Zhang Qirui, Zdarek Jan, Nachman Ronald J, Denlinger David L
Department of Entomology, Ohio State University, 318 West 12th Avenue, Columbus, OH 43210, USA.
Peptides. 2008 Feb;29(2):196-205. doi: 10.1016/j.peptides.2007.08.032. Epub 2007 Dec 7.
Diapause hormone (DH) effectively terminated pupal diapause in Helicoverpa zea. This effect was temperature-dependent, with an optimum of 21 degrees C. The dose-response curve indicated an ED50 of DH for diapause termination of approximately 100 pmol. The core sequence and essential amino acids were determined by bioassays using modified and truncated DH analogs. A C-terminal hepta-peptide, LWFGPRLa, was the core sequence required for diapause termination. Activity was lost when Alanine was substituted for any of the amino acids in the hepta-peptide, with the exception of Glycine. A fragment series of analogs suggested that the amide and Arginine were the most important components needed for terminating diapause. Leucine, Tryptophan, and Phenylalanine at the N-terminus of the hepta-peptide were also critical for activity. The C-terminal Leucine was less important: deletion resulted in decreased activity, although it could not be substituted by Alanine. The fact that a portion of the DH sequence is similar to the pyrokinin that accelerates fly pupariation prompted us to also evaluate the capability of DH to accelerate development in the flesh fly, Sarcophaga bullata. The threshold dose of DH essential to accelerate fly pupariation was 5 pmol for immobilization/retraction and longitudinal contraction and 10 pmol for tanning, approximately one or two orders of magnitude lower than the effective dose required for diapause termination in H. zea. Tensiometric measurements revealed that DH affected neuromuscular patterns of pupariation behavior and associated cuticular changes in a manner similar to that of the fly pyrokinins and their analogs.
滞育激素(DH)能有效解除棉铃虫的蛹滞育。这种效应依赖于温度,最适温度为21摄氏度。剂量反应曲线表明,解除滞育的DH的半数有效剂量(ED50)约为100皮摩尔。通过使用修饰和截短的DH类似物进行生物测定,确定了核心序列和必需氨基酸。一个C端七肽LWFGPRLa是解除滞育所需的核心序列。当丙氨酸取代七肽中的任何氨基酸(甘氨酸除外)时,活性丧失。一系列类似物片段表明,酰胺和精氨酸是解除滞育所需的最重要成分。七肽N端的亮氨酸、色氨酸和苯丙氨酸对活性也至关重要。C端亮氨酸的重要性较低:缺失会导致活性降低,尽管它不能被丙氨酸取代。DH序列的一部分与加速果蝇化蛹的焦激肽相似,这一事实促使我们评估DH加速麻蝇(Sarcophaga bullata)发育的能力。加速果蝇化蛹所需的DH阈值剂量,对于固定/收缩和纵向收缩为5皮摩尔,对于鞣化作用为10皮摩尔,比棉铃虫解除滞育所需的有效剂量低约一个或两个数量级。张力测量表明,DH影响化蛹行为的神经肌肉模式以及相关的表皮变化,其方式与果蝇焦激肽及其类似物相似。