首页> 外文期刊>The Journal of Experimental Biology >Systematic functional characterization of putative zinc transport genes and identification of zinc toxicosis phenotypes in Drosophila melanogaster.
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Systematic functional characterization of putative zinc transport genes and identification of zinc toxicosis phenotypes in Drosophila melanogaster.

机译:果蝇中假定的锌转运基因的系统功能表征和锌中毒表型的鉴定。

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The heavy metal zinc is an essential component of the human diet and is incorporated as a structural component in up to 10% of all mammalian proteins. The physiological importance of zinc homeostasis at the cellular level and the molecular mechanisms involved in this process have become topics of increasing interest in recent years. We have performed a systematic functional characterization of the majority of the predicted Drosophila Zip (zinc/iron regulated transporter-related protein) and ZnT genes, using the Gal4-UAS system to carry out both ubiquitous and targeted over-expression and suppression studies for 13 of the 17 putative zinc transport genes identified to date. We found that six of these 13 genes may be essential for fly viability and that three of the remaining seven demonstrate over-expression phenotypes. Our findings reaffirm the previously proposed function of dZnT63C (CG17723: FBgn005432) as an important zinc efflux protein and indicate that the fly homolog of hZip1, dZip42C.1 (CG9428: FBgn0033096), is a strong zinc importer in Drosophila. By combining over-expression of dZip42C.1 with suppression of dZnT63C we were able to produce easily identifiable zinc toxicosis phenotypes, which can be rescued or worsened by modifying dietary zinc content. Our findings show that a genetically based zinc toxicosis situation can be therapeutically treated or exacerbated by modifications to the diet, providing a sensitized background for future, more detailed studies of Zip/ZnT function.
机译:重金属锌是人类饮食中必不可少的成分,并作为结构成分掺入所有哺乳动物蛋白质的10%之内。近年来,锌稳态在细胞水平上的生理重要性以及此过程涉及的分子机制已成为人们日益关注的话题。我们已经使用Gal4-UAS系统对13个预测的果蝇Zip(锌/铁调节的转运蛋白相关蛋白)和ZnT基因进行了系统的功能表征,从而针对13个研究对象进行了普遍存在的针对性过表达和抑制研究迄今已鉴定出的17种推测的锌转运基因中的一种。我们发现这13个基因中的6个对于果蝇的生存能力可能是必不可少的,其余7个中的3个表现出过表达的表型。我们的发现重申了先前提出的dZnT63C(CG17723:FBgn005432)作为重要的锌外排蛋白的功能,并表明hZip1的蝇类同系物dZip42C.1(CG9428:FBgn0033096)是果蝇中的重要锌进口国。通过将dZip42C.1的过表达与dZnT63C的抑制相结合,我们能够产生易于识别的锌中毒表型,通过改变饮食中的锌含量可以挽救或恶化锌中毒表型。我们的发现表明,通过饮食结构的改变,可以治疗或加剧遗传性锌中毒的情况,为Zip / ZnT功能的未来更详细的研究提供了敏锐的背景。

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