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Functional and Expression Pattern Analysis of Chemosensory Proteins Expressed in Antennae and Pheromonal Gland of Mamestra brassicae

机译:小菜蛾触角和肺腺中表达的化学感受蛋白的功能和表达模式分析

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Sequences coding for chemosensory proteins (CSP) CSPMbraA and CSPMbraB, soluble proteins of low mol. wt, have been amplified using polymerase chain reaction on antennal and pheromonal gland complementary DNAs. On the basis of their sequences, these proteins could be classed in the 'OS-D like' protein family whose first member was described in Drosophila, and that includes proteins characterizedin chemosensory organs of many insect phylla, including our recent identification in Mamestra brassicae proboscis. Binding assays have shown that these proteins bind the pheromonal component (Z)-11-hexadecenyl-1-acetate (Z11-16:Ac) as well as (Z)-11-octadecenyl-1-acetate (Z11-18:Ac), an other putative component of the M.brassiace pheromonal blend. Furthermore, binding with fatty acids, but not with progesterone that is a structurally unrelated compound, leads to the hypothesis that the odorant-binding capability of the MbraCSPs may be restricted to fatty acids and/or to 16-18 carbon backbone skeletons. Thus, these proteins do not show the same highly binding specificty as the pheromone-binding patterns of expression. However, phylogenetic analyses suggest the presence of multiple classes of CSP within a given species and possible diversification of CSPs within different orders. This diversity perhaps contributes to the many CSP functions proposed in the literature. In M. brassicae, we localized the CSPMbraA expression to the sensilla trichodea, devoted to pheromone reception, suggesting a role in the chemosensory pathway. However, we also localized such proteins in the pheromonal gland, devoid of any chemosensory structure. This suggest that the M.brassicae CSP could be involved in transport of hydrophobic molecules through different aqueous media, such as the sensillar lymph, as well as the pheromonal gland cytosol.
机译:编码化学感应蛋白(CSP)CSPMbraA和CSPMbraB(低分子可溶蛋白)的序列。已使用触角和信息腺互补DNA上的聚合酶链反应扩增了野生型wt。根据它们的序列,这些蛋白可以归类为“ OS-D样”蛋白家族,其第一个成员在果蝇中得到描述,其中包括许多昆虫毛孔的化学感应器官所特有的蛋白,包括我们最近在青梅菜中鉴定到的蛋白。 。结合测定表明,这些蛋白质结合信息素组分(Z)-11-十六碳烯-1-乙酸酯(Z11-16:Ac)以及(Z)-11-十八碳烯-1-乙酸酯(Z11-18:Ac) ,Brassiace信息素混合物的另一个推定成分。此外,与脂肪酸结合而不与与结构上无关的化合物黄体酮结合,导致了这样一个假设,即MbraCSP的气味结合能力可能仅限于脂肪酸和/或16-18个碳骨架。因此,这些蛋白质没有表现出与表达信息素结合模式相同的高度结合特异性。但是,系统发育分析表明,给定物种中存在多种类别的CSP,并且CSP可能以不同的顺序出现多样化。这种多样性可能有助于文献中提出的许多CSP功能。在芸苔分枝杆菌中,我们将CSPMbraA表达定位于线粒体感毛病菌,专门用于信息素的接收,提示其在化学感觉途径中的作用。但是,我们也将这种蛋白质定位在信息素腺中,没有任何化学感觉结构。这表明,芸苔分枝杆菌CSP可能参与疏水分子通过不同的水性介质(如感觉淋巴)以及信息素腺胞质溶胶的转运。

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