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Drosophila melanogaster prophenoloxidases respond inconsistently to Cu ~(2+) and have different activity in vitro

机译:果蝇黑色素原酚氧化酶对Cu〜(2+)反应不一致,并在体外具有不同的活性

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摘要

Dipteran insects, like mosquitoes, possess more than two prophenoloxidase (PPO) genes, but it is unclear whether their gene products differ in biochemical properties and physiological functions. Here, we used three Drosophila melanogaster PPOs as models to study their properties through expression in S2 cells. Our data revealed that the PPOs were expressed in the ethanol-activatable conformation: rPPO1 and rPPO2 needed additional Cu ~(2+) in the medium, but rPPO3 did not. rPPO1 bound Cu ~(2+) within minutes; rPPO2 did that in hours when Cu ~(2+) were present at a higher concentration. Thus, rPPO1 and rPPO2 were expressed as apo-rPPO and became holo-PPO upon Cu ~(2+) binding; rPPO3 was holo-PPO immediately after expression. Surprisingly, in the absence of ethanol, the apparently intact rPPO3 catalyzed dopamine oxidation and melanization. The successful method for rPPO expression in S2 cells described in this paper will provide us with an opportunity to study the properties of a specific PPO gene in a small insect like mosquitoes in the future.
机译:像蚊子一样,Dipteran昆虫拥有两个以上的前酚氧化酶(PPO)基因,但是尚不清楚它们的基因产物在生化特性和生理功能上是否有所不同。在这里,我们使用了三个果蝇果蝇PPOs作为模型,通过在S2细胞中表达来研究其特性。我们的数据显示PPO以乙醇可激活的构象表达:rPPO1和rPPO2在培养基中需要额外的Cu〜(2+),而rPPO3不需要。 rPPO1在几分钟内与Cu〜(2+)结合;当Cu〜(2+)的浓度较高时,rPPO2可以在数小时内完成。因此,rPPO1和rPPO2被表达为apo-rPPO,并在Cu〜(2+)结合后成为完整的PPO。表达后,rPPO3即为完整PPO。令人惊讶的是,在没有乙醇的情况下,看似完整的rPPO3催化了多巴胺的氧化和黑色素化。本文描述的成功地在S2细胞中表达rPPO的方法将为我们将来研究蚊子等小昆虫中特定PPO基因的特性提供一个机会。

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