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生物稳定的β-氨基酸PK/PBAN类似物:激动剂和拮抗剂特性。

Biostable beta-amino acid PK/PBAN analogs: agonist and antagonist properties.

作者信息

Nachman Ronald J, Ben Aziz Orna, Davidovitch Michael, Zubrzak Pawel, Isaac R Elwyn, Strey Allison, Reyes-Rangel Gloria, Juaristi Eusebio, Williams Howard J, Altstein Miriam

机构信息

Areawide Pest Management Research, Southern Plains Agricultural Research Center, U.S. Department of Agriculture, College Station, TX 77845, USA.

出版信息

Peptides. 2009 Mar;30(3):608-15. doi: 10.1016/j.peptides.2008.11.007. Epub 2008 Nov 21.

Abstract

The pyrokinin/pheromone biosynthesis activating neuropeptide (PK/PBAN) family plays a significant role in a multifunctional array of important physiological processes in insects. PK/PBAN analogs incorporating beta-amino acids were synthesized and evaluated in a pheromonotropic assay in Heliothis peltigera, a melanotropic assay in Spodoptera littoralis, a pupariation assay in Neobellieria bullata, and a hindgut contractile assay in Leucophaea maderae. Two analogs (PK-betaA-1 and PK-betaA-4) demonstrate greatly enhanced resistance to the peptidases neprilysin and angiotensin converting enzyme that are shown to degrade the natural peptides. Despite the changes to the PK core, analog PK-betaA-4 represents a biostable, non-selective agonist in all four bioassays, essentially matching the potency of a natural PK in pupariation assay. Analog PK-betaA-2 is a potent agonist in the melanotropic assay, demonstrating full efficacy at 1pmol. In some cases, the structural changes imparted to the analogs modify the physiological responses. Analog PK-betaA-3 is a non-selective agonist in all four bioassays. The analog PK-betaA-1 shows greater selectivity than parent PK peptides; it is virtually inactive in the pupariation assay and represents a biostable antagonist in the pheromonotropic and melanotropic assays, without the significant agonism of the parent hexapeptide. These analogs provide new, and in some cases, biostable tools to endocrinologists studying similarities and differences in the mechanisms of the variety of PK/PBAN mediated physiological processes. They also may provide leads in the development of PK/PBAN-based, insect-specific pest management agents.

摘要

焦激肽/信息素生物合成激活神经肽(PK/PBAN)家族在昆虫一系列重要生理过程的多功能作用中发挥着重要作用。合成了包含β-氨基酸的PK/PBAN类似物,并在棉铃虫的性信息素诱导试验、草地贪夜蛾的促黑素试验、红头丽蝇的化蛹试验以及马德拉蜚蠊的后肠收缩试验中进行了评估。两种类似物(PK-βA-1和PK-βA-4)对已证明会降解天然肽的肽酶中性内肽酶和血管紧张素转换酶表现出大大增强的抗性。尽管PK核心发生了变化,但类似物PK-βA-4在所有四种生物测定中均代表一种生物稳定的非选择性激动剂,在化蛹试验中的效力基本与天然PK相当。类似物PK-βA-2在促黑素试验中是一种强效激动剂,在1 pmol时表现出完全效力。在某些情况下,赋予类似物的结构变化会改变生理反应。类似物PK-βA-3在所有四种生物测定中都是非选择性激动剂。类似物PK-βA-1比亲本PK肽具有更高的选择性;它在化蛹试验中几乎无活性,在性信息素诱导和促黑素试验中代表一种生物稳定的拮抗剂,没有亲本六肽的显著激动作用。这些类似物为内分泌学家研究各种PK/PBAN介导的生理过程机制的异同提供了新的、在某些情况下是生物稳定的工具。它们也可能为基于PK/PBAN的昆虫特异性害虫管理剂的开发提供线索。

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