School of Biological Sciences, Monash University, Wellington Rd, Clayton, VIC, 3800, Australia.
J Biol Inorg Chem. 2010 May;15(4):621-8. doi: 10.1007/s00775-010-0629-y. Epub 2010 Feb 12.
The vinegar fly Drosophila melanogaster is proving to be an excellent system to study the in vivo regulation of the essential metal copper. The Ctr1A/B and DmATP7 copper transport proteins have well-established roles in Drosophila copper uptake and efflux, respectively. Both Ctr1A and DmATP7 are essential genes, whereas Ctr1B mutants are viable but die in excess or depleted copper conditions. Less is known about the tissue-specific requirements for these three genes and how they interact to maintain copper homeostasis in different cell types. Here, we use targeted overexpression and suppression of each gene to examine these questions in vivo. We find that in the epidermal cells that form the adult thoracic and abdominal cuticle, Ctr1A plays a major role in copper uptake, whereas Ctr1B plays only a minor supporting role and DmATP7, as previously shown, is essential for transfer of copper to the trans-Golgi network. We also find that the copper chaperone dSco1 appears necessary for supplying the mitochondria with copper in these tissues. In contrast, in the developing Drosophila eye, DmATP7 appears to be non-essential unless copper levels in these cells are artificially elevated. Again, Ctr1A is the main copper uptake gene in the eye, but when ectopically expressed, Ctr1B has greater phenotypic effects than Ctr1A. Furthermore, Ctr1A and Ctr1B show a dramatic synergistic interaction, indicating their relationship is more complicated than a simply additive one and that they may in fact act cooperatively for optimal copper import.
醋蝇黑腹果蝇被证明是研究体内必需金属铜调控的极佳系统。Ctr1A/B 和 DmATP7 铜转运蛋白在果蝇铜摄取和外排方面分别具有明确的作用。Ctr1A 和 DmATP7 都是必需基因,而 Ctr1B 突变体虽然存活,但在过量或耗尽铜的条件下会死亡。关于这三个基因的组织特异性需求以及它们如何相互作用以维持不同细胞类型中的铜稳态,人们知之甚少。在这里,我们使用靶向过表达和抑制每个基因来在体内研究这些问题。我们发现,在形成成年胸部和腹部外骨骼的表皮细胞中,Ctr1A 在铜摄取中起主要作用,而 Ctr1B 仅起次要支持作用,正如之前所示,DmATP7 对于将铜转运到反式高尔基体网络是必需的。我们还发现,在这些组织中,铜伴侣蛋白 dSco1 似乎对于向线粒体供应铜是必要的。相比之下,在发育中的果蝇眼中,除非这些细胞中的铜水平人为升高,否则 DmATP7 似乎不是必需的。同样,Ctr1A 是眼睛中主要的铜摄取基因,但当异位表达时,Ctr1B 比 Ctr1A 具有更大的表型影响。此外,Ctr1A 和 Ctr1B 表现出明显的协同相互作用,表明它们的关系比简单的加性关系更复杂,它们实际上可能合作以实现最佳的铜导入。