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首页> 外文期刊>Peptides: An International Journal >Molecular identification and expression analysis of a diapause hormone receptor in the corn earworm, Helicoverpa zea
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Molecular identification and expression analysis of a diapause hormone receptor in the corn earworm, Helicoverpa zea

机译:玉米耳蜗Helicoverpa zea中滞育激素受体的分子鉴定和表达分析

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Diapause hormone (DH) is an insect neuropeptide that is highly effective in terminating the overwintering pupal diapause in members of the HelicoverpajHeliothis complex of agricultural pests, thus DH and related compounds have promise as tools for pest management. To augment our development of effective DH analogs and antagonists that could be used as diapause disrupters this study focuses on the cloning and identification of the DH receptor (DHR) in the corn earworm, Helicoverpa zea. The full-length dhr cDNA contains 2153 nucleotides encoding 511 amino acids. Our results suggest there are at least two splicing variants of Hezea-DHR. Hydrophobicity analysis and sequence alignment indicate that Hezea-DHR has 7 transmembrane regions and a highly conserved C-terminal region that is also present in related receptors. Hezea-DHR has 95%, 82% and 79% identity to a partial DHR sequence from Heliothis virescens, a full-length DHR in Orgyia thyellina, and DHR-1 in Bombyx mori, but only 45-49% identity to pheromone biosynthesis activating neuropeptide receptor (PBANR). Expression of dhr mRNA remained low in whole body extracts throughout diapause and in young nondiapausing pupae, but was distinctly elevated as development ensued in pharate adults 7 days after pupation. The highest expression of dhr mRNA we noted was in the ovary. A DHR fusion protein with enhanced-green fluorescent protein was successfully expressed heterologously in X. laevis oocytes, as verified by fluorescent imaging and Western blots, but an electrophysiological assay failed to detect receptor-ligand binding activity, which suggests that an essential cofactor and/or accessory protein is required for functional activity of the DHR.
机译:滞育激素(DH)是一种昆虫神经肽,在终止农业害虫HelicoverpajHeliothis复合体成员的越冬p滞育方面非常有效,因此DH和相关化合物有望作为害虫防治工具。为了增强我们可用作可滞育破坏剂的有效DH类似物和拮抗剂的开发,本研究着重于玉米穗虫Helicoverpa zea中DH受体(DHR)的克隆和鉴定。全长dhr cDNA包含2153个核苷酸,编码511个氨基酸。我们的结果表明,Hezea-DHR至少有两个剪接变体。疏水性分析和序列比对表明,Hezea-DHR具有7个跨膜区域和一个高度保守的C端区域,该区域也存在于相关受体中。 Hezea-DHR与来自Heliothis virescens的部分DHR序列,Orgyia thyellina中的全长DHR和家蚕中的DHR-1具有95%,82%和79%的同一性,但与激活信息素生物合成的仅45-49%的同一性神经肽受体(PBANR)。在整个滞育期和年轻的非滞留性p中,dhr mRNA的表达在全身提取物中均保持较低水平,但在化p后7天,随游成虫发育而显着升高。我们注意到的dhr mRNA的最高表达是在卵巢中。 DHR融合蛋白具有增强的绿色荧光蛋白,已成功地在X. laevis卵母细胞中异源表达,这已通过荧光成像和Western印迹验证,但是电生理测定未能检测到受体-配体结合活性,这表明必需的辅因子和/ DHR的功能活性需要辅助蛋白或辅助蛋白。

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