophora cecropia during the larval-pupal transformation (LPT) (Jungreis, A. M., Am. J. Physiol. 224: 27--30, 1973). Throughout this period, it accumulated in midgut (0.5 M at ecdysis), presumably as osmotically inactive Mg3(PO4)2. Glycerol accumulation in hemolymph was also first noted during this period. Since total alpha-glycerol phosphate present in hemolymph declined between the larval and pupal stages of development, the relationship between magnesium and alpha-glycerol phosphate metabolism was studied. Specific and total alpha-glycerol phosphatase (degradative) and glycerol kinase (synthetic) enzyme activities were measured in fat-body and midgut tissue throughout the LPT. At both feeding larval and diapause pupal stages in development in both tissues, total glycerol kinase activity is greater than that of alpha-glycerol phosphatase with degradative/synthetic activity ratios of 0.2--0.5. In fat body, ratios remained constant or shifted in the direction of synthesis during the LPT, whereas those measured in midgut tissue increased in the direction of degradation with a maximum ratio of 5.8 noted following spinning. The increase in degradative/synthetic activity ratios in midgut tissue is attributed to a greater rate of loss of glycerol kinase than alpha-glycerol phosphatase enzyme activity. Orthophosphate, presumably released from alpha-glycerol phosphate within the cells of the pharate pupal midgut tissue, combines with magnesium to form osmotically inactive Mg3(PO4)2 crystals.
在天蚕蛾幼虫-蛹转化(LPT)过程中对其镁代谢进行了研究(Jungreis,A.M.,《美国生理学杂志》224:27 - 30,1973)。在整个这一时期,镁在中肠中积累(蜕皮时为0.5M),推测是以渗透惰性的磷酸镁(Mg3(PO4)2)形式存在。血淋巴中甘油的积累也是在这一时期首次被注意到。由于在幼虫和蛹发育阶段之间血淋巴中总的α - 甘油磷酸含量下降,因此研究了镁与α - 甘油磷酸代谢之间的关系。在整个LPT过程中,对脂肪体和中肠组织中的特异性和总的α - 甘油磷酸酶(降解性)以及甘油激酶(合成性)酶活性进行了测量。在发育过程中的取食幼虫阶段和滞育蛹阶段,在这两种组织中,总的甘油激酶活性都大于α - 甘油磷酸酶活性,降解/合成活性比为0.2 - 0.5。在脂肪体中,在LPT期间这些比值保持恒定或朝着合成方向变化,而在中肠组织中测量到的比值朝着降解方向增加,吐丝后记录到的最大比值为5.8。中肠组织中降解/合成活性比的增加归因于甘油激酶活性的损失速率比α - 甘油磷酸酶活性更大。正磷酸盐大概是从即将化蛹的中肠组织细胞内的α - 甘油磷酸中释放出来的,它与镁结合形成渗透惰性的磷酸镁(Mg3(PO4)2)晶体。