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家蝇(Musca domestica)幼虫体壁损伤后抗菌肽基因的组织依赖性诱导

Tissue-dependent induction of antimicrobial peptide genes after body wall injury in house fly (Musca domestica) larvae.

作者信息

Andoh Minako, Ueno Takayuki, Kawasaki Kiyoshi

机构信息

Faculty of Pharmaceutical Sciences, Doshisha Women's College of Liberal Arts.

出版信息

Drug Discov Ther. 2018;12(6):355-362. doi: 10.5582/ddt.2018.01063.

Abstract

Injury of the insect body wall, which enables environmental microorganisms to invade into insect tissues, induces innate immune responses including the induction of antimicrobial peptides (AMPs) in flies and silkworms. Here, house fly (Musca domestica) larvae and pupae were injured using a needle and the effects on the expression of genes encoding AMPs were examined. The expression of AMP genes including defensin, attacin, diptericin, and sarcotoxin II dramatically increased in both larvae and pupae after injury of the body wall, indicating that innate immune responses were induced. Furthermore, the injury-dependent expression of AMP genes was examined in larval tissues including fat bodies, hemocytes, salivary glands, and digestive tracts. Injury-dependent AMP gene expression was observed in salivary glands, hemocytes, and fat bodies, but not in digestive tracts. The degree of the transcriptional induction of each gene differed among tissues, suggesting that their expression is governed by complex regulatory machinery and that AMPs have tissue-specific functions. To further examine the properties of the AMPs, we examined the antimicrobial activities of partial synthetic peptides corresponding to portions of the predicted AMP proteins deduced from the AMP genes. A synthetic peptide exhibited antimicrobial activity, indicating that these injury-inducible genes are potential medicinal resources.

摘要

昆虫体壁受伤会使环境微生物侵入昆虫组织,从而引发包括果蝇和家蚕中抗菌肽(AMPs)诱导在内的先天免疫反应。在此,用针刺家蝇(Musca domestica)幼虫和蛹,并检测其对编码抗菌肽基因表达的影响。体壁受伤后,幼虫和蛹中包括防御素、攻击素、双翅菌素和肌毒素II在内的抗菌肽基因表达均显著增加,表明诱导了先天免疫反应。此外,还检测了幼虫组织(包括脂肪体、血细胞、唾液腺和消化道)中抗菌肽基因的损伤依赖性表达。在唾液腺、血细胞和脂肪体中观察到了损伤依赖性抗菌肽基因表达,但在消化道中未观察到。各基因转录诱导程度在不同组织间存在差异,这表明它们的表达受复杂调控机制支配,且抗菌肽具有组织特异性功能。为进一步研究抗菌肽的特性,我们检测了与从抗菌肽基因推导的预测抗菌肽蛋白部分相对应的部分合成肽的抗菌活性。一种合成肽表现出抗菌活性,表明这些损伤诱导基因是潜在的药用资源。

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