Department of Biological Sciences, Bowling Green State University, Bowling Green, OH 43403, USA.
J Insect Physiol. 2010 Jul;56(7):774-9. doi: 10.1016/j.jinsphys.2010.01.008. Epub 2010 Feb 9.
Midgut and fatbody mitochondria from fifth larval instar Manduca sexta display a membrane-associated transhydrogenase that catalyzes a reversible hydride ion transfer between NADP(H) and NAD(H). The NADPH-forming activity occurs as a nonenergy- or energy-linked activity with energy for the latter derived from either electron transport-dependent NADH or succinate utilization, or ATP hydrolysis by Mg(++)-dependent ATPase. During the ten-day developmental period preceding the larval-pupal molt (fifth larval instar), significant peaks in the mitochondrial transhydrogenase activities of midgut and fatbody tissues were noted and these peaks were coincident with the onset of wandering behavior and with the fifty-fold increase in ecdysone 20-monooxygenase (E20-M) activity previously reported for M. sexta midgut. Since E20-M preferentially uses NADPH in catalyzing ecdysone conversion to the physiologically active molting hormone, 20-hydroxyecdysone, the physiological and developmental significance of the mitochondrial, NADPH-forming energy-linked transhydrogenations were made apparent. Moreover, that the increases in all transhydrogenase activities resulted from de novo enzyme synthesis were indicated by the cycloheximide-dependent reductions in these activities.
中肠和脂肪体组织的线粒体从第五龄幼虫 Manduca sexta 中显示出一种膜相关的转氢酶,它催化 NADP(H)和 NAD(H)之间的可逆氢离子转移。NADPH 形成活性是一种非能量或能量相关的活性,后者的能量来自电子传递依赖的 NADH 或琥珀酸利用,或 Mg(++)依赖的 ATP 酶的 ATP 水解。在幼虫-蛹蜕皮前的十天发育期间(第五龄幼虫),中肠和脂肪体组织的线粒体转氢酶活性显著增加,这些峰值与 wandering 行为的开始以及ecdysone 20-单加氧酶(E20-M)活性的五十倍增加相吻合,先前报道过 M. sexta 中肠。由于 E20-M 在催化ecdysone 转化为生理活性的蜕皮激素 20-羟基ecdysone 时优先使用 NADPH,因此线粒体 NADPH 形成能量相关的转氢作用的生理和发育意义变得明显。此外,所有转氢酶活性的增加都是由于新酶合成的结果,这表明这些活性受到环己酰亚胺的依赖性降低。