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家蚕气味结合蛋白的特性表明,一种普通气味结合蛋白能够区分性信息素成分。

Characterisation of Bombyx mori Odorant-binding proteins reveals that a general odorant-binding protein discriminates between sex pheromone components.

作者信息

Zhou Jing-Jiang, Robertson Giles, He Xiaoli, Dufour Samuel, Hooper Antony M, Pickett John A, Keep Nicholas H, Field Linda M

机构信息

Department of Biological Chemistry, Rothamsted Research, Harpenden, AL5 2JQ, UK.

出版信息

J Mol Biol. 2009 Jun 12;389(3):529-45. doi: 10.1016/j.jmb.2009.04.015. Epub 2009 Apr 14.

Abstract

In many insect species, odorant-binding proteins (OBPs) are thought to be responsible for the transport of pheromones and other semiochemicals across the sensillum lymph to the olfactory receptors (ORs) within the antennal sensilla. In the silkworm Bombyx mori, the OBPs are subdivided into three main subfamilies; pheromone-binding proteins (PBPs), general odorant-binding proteins (GOBPs) and antennal-binding proteins (ABPs). We used the MotifSearch algorithm to search for genes encoding putative OBPs in B. mori and found 13, many fewer than are found in the genomes of fruit flies and mosquitoes. The 13 genes include seven new ABP-like OBPs as well as the previously identified PBPs (three), GOBPs (two) and ABPx. Quantitative examination of transcript levels showed that BmorPBP1, BmorGOBP1, BmorGOBP2 and BmorABPx are expressed at very high levels in the antennae and so could be involved in olfaction. A new two-phase binding assay, along with other established assays, showed that BmorPBP1, BmorPBP2, BmorGOBP2 and BmorABPx all bind to the B. mori sex pheromone component (10E,12Z)-hexadecadien-1-ol (bombykol). BmorPBP1, BmorPBP2 and BmorABPx also bind the pheromone component (10E,12Z)-hexadecadienal (bombykal) equally well, whereas BmorGOBP2 can discriminate between bombykol and bombykal. X-ray structures show that when bombykol is bound to BmorGOBP2 it adopts a different conformation from that found when it binds to BmorPBP1. Binding to BmorGOBP2 involves hydrogen bonding to Arg110 rather than to Ser56 as found for BmorPBP1.

摘要

在许多昆虫物种中,气味结合蛋白(OBPs)被认为负责将信息素和其他化学信号分子穿过感器淋巴运输到触角感器内的嗅觉受体(ORs)。在家蚕中,OBPs被细分为三个主要亚家族:信息素结合蛋白(PBPs)、普通气味结合蛋白(GOBPs)和触角结合蛋白(ABPs)。我们使用MotifSearch算法在家蚕中搜索编码假定OBPs的基因,发现了13个,比在果蝇和蚊子基因组中发现的要少得多。这13个基因包括7个新的ABP样OBPs以及先前鉴定的PBPs(3个)、GOBPs(2个)和ABPx。转录水平的定量检测表明,BmorPBP1、BmorGOBP1、BmorGOBP2和BmorABPx在触角中表达水平非常高,因此可能参与嗅觉。一种新的两相结合试验以及其他已建立的试验表明,BmorPBP1、BmorPBP2、BmorGOBP2和BmorABPx都能与家蚕性信息素成分(10E,12Z)-十六碳二烯-1-醇(蚕蛾醇)结合。BmorPBP1、BmorPBP2和BmorABPx也能同样好地结合信息素成分(10E,12Z)-十六碳二烯醛(蚕蛾醛),而BmorGOBP2可以区分蚕蛾醇和蚕蛾醛。X射线结构表明,当蚕蛾醇与BmorGOBP2结合时,它采用的构象与与BmorPBP1结合时不同。与BmorGOBP2的结合涉及与Arg110形成氢键,而不是像与BmorPBP1结合时那样与Ser56形成氢键。

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