Department of Parasitology, Faculty of Science, Charles University, BIOCEV, Vestec, Czech Republic.
Metallomics. 2019 Oct 16;11(10):1657-1666. doi: 10.1039/c9mt00078j.
Iron and copper are essential elements for practically all living organisms. Their metabolism is frequently interconnected, and while copper is relatively abundant in the ocean, iron is often a limiting factor for the growth of many marine microorganisms. In the present study, we aimed to elucidate the metabolisms of copper and iron and the connection of both in the marine picoalga Ostreococcus tauri. We show that O. tauri adjusts its copper economy in response to copper deficiency by downregulation of the expression of plastocyanin in favor of cytochrome c oxidase without significant changes in growth and physiology. Copper deprivation leads to increased expression of copper transporting ATPase and proteins involved in tetrapyrrole synthesis, most likely to ensure higher turnover of chlorophyll and/or heme. Elucidation of the effect of copper on the incorporation of iron into O. tauri proteins led us to identify the major iron uptake mediating protein, Ot-Fea1, whose expression and binding of iron is copper dependent. Based on our investigation of the incorporation of iron into Ot-Fea1 and ferritin, we hypothesize that O. tauri possesses another Fea1-independent iron uptake system.
铁和铜是几乎所有生物体必需的元素。它们的新陈代谢经常相互关联,虽然铜在海洋中相对丰富,但铁通常是许多海洋微生物生长的限制因素。在本研究中,我们旨在阐明海洋微微藻甲藻(Ostreococcus tauri)中的铜和铁代谢及其相互关系。我们表明,O. tauri 通过下调质体蓝蛋白的表达,有利于细胞色素 c 氧化酶,而不影响生长和生理,从而调整其铜代谢以应对铜缺乏。铜剥夺导致铜转运 ATP 酶和四吡咯合成相关蛋白的表达增加,很可能是为了确保叶绿素和/或血红素的更高周转率。阐明铜对铁掺入 O. tauri 蛋白的影响使我们能够识别主要的铁摄取介导蛋白 Ot-Fea1,其表达和铁结合依赖于铜。基于我们对铁掺入 Ot-Fea1 和铁蛋白的研究,我们假设 O. tauri 具有另一种 Fea1 独立的铁摄取系统。