Nachman Ronald J, Teal Peter E A, Aziz Orna Ben, Davidovitch Michael, Zubrzak Pawel, Altstein Miriam
Areawide Pest Management Research, Southern Plains Agricultural Research Center, U.S. Department of Agriculture, College Station, TX 77845, USA.
Peptides. 2009 Mar;30(3):616-21. doi: 10.1016/j.peptides.2008.09.024. Epub 2008 Oct 17.
A linear pyrokinin (PK)/pheromone biosynthesis activating neuropeptide (PBAN) antagonist lead (RYF[dF]PRLa) was structurally modified to impart amphiphilic properties to enhance its ability to transmigrate the hydrophobic cuticle of noctuid moth species and yet retain aqueous solubility in the hemolymph to reach target PK/PBAN receptors within the internal insect environment. The resulting novel PK/PBAN analog, Hex-Suc-A[dF]PRLa (PPK-AA), was synthesized and evaluated as an antagonist in a pheromonotropic assay in Heliothis peltigera against 4 natural PK/PBAN peptide elicitors (PBAN; pheromonotropin, PT; myotropin, MT; leucopyrokinin, LPK) and in a melanotropic assay in Spodoptera littoralis against 3 natural PK/PBAN peptide elicitors (PBAN, PT, LPK). The analog proved to be a potent and efficacious inhibitor of sex pheromone biosynthesis elicited by PBAN (84% at 100 pmol) and PT (54% at 100 pmol), but not by MT and LPK. PPK-AA is a selective pure antagonist (i.e., does not exhibit any agonistic activity) as it failed to inhibit melanization elicited by any of the natural PK/PBAN peptides. The analog was shown to transmigrate isolated cuticle dissected from adult female Heliothis virescens moths to a high extent of 25-30% (130-150 pmol), representing physiologically significant quantities. PPK-AA represents a significant addition to the arsenal of tools available to arthropod endocrinologists studying the endogenous mechanisms of PK/PBAN regulated processes, and a prototype for the development of environmentally friendly pest management agents capable of disrupting the critical process of reproduction.
一种线性焦激肽(PK)/信息素生物合成激活神经肽(PBAN)拮抗剂先导物(RYF[dF]PRLa)进行了结构修饰,赋予其两亲性,以增强其穿透夜蛾科物种疏水角质层的能力,同时在血淋巴中保持水溶性,从而在昆虫体内环境中到达目标PK/PBAN受体。合成了所得的新型PK/PBAN类似物Hex-Suc-A[dF]PRLa(PPK-AA),并在烟芽夜蛾的促信息素测定中,针对4种天然PK/PBAN肽激发子(PBAN;促信息素,PT;促肌动素,MT;亮焦激肽,LPK)评估其作为拮抗剂的活性,以及在草地贪夜蛾的促黑素测定中,针对3种天然PK/PBAN肽激发子(PBAN、PT、LPK)进行评估。该类似物被证明是PBAN(100 pmol时为84%)和PT(100 pmol时为54%)引发的性信息素生物合成的有效抑制剂,但对MT和LPK引发的性信息素生物合成无抑制作用。PPK-AA是一种选择性纯拮抗剂(即不表现出任何激动活性),因为它未能抑制任何天然PK/PBAN肽引发的黑化作用。该类似物在从成年雌性烟草天蛾蛾分离的角质层中具有较高的迁移率,达到25-30%(130-150 pmol),代表了生理上有意义的量。PPK-AA是节肢动物内分泌学家研究PK/PBAN调节过程的内源性机制可用工具库中的一个重要补充,也是开发能够破坏关键生殖过程的环境友好型害虫管理剂的原型。