Department of Biological Sciences, University of Cape Town, Private Bag, Rondebosch, Cape Town ZA-7700, South Africa.
IZKF Core Unit Proteomics, Interdisciplinary Center for Clinical Research, University of Münster, Röntgenstr. 21, 48149 Münster, Germany.
Molecules. 2022 Oct 1;27(19):6469. doi: 10.3390/molecules27196469.
The importance of insects in our ecosystems is undeniable. The indiscriminate use of broad-spectrum insecticides is a factor in the decline in insect biomass. We identify and sequence a prominent neuropeptide hormone in insects with an overarching goal to elucidate relatedness and create a database of bioactive peptides that could inform possible cross-activity in biological assays for the identification of a biorational lead compound. The major task of an adipokinetic hormone (AKH) in an insect is the regulation of metabolic events, such as carbohydrate and lipid breakdown in storage tissue during intense muscular work. From genomic and/or transcriptomic information one may predict the genes encoding neuropeptides such as the AKHs of insects. Definite elucidation of the primary structure of the mature peptide with putative post-translational modifications needs analytical chemical methods. Here we use high-resolution mass spectrometry coupled with liquid chromatography to identify unequivocally the AKHs of five insect species (one cockroach, two moths, and two flies) of which either genomic/transcriptomic information was available or sequences from related species. We confirm predicted sequences and discover novel AKH sequences, including one with a post-translational hydroxyproline modification. The additional sequences affirm an evolutionary pattern of dipteran AKHs and a conserved pattern in crambid moths.
昆虫在我们的生态系统中至关重要。广谱杀虫剂的滥用是昆虫生物量下降的一个因素。我们鉴定并测序了昆虫中一种重要的神经肽激素,目的是阐明其亲缘关系,并创建一个具有生物活性肽的数据库,该数据库可在生物测定中为鉴定合理的先导化合物提供信息,以确定可能的交叉活性。昆虫的激素(AKH)的主要任务是调节代谢事件,例如在剧烈肌肉活动期间储存组织中的碳水化合物和脂质分解。从基因组和/或转录组信息中,可以预测编码神经肽的基因,例如昆虫的 AKHs。需要分析化学方法来明确阐明具有假定翻译后修饰的成熟肽的一级结构。在这里,我们使用高分辨率质谱结合液相色谱,明确鉴定了五种昆虫(一种蟑螂,两种蛾,两种蝇)的 AKHs,这些昆虫要么具有基因组/转录组信息,要么具有相关物种的序列。我们确认了预测的序列并发现了新的 AKH 序列,包括一个具有翻译后羟脯氨酸修饰的序列。这些额外的序列证实了双翅目 AKHs 的进化模式和鳞翅目夜蛾中的保守模式。