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Drosophila innate immunity: regional and functional specialization of prophenoloxidases

机译:果蝇先天免疫:原酚氧化酶的区域和功能专长

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摘要

BackgroundThe diversification of immune systems during evolution involves the expansion of particular gene families in given phyla. A better understanding of the metazoan immune system requires an analysis of the logic underlying such immune gene amplification. This analysis is now within reach due to the ease with which we can generate multiple mutations in an organism. In this paper, we analyze the contribution of the three Drosophila prophenoloxidases (PPOs) to host defense by generating single, double and triple mutants. PPOs are enzymes that catalyze the production of melanin at the site of infection and around parasites. They are the rate-limiting enzymes that contribute to the melanization reaction, a major immune mechanism of arthropods. The number of PPO-encoding genes is variable among insects, ranging from one in the bee to ten in the mosquito.
机译:背景进化过程中免疫系统的多样化涉及给定门中特定基因家族的扩展。对后生动物免疫系统的更好理解需要分析这种免疫基因扩增背后的逻辑。由于我们可以轻松地在生物体中产生多个突变,因此现在可以进行此分析。在本文中,我们通过生成单,双和三突变体,分析了三种果蝇酚氧化酶(PPO)对宿主防御的贡献。 PPO是在感染部位和寄生虫周围催化黑色素生成的酶。它们是促速反应(节肢动物的主要免疫机制)的限速酶。昆虫中PPO编码基因的数量是可变的,范围从蜜蜂中的一个到蚊子中的十个。

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