Department of Chemistry-Biology, University of Siegen, Siegen, 57068, Germany.
Insect Mol Biol. 2023 Aug;32(4):400-411. doi: 10.1111/imb.12839. Epub 2023 Mar 20.
The control of insect moulting and metamorphosis involves ecdysteroids that orchestrate the execution of developmental genetic programs by binding to dimeric hormone receptors consisting of the ecdysone receptor (EcR) and ultraspiracle (USP). In insects, the main ecdysteroids comprise ecdysone (E), which is synthesized in the prothoracic gland and secreted into the haemolymph, and 20-hydroxyecdysone (20E), which is considered the active form by binding to the nuclear receptor of the target cell. While biosynthesis of ecdysteroids has been studied in detail in different insects, the transport systems involved in guiding these steroid hormones across cellular membranes have just recently begun to be studied. By analysing RNAi phenotypes in the red flour beetle, Tribolium castaneum, we have identified three transporter genes, TcABCG-8A, TcABCG-4D and TcOATP4-C1, whose silencing results in phenotypes similar to that observed when the ecdysone receptor gene TcEcRA is silenced, that is, abortive moulting and abnormal development of adult compound eyes during the larval stage. The genes of all three transporters are expressed at higher levels in the larval fat body of T. castaneum. We analysed potential functions of these transporters by combining RNAi and mass spectrometry. However, the analysis of gene functions is challenged by mutual RNAi effects indicating interdependent gene regulation. Based on our findings, we propose that TcABCG-8A, TcABCG-4D and TcOATP4-C1 participate in the ecdysteroid transport in fat body cells, which are involved in E → 20E conversion catalysed by the P450 enzyme TcShade.
昆虫蜕皮和变态的控制涉及蜕皮激素,它通过与由蜕皮激素受体(EcR)和超螺甾(USP)组成的二聚体激素受体结合,协调发育遗传程序的执行。在昆虫中,主要的蜕皮激素包括在前胸腺中合成并分泌到血液中的蜕皮醇(E)和 20-羟基蜕皮醇(20E),它通过与靶细胞的核受体结合被认为是活性形式。虽然不同昆虫中蜕皮激素的生物合成已经得到了详细研究,但涉及引导这些类固醇激素穿过细胞膜的转运系统刚刚开始研究。通过分析红粉甲虫(Tribolium castaneum)的 RNAi 表型,我们鉴定了三个转运基因,TcABCG-8A、TcABCG-4D 和 TcOATP4-C1,它们的沉默导致与沉默蜕皮激素受体基因 TcEcRA 观察到的表型相似,即蜕皮失败和幼虫期成虫复眼发育异常。这三个转运基因在 T. castaneum 的幼虫脂肪体中表达水平较高。我们通过结合 RNAi 和质谱分析来分析这些转运体的潜在功能。然而,基因功能的分析受到相互 RNAi 效应的挑战,这表明基因调控是相互依赖的。基于我们的发现,我们提出 TcABCG-8A、TcABCG-4D 和 TcOATP4-C1 参与脂肪体细胞中的蜕皮激素转运,这与 P450 酶 TcShade 催化的 E→20E 转化有关。