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蜕皮甾类调节印卡细胞的分泌能力。

Ecdysteroids regulate secretory competence in Inka cells.

作者信息

Kingan T G, Adams M E

机构信息

Department of Entomology. University of California, Riverside, CA 92521, USA.

出版信息

J Exp Biol. 2000 Oct;203(Pt 19):3011-8. doi: 10.1242/jeb.203.19.3011.

Abstract

Ecdysis, or molting behavior, in insects requires the sequential action of high levels of ecdysteroids, which induce accumulation of ecdysis-triggering hormone (ETH) in Inka cells, followed by low levels of ecdysteroids, permissive for the onset of the behavior. Here, we show that high ecdysteroid levels suppress the onset of the behavioral sequence by inhibiting the development of competence to secrete ETH. In pharate pupae of Manduca sexta, Inka cells in the epitracheal glands normally develop competence to secrete ETH in response to eclosion hormone (EH) 8 h before pupation. Injection of 20-hydroxyecdysone (20E) into precompetent insects prevents this acquisition of competence, but does not affect EH-evoked accumulation of the second messenger cyclic GMP. Precompetent glands acquire competence in vitro after overnight culture, and this can be prevented by the inclusion of 20E at concentrations greater than 0.1 microg ml(-1)in the culture medium. Actinomycin D completely inhibits the acquisition of competence, demonstrating that it is dependent on transcriptional events. Cultured epitracheal glands become refractory to the inhibitory effects of 20E in the acquisition of competence at least 3 h earlier than for Actinomycin D, indicating that 20E acts on an early step in a sequence of nuclear events leading to transcription of a structural gene. Our findings suggest that declining ecdysteroid levels permit a late event in transcription, the product of which is downstream of EH receptor activation and cyclic GMP accumulation in the cascade leading to ETH secretion.

摘要

昆虫的蜕皮,即蜕皮行为,需要高水平蜕皮甾类激素的顺序作用,其诱导蜕皮触发激素(ETH)在印卡细胞中积累,随后是低水平的蜕皮甾类激素,这允许行为的开始。在这里,我们表明,高蜕皮甾类激素水平通过抑制分泌ETH的能力的发展来抑制行为序列的开始。在烟草天蛾的预蛹中,气管腺中的印卡细胞通常在化蛹前8小时响应羽化激素(EH)而发展出分泌ETH的能力。向未成熟的昆虫注射20-羟基蜕皮酮(20E)可阻止这种能力的获得,但不影响EH诱导的第二信使环鸟苷酸的积累。未成熟的腺体在过夜培养后在体外获得能力,并且在培养基中加入浓度大于0.1微克/毫升(-1)的20E可阻止这种情况。放线菌素D完全抑制能力的获得,表明它依赖于转录事件。培养的气管腺在获得能力方面比放线菌素D至少提前3小时对20E的抑制作用产生抗性,表明20E作用于导致结构基因转录的核事件序列的早期步骤。我们的研究结果表明,蜕皮甾类激素水平的下降允许转录中的一个后期事件发生,其产物在导致ETH分泌的级联反应中位于EH受体激活和环鸟苷酸积累的下游。

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