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多不饱和脂肪酸可刺激果蝇体内的免疫反应和类二十烷酸的产生。

Polyunsaturated fatty acids stimulate immunity and eicosanoid production in Drosophila melanogaster.

机构信息

Department of Nematology, University of California, Riverside, CA, USA.

Department of Nematology, University of California, Riverside, CA, USA.

出版信息

J Lipid Res. 2024 Sep;65(9):100608. doi: 10.1016/j.jlr.2024.100608. Epub 2024 Jul 26.

Abstract

Eicosanoids are a class of molecules derived from C20 polyunsaturated fatty acids (PUFAs) that play a vital role in mammalian and insect biological systems, including development, reproduction, and immunity. Recent research has shown that insects have significant but lower levels of C20 PUFAs in circulation in comparison to C18 PUFAs. It has been previously hypothesized in insects that eicosanoids are synthesized from C18 precursors, such as linoleic acid (LA), to produce downstream eicosanoids. In this study, we show that introduction of arachidonic acid (AA) stimulates production of cyclooxygenase, lipoxygenase, and cytochrome P450-derived eicosanoids. Downstream immune readouts showed that LA stimulates phagocytosis by hemocytes, while both LA and AA stimulate increased antimicrobial peptide production when D. melanogaster is exposed to a heat-killed bacterial pathogen. In totality, this work identifies PUFAs that are involved in insect immunity and adds evidence to the notion that Drosophila utilizes immunostimulatory lipid signaling to mitigate bacterial infections. Our understanding of immune signaling in the fly and its analogies to mammalian systems will increase the power and value of Drosophila as a model organism in immune studies.

摘要

类二十烷酸是一类源自二十碳多不饱和脂肪酸 (PUFA) 的分子,在哺乳动物和昆虫的生物系统中发挥着至关重要的作用,包括发育、繁殖和免疫。最近的研究表明,与 C18-PUFA 相比,昆虫体内循环中的 C20-PUFA 含量虽然显著较低,但水平较高。此前有研究假设,昆虫中的类二十烷酸是由 C18 前体(如亚油酸 (LA))合成而来,以产生下游的类二十烷酸。在这项研究中,我们表明引入花生四烯酸 (AA) 可刺激环加氧酶、脂加氧酶和细胞色素 P450 衍生的类二十烷酸的产生。下游免疫反应表明,LA 刺激血细胞的吞噬作用,而当 D. melanogaster 暴露于热失活细菌病原体时,LA 和 AA 均能刺激抗菌肽的产生增加。总的来说,这项工作确定了参与昆虫免疫的多不饱和脂肪酸,并为果蝇利用免疫刺激脂质信号来减轻细菌感染的观点提供了证据。我们对果蝇免疫信号的理解及其与哺乳动物系统的相似性将提高果蝇作为免疫研究模型生物的能力和价值。

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