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一种存在于昆虫中的新型多糖可激活小鼠巨噬细胞RAW264细胞的先天性免疫系统。

A novel polysaccharide in insects activates the innate immune system in mouse macrophage RAW264 cells.

作者信息

Ohta Takashi, Ido Atsushi, Kusano Kie, Miura Chiemi, Miura Takeshi

机构信息

Research Group for Reproductive Physiology, Southern Ehime Fisheries Research Center, Ehime University, Ainan, Ehime, Japan.

出版信息

PLoS One. 2014 Dec 9;9(12):e114823. doi: 10.1371/journal.pone.0114823. eCollection 2014.

Abstract

A novel water-soluble polysaccharide was identified in the pupae of the melon fly (Bactrocera cucurbitae) as a molecule that activates the mammalian innate immune response. We attempted to purify this innate immune activator using nitric oxide (NO) production in mouse RAW264 macrophages as an indicator of immunostimulatory activity. A novel acidic polysaccharide was identified, which we named "dipterose", with a molecular weight of 1.01 × 10(6) and comprising nine monosaccharides. Dipterose was synthesized in the melon fly itself at the pupal stage. The NO-producing activity of dipterose was approximately equal to that of lipopolysaccharide, a potent immunostimulator. Inhibition of Toll-like receptor 4 (TLR4) led to the suppression of NO production by dipterose. Furthermore, dipterose induced the expression of proinflammatory cytokines and interferon β (IFNβ) and promoted the activation of nuclear factor kappa B (NF-κB) in macrophages, indicating that it stimulates the induction of various cytokines in RAW264 cells via the TLR4 signaling pathway. Our results thus suggest that dipterose activates the innate immune response against various pathogenic microorganisms and viral infections. This is the first identification of an innate immune-activating polysaccharide from an animal.

摘要

在瓜实蝇(Bactrocera cucurbitae)蛹中鉴定出一种新型水溶性多糖,它是一种可激活哺乳动物先天免疫反应的分子。我们试图以小鼠RAW264巨噬细胞中一氧化氮(NO)的产生作为免疫刺激活性的指标来纯化这种先天免疫激活剂。鉴定出一种新型酸性多糖,我们将其命名为“双翅糖”,分子量为1.01×10(6),由九种单糖组成。双翅糖是瓜实蝇在蛹期自身合成的。双翅糖产生NO的活性与强效免疫刺激剂脂多糖的活性大致相当。抑制Toll样受体4(TLR4)会导致双翅糖产生的NO受到抑制。此外,双翅糖诱导促炎细胞因子和干扰素β(IFNβ)的表达,并促进巨噬细胞中核因子κB(NF-κB)的激活,这表明它通过TLR4信号通路刺激RAW264细胞中各种细胞因子的诱导。因此,我们的结果表明双翅糖可激活针对各种病原微生物和病毒感染的先天免疫反应。这是首次从动物中鉴定出一种先天免疫激活多糖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e9b/4260955/8bf80f9aecc5/pone.0114823.g001.jpg

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