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Identification of an anti-lipopolysacchride factor possessing both antiviral and antibacterial activity from the red claw crayfish Cherax quadricarinatus

机译:从红爪小龙虾Cherax quadricarinatus鉴定同时具有抗病毒和抗菌活性的抗脂多糖因子

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摘要

It is well-known that anti-lipopolysacchride factors (ALFs) are involved in the recognition and elimination of invading pathogens. In this study, the full-length ALF cDNA sequence of the red claw crayfish Cherax quadricarinatus (termed CqALF) was cloned from a suppression subtractive hybridization library constructed using red claw crayfish hematopoietic tissue cell (Hpt cell) cultures following challenge with white spot syndrome virus (WSSV). The full-length cDNA sequence of CqALF was 863 bp, and the open reading frame encoded 123 amino acids with a signal peptide in the N-terminus and a conserved LPS-binding domain. Unlike most ALFs, which are highly expressed in haemocytes, high expression levels of CqALF were detected in epithelium, the stomach and eyestalks, while lower expression was detected in Hpt, nerves, the heart, muscle tissue, gonads, haemocytes, intestines, gills and the hepatopancreas. To further explore the biological activities of CqALF, mature recombinant CqALF protein (rCqALF) was expressed and purified using a eukaryotic expression system, and an antimicrobial activity test was carried out. rCqALF clearly exerted antiviral activity, as evidenced by the severe disruption of the envelope of intact WSSV virions following co-incubation of virions with rCqALF. Additionally, pre-incubation of WSSV with rCqALF resulted in both a significant reduction in WSSV replication in red claw crayfish Hpt cell cultures and an increased survival rate among animals. Furthermore, rCqALF was effective against both Gram-negative bacteria and Gram-positive bacteria, particularly Shigella flexneri and Staphylococcus aureus. A membrane integrity assay suggested that rCqALF was unlikely to disrupt bacterial membrane integrity compared to cecropin P1. Taken together, these data suggest that CqALF may play an important role in immune defence in the crustacean C. quadricarinatus. (C) 2016 Elsevier Ltd. All rights reserved.
机译:众所周知,抗脂多糖因子(ALFs)参与了入侵病原体的识别和消除。在这项研究中,红斑小龙虾Cherax quadricarinatus(称为CqALF)的全长ALF cDNA序列是从用白斑综合症病毒攻击后的红爪小龙虾造血组织细胞(Hpt细胞)培养物构建的抑制消减杂交文库中克隆而来的。 (WSSV)。 CqALF的全长cDNA序列为863 bp,开放阅读框编码123个氨基酸,在N端带有一个信号肽和一个保守的LPS结合域。与大多数在血细胞中高表达的ALF不同,在上皮细胞,胃和眼球中检测到高水平的CqALF,而在Hpt,神经,心脏,心脏,肌肉组织,性腺,血细胞,肠,腮和and中检测到较低的CqALF表达。肝胰腺。为了进一步探索CqALF的生物学活性,使用真核表达系统表达和纯化成熟的重组CqALF蛋白(rCqALF),并进行了抗菌活性测试。 rCqALF明显发挥了抗病毒活性,如病毒粒子与rCqALF共同孵育后完整WSSV病毒粒子包膜的严重破坏所证明。此外,将WSSV与rCqALF一起预孵育既导致红爪小龙虾Hpt细胞培养物中WSSV复制的显着减少,又导致动物之间的存活率提高。此外,rCqALF对革兰氏阴性菌和革兰氏阳性菌均有效,尤其是弗氏志贺氏菌和金黄色葡萄球菌。膜完整性测定表明,与cecropin P1相比,rCqALF不太可能破坏细菌膜的完​​整性。综上所述,这些数据表明CqALF可能在甲壳类C. quadricarinatus的免疫防御中发挥重要作用。 (C)2016 Elsevier Ltd.保留所有权利。

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