Adams M E, Zitnan D
Department of Entomology, University of California, Riverside 92521, USA.
Biochem Biophys Res Commun. 1997 Jan 3;230(1):188-91. doi: 10.1006/bbrc.1996.5915.
Ecdysis, the shedding of cuticle at the end of each life stage, is critical to the postembryonic development of insects. The endocrine regulation of ecdysis has been highlighted by the recent description of the epitracheal endocrine system in the tobacco hornworm Manduca sexta, which produces ecdysis-triggering hormone (Mas-ETH). This peptide hormone initiates pre-ecdysis and ecdysis through a direct action on the central nervous system. Here we show that ETH-immunoreactivity and ecdysis-triggering activity in epitracheal glands of the silkworm Bombyx mori are attributable to a 23 amino acid peptide, Bom-ETH. The complete amino acid sequence of Bom-ETH is SNEAFDEDVMGYVIKSNKNIPRM-NH2. Synthetic Bom-ETH was prepared and shown to be chemically and biologically identical to the native substance. Injection of Bom-ETH leads to pre-ecdysis and ecdysis in B. mori pharate larvae and pupae as well as comparable stages of M. sexta. Exposure of the isolated nervous system to Bom-ETH triggers pre-ecdysis and ecdysis burst patterns corresponding to the natural behavior. Bom-ETH belongs to an extended family of multifunctional neurohormones and hormones found in arthropods and molluscs.
蜕皮,即昆虫在每个生命阶段结束时表皮的脱落,对昆虫的胚后发育至关重要。烟草天蛾曼氏粉蝶气管内分泌系统的最新描述突出了蜕皮的内分泌调节,该系统产生蜕皮触发激素(Mas-ETH)。这种肽激素通过直接作用于中枢神经系统来启动蜕皮前和蜕皮过程。在这里,我们表明家蚕气管腺中的ETH免疫反应性和蜕皮触发活性归因于一种23个氨基酸的肽,即家蚕ETH(Bom-ETH)。Bom-ETH的完整氨基酸序列为SNEAFDEDVMGYVIKSNKNIPRM-NH2。合成的Bom-ETH已制备出来,并显示在化学和生物学性质上与天然物质相同。注射Bom-ETH会导致家蚕化蛹幼虫和蛹以及曼氏粉蝶相应阶段出现蜕皮前和蜕皮现象。将分离的神经系统暴露于Bom-ETH会触发与自然行为相对应的蜕皮前和蜕皮爆发模式。Bom-ETH属于节肢动物和软体动物中发现的多功能神经激素和激素的一个扩展家族。