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地中海实蝇(Ceratitis capitata)变态过程中糖原的合成与动员

Synthesis and mobilization of glycogen during metamorphosis of the medfly Ceratitis capitata.

作者信息

Tolmasky D S, Rabossi A, Quesada-Allué L A

机构信息

Instituto de Investigaciones Bioquiimicas, Fundación Campomar, CONICET and University of Buenos Aires, Avenue Patricias Argentinas 435, Buenos Aires (1405), Argentina.

出版信息

Arch Biochem Biophys. 2001 Aug 1;392(1):38-47. doi: 10.1006/abbi.2001.2394.

Abstract

There are no recent reports focusing on insect glycogen metabolism that take the advances made in mammalian and yeast systems into account. Moreover, little is known about glycogen synthesis and degradation during insect metamorphosis. The biosynthesis and mobilization of insect glycogen were measured during the larva to adult transition in the Medfly, Ceratitis capitata. The glycogen accumulated by larva decreased to reach almost undetectable levels at the beginning of the pupation process. Histological preparations of 40 h muscles and fat body confirmed a low glycogen content, in contrast with high glycogen images in third larva tissues. After 40 h, glycogen was synthesized de novo and accumulates up to adult ecdysis. We obtained the metamorphosis-dependent profiles of phosphorylase, glycogen synthase, and a glycogenin-like protein. This novel insect glycogen initiator protein (the first measured in an arthropod) appeared to be similar to the homologous enzymes from vertebrates and yeast. We have correlated these results with other biochemical events and anatomical landmarks to understand the use of storage carbohydrates during the sequence of metamorphosis events.

摘要

目前尚无将哺乳动物和酵母系统中取得的进展考虑在内的、聚焦于昆虫糖原代谢的近期报道。此外,关于昆虫变态过程中的糖原合成与降解,人们了解甚少。我们在地中海实蝇(Ceratitis capitata)从幼虫到成虫的转变过程中,对昆虫糖原的生物合成与动员进行了测定。幼虫积累的糖原在化蛹过程开始时减少至几乎检测不到的水平。40小时时肌肉和脂肪体的组织学标本证实糖原含量较低,这与三龄幼虫组织中高糖原含量的图像形成对比。40小时后,糖原重新合成并积累直至成虫蜕皮。我们获得了磷酸化酶、糖原合酶和一种类糖原素蛋白的变态依赖性图谱。这种新型昆虫糖原起始蛋白(首次在节肢动物中测定)似乎与来自脊椎动物和酵母的同源酶相似。我们已将这些结果与其他生化事件和解剖学标志相关联,以了解变态事件序列中储存碳水化合物的利用情况。

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