Helicoverpa armigera 的性信息素生物合成需要 PKC 磷酸化激活的 PFK1。

IF 2.3 2区 农林科学 Q1 ENTOMOLOGY Journal of insect physiology Pub Date : 2025-01-01 DOI:10.1016/j.jinsphys.2024.104739
Ruolan He , Zelong She , Yao Zhang, Shuangyan Yao, Jizhen Wei, Mengfang Du, Shiheng An
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引用次数: 0

摘要

6-磷酸果糖激酶-1(PFK1)是糖酵解过程中的主要限速酶,催化 6-磷酸果糖转化为 1,6-二磷酸果糖。这一糖酵解过程为性信息素的合成提供了必要的底物。然而,PFK1 在性信息素生物合成中的具体功能仍未确定。本研究旨在探究 PFK1 影响 Hecoverpa armigera 中由信息素生物合成激活神经肽(PBAN)调控的性信息素生物合成的详细机制。研究结果显示,信息素腺体(PGs)中存在两个 PFK 基因。进一步研究表明,RNAi介导的PFK1基因敲除会显著降低性信息素的产生、交配成功率和雌虫吸引雄虫的能力,而PFK2基因则不会影响性信息素的生物合成。重要的是,PFK1 在离体 PG 和 Sf9 细胞中均被 PBAN 激活。然而,氯化白屈菜红碱(CC)(一种特异性蛋白激酶 C(PKC)抑制剂)可以减轻 PBAN 诱导的 PFK1 激活。此外,PFK1 的磷酸化水平在 PBAN 挑战下明显升高,而 CC 处理可明显减轻这种磷酸化。研究发现,PFK1 的活性取决于 S135 和 S676 位点的磷酸化对 PBAN 刺激的反应。这些位点上的突变体可消除 PFK1 磷酸化及其活性。总之,我们的研究结果揭示了一个关键机制,PBAN 信号通过该机制招募 PKC 使 PFK1 在 S135 和 S676 位点磷酸化,从而激活 PFK1。这种激活确保了糖酵解途径的正常进行,最终促进了性信息素的生物合成。
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PKC phospho-activated PFK1 is required for PBAN regulated sex pheromone biosynthesis in Helicoverpa armigera
The enzyme 6-phosphofructokinase-1 (PFK1) acts as the primary rate-limiting enzyme in glycolysis, catalyzing the conversion of fructose-6-phosphate to fructose-1,6-bisphosphate. This glycolytic process provides essential substrates for the synthesis of sex pheromones. However, the specific function of PFK1 in sex pheromone biosynthesis remains unidentified. This study aimed to investigate the detailed mechanism by which PFK1 influences pheromone biosynthesis activating neuropeptide (PBAN)-regulated sex pheromone biosynthesis in Hecoverpa armigera. Findings revealed the presence of two PFK genes in pheromone glands (PGs). Further investigation demonstrated that RNAi-mediated knockdown of PFK1 significantly reduced sex pheromone production, mating success and the female ability to attract males, whereas PFK2 did not influence sex pheromone biosynthesis. Importantly, PFK1 was activated by PBAN in both isolated PGs and Sf9 cells. However, PBAN-induced activation of PFK1 could be attenuated by chelerythrine chloride (CC), a specific inhibitor of protein kinase C (PKC). Furthermore, the phosphorylation levels of PFK1 significantly increased in response to PBAN challenge, while CC treatment significantly mitigated this phosphorylation. PFK1 activity was found to depend on phosphorylation at the S135 and S676 sites in response to PBAN stimulation. Mutants at these sites abolished PFK1 phosphorylation and its activity. Overall, our findings unveil a critical mechanism by which the PBAN signaling recruits PKC to phosphorylate PFK1 at S135 and S676 sites, thereby activating PFK1. This activation ensures the normal progression of the glycolysis pathway, ultimately facilitating sex pheromone biosynthesis.
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来源期刊
Journal of insect physiology
Journal of insect physiology 生物-昆虫学
CiteScore
4.50
自引率
4.50%
发文量
77
审稿时长
57 days
期刊介绍: All aspects of insect physiology are published in this journal which will also accept papers on the physiology of other arthropods, if the referees consider the work to be of general interest. The coverage includes endocrinology (in relation to moulting, reproduction and metabolism), pheromones, neurobiology (cellular, integrative and developmental), physiological pharmacology, nutrition (food selection, digestion and absorption), homeostasis, excretion, reproduction and behaviour. Papers covering functional genomics and molecular approaches to physiological problems will also be included. Communications on structure and applied entomology can be published if the subject matter has an explicit bearing on the physiology of arthropods. Review articles and novel method papers are also welcomed.
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