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Diapause hormone in the Helicoverpa/Heliothis complex: A review of gene expression, peptide structure and activity, analog and antagonist development, and the receptor

机译:Helicoverpa / Heliothis复合物中的滞育激素:基因表达,肽结构和活性,类似物和拮抗剂的发展以及受体的综述

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摘要

This review summarizes recent studies focusing on diapause hormone (DH) in the Helicoverpa/Heliothis complex of agricultural pests. Moths in this complex overwinter in pupal diapause, a form of developmental arrest used to circumvent unfavorable seasons. DH was originally reported in the silkmoth Bombyx mori, a species that relies on DH to induce an embryonic diapause. But, in the case of Helicoverpa/Heliothis, levels of dh transcripts and DH peptides are more abundant in nondiapausing pupae than in diapausing individuals, and DH effectively terminates diapause within a specific temperature range. A structure activity relationship study indicated that the active core of DH is the C-terminal hepta-peptide, LWFGPRLa. We designed and synthesized a first generation of DH agonists and identified two agonists (PK-2Abf and PK-Etz) that were nearly 50- and 13-fold more potent than the native hormone. These studies revealed two structural characteristics of DH and its agonists that are essential for interaction with the receptor: a trans-Pro configuration to form a type I p-turn and a hydrophobic moiety involved in ligand binding. Modification of DH at the active core yielded a potent DH antagonist (DH-Jo, acetyl-GLWA[Jo]RLa) as well as an agonist (DH-2Abf-K). Three compounds (Decyl-1963, Dodecyl-1967, Heptyl-1965) were identified as agents capable of penetrating the cuticle of young pupae and thereby preventing the entry into diapause. DH receptor cDNA was cloned and an effective in vitro high throughput screen system was established for future use. This work sets the stage for further development of DH analogs and antagonists that have the potential to disrupt insect diapause as a tool for pest management. Published by Elsevier Inc.
机译:这篇综述总结了最近针对农业害虫Helicoverpa / Heliothis复合物中滞育激素(DH)的研究。这种复杂的飞蛾因di滞育而越冬,这是一种发育停滞的形式,用于避开不利的季节。 DH最初是在蚕蛾Bombyx mori中报道的,该物种依靠DH诱导胚胎滞育。但是,在Helicoverpa / Heliothis的情况下,非滞育p中的dh转录物和DH肽水平要比滞育个体更丰富,并且DH在特定温度范围内有效终止了滞育。结构活性关系研究表明,DH的活性核心是C端七肽LWFGPRLa。我们设计并合成了第一代DH激动剂,并鉴定了两种激动剂(PK-2Abf和PK-Etz),其效力比天然激素高出近50倍和13倍。这些研究揭示了DH及其激动剂与受体相互作用必不可少的两个结构特征:形成I型p-turn的反式Pro结构和参与配体结合的疏水部分。在活性核心处对DH的修饰产生了有效的DH拮抗剂(DH-Jo,乙酰基-GLWA [Jo] RLa)以及激动剂(DH-2Abf-K)。鉴定出三种化合物(Decyl-1963,Dodecyl-1967,Heptyl-1965)是能够穿透幼小the表皮并从而阻止滞育的物质。克隆了DH受体cDNA,并建立了有效的体外高通量筛选系统以备将来使用。这项工作为进一步开发DH类似物和拮抗剂奠定了基础,这些DH类似物和拮抗剂具有破坏昆虫滞育的潜力,可作为有害生物管理的工具。由Elsevier Inc.发布

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