School of Biology, University of Leeds, Leeds LS2 9JT, UK.
Bioscience Technology Facility, Department of Biology, University of York, Wentworth Way, York YO10 5DD, UK.
J Proteomics. 2021 Aug 30;246:104307. doi: 10.1016/j.jprot.2021.104307. Epub 2021 Jun 24.
Peptides present in the seminal fluid of Drosophila melanogaster can function as antimicrobial agents, enzyme inhibitors and as pheromones that elicit physiological and behavioural responses in the post-mated female. Understanding the molecular interactions by which these peptides influence reproduction requires detailed knowledge of their molecular structures. However, this information is often lacking and cannot be gleaned from just gene sequences and standard proteomic data. We now report the native structures of four seminal fluid peptides (andropin, CG42782, Met75C and Acp54A1) from the ejaculatory duct of male D. melanogaster. The mature CG42782, Met75C and Acp54A1 peptides each have a cyclic structure formed by a disulfide bond, which will reduce conformational freedom and enhance metabolic stability. In addition, the presence of a penultimate Pro in CG42782 and Met75C will help prevent degradation by carboxypeptidases. Met75C has undergone more extensive post-translational modifications with the formation of an N-terminal pyroglutamyl residue and the attachment of a mucin-like O-glycan to the side chain of Thr. Both of these modifications are expected to further enhance the stability of the secreted peptide. The glycan has a rare zwitterionic structure comprising an O-linked N-acetyl hexosamine, a hexose and, unusually, phosphoethanolamine. A survey of various genomes showed that andropin, CG42782, and Acp54A1 are relatively recent genes and are restricted to the melanogaster subgroup. Met75C, however, was also found in members of the obscura species groups and in Scaptodrosophila lebanonensis. Andropin is related to the cecropin gene family and probably arose by tandem gene duplication, whereas CG42782, Met75C and Acp54A1 possibly emerged de novo. We speculate that the post-translational modifications that we report for these gene products will be important not only for a biological function, but also for metabolic stability and might also facilitate transport across tissue barriers, such as the blood-brain barrier of the female insect. BIOLOGICAL SIGNIFICANCE: Seminal fluid peptides of D. melanogaster function as antimicrobials, enzyme inhibitors and as pheromones, eliciting physiological and behavioural responses in the post-mated female. A fuller understanding of how these peptides influence reproduction requires knowledge not only of their primary structure, but also of their post-translational modification. However, this information is often lacking and difficult to glean from standard proteomic data. The reported modifications, including the unusual glycosylation, adds much to our knowledge of this important class of peptides in this model organism, par excellence.
黑腹果蝇精液中的肽具有抗菌、抑制酶活性以及作为信息素的作用,可以在交配后的雌性中引起生理和行为反应。了解这些肽影响繁殖的分子相互作用需要详细了解它们的分子结构。然而,这些信息通常是缺失的,并且不能仅从基因序列和标准蛋白质组学数据中获得。我们现在报告了来自黑腹果蝇射精管中的四种精液肽(andropin、CG42782、Met75C 和 Acp54A1)的天然结构。成熟的 CG42782、Met75C 和 Acp54A1 肽各自具有由二硫键形成的环状结构,这将降低构象自由度并增强代谢稳定性。此外,CG42782 和 Met75C 中的前一个脯氨酸的存在将有助于防止羧肽酶的降解。Met75C 经历了更广泛的翻译后修饰,形成了 N 端焦谷氨酸残基,并将粘蛋白样 O-聚糖连接到 Thr 的侧链上。这两种修饰都有望进一步增强分泌肽的稳定性。聚糖具有罕见的两性离子结构,由 O 连接的 N-乙酰己糖胺、己糖和异常的磷酸乙醇胺组成。对各种基因组的调查表明,andropin、CG42782 和 Acp54A1 是相对较新的基因,仅限于黑腹果蝇亚组。然而,Met75C 也存在于 obscura 种组和 Scaptodrosophila lebanonensis 中。Andropin 与 Cecropin 基因家族有关,可能是通过串联基因复制产生的,而 CG42782、Met75C 和 Acp54A1 可能是从头出现的。我们推测,我们报告的这些基因产物的翻译后修饰不仅对生物功能很重要,而且对代谢稳定性也很重要,并且可能还有助于穿过组织屏障(例如雌性昆虫的血脑屏障)的运输。生物学意义:黑腹果蝇的精液肽作为抗菌剂、酶抑制剂和信息素,在交配后的雌性中引起生理和行为反应。要更全面地了解这些肽如何影响繁殖,不仅需要了解它们的一级结构,还需要了解它们的翻译后修饰。然而,这些信息通常是缺失的,并且很难从标准蛋白质组学数据中获得。所报道的修饰,包括不寻常的糖基化,极大地增加了我们对这种重要肽类在这个模型生物中的了解。