Chen Xiao-Xiao, Li Yan-Yao, Chang Xue-Jiao, Xie Xiao-Lu, Liang Yu-Ting, Wang Ke-Jian, Zheng Wen-Yun, Liu Hai-Peng
Shanghai Key Laboratory of New Drug Design, School of Pharmacy, East China University of Science and Technology, Shanghai 200237, PR China; State Key Laboratory of Marine Environmental Science; Fujian Collaborative Innovation Center for Exploitation and Utilization of Marine Biological Resources, State-Province Joint Engineering Laboratory of Marine Bioproducts and Technology, Xiamen 361102, Fujian, PR China.
State Key Laboratory of Marine Environmental Science; Fujian Collaborative Innovation Center for Exploitation and Utilization of Marine Biological Resources, State-Province Joint Engineering Laboratory of Marine Bioproducts and Technology, Xiamen 361102, Fujian, PR China.
Dev Comp Immunol. 2018 May;82:104-112. doi: 10.1016/j.dci.2018.01.008. Epub 2018 Jan 16.
It is well known that iron is an essential element for all living organism. The intracellular iron availability is also important for the host's innate immune response to various pathogens, in which the iron homeostasis can be regulated by ferritin due to its iron storage property. In this study, a full-length cDNA sequence of ferritin (named as CqFerritin) was identified with 1410 bp from red claw crayfish Cherax quadricarinatus, which contained an open reading frame of 513 bp, encoding 170 amino acids with a conserved ferritin domain. Tissue distribution analysis demonstrated that CqFerritin was widely expressed in various tissues with high presence in haemocyte, haematopoietic tissue (Hpt) and heart, while lowest expression in hepatopancreas. In addition, loss-of-function of CqFerritin by gene silencing resulted in significantly higher expression of an envelope protein VP28 of white spot syndrome virus (WSSV) in red claw crayfish Hpt cell cultures, indicating the potential antiviral response of CqFerritin. To further explore the effect on WSSV replication by CqFerritin, recombinant CqFerritin protein (rCqFerritin) was transfected into Hpt cells followed by WSSV infection. Importantly, the replication of WSSV was obviously decreased in Hpt cells if transfected with rCqFerritin protein, suggesting that CqFerritin had clearly negative effect on WSSV infection. Furthermore, intracellular accumulation of iron ions was found to promote the WSSV replication in a dose-dependent manner, illustrating that the iron level regulated by CqFerritin was likely to be vital for WSSV infection in red claw crayfish. Taken together, these data suggest that CqFerritin plays an important role in immune defense against WSSV infection in a crustacean C. quadricarinatus.
众所周知,铁是所有生物的必需元素。细胞内铁的可用性对于宿主对各种病原体的固有免疫反应也很重要,其中由于铁蛋白的铁储存特性,铁稳态可由铁蛋白调节。在本研究中,从红螯螯虾Cherax quadricarinatus中鉴定出一个1410 bp的铁蛋白全长cDNA序列(命名为CqFerritin),其包含一个513 bp的开放阅读框,编码170个氨基酸,具有保守的铁蛋白结构域。组织分布分析表明,CqFerritin在各种组织中广泛表达,在血细胞、造血组织(Hpt)和心脏中含量较高,而在肝胰腺中表达最低。此外,通过基因沉默使CqFerritin功能丧失导致红螯螯虾Hpt细胞培养物中白斑综合征病毒(WSSV)的包膜蛋白VP28表达显著升高,表明CqFerritin具有潜在的抗病毒反应。为了进一步探究CqFerritin对WSSV复制的影响,将重组CqFerritin蛋白(rCqFerritin)转染到Hpt细胞中,随后进行WSSV感染。重要的是,如果用rCqFerritin蛋白转染,Hpt细胞中WSSV的复制明显减少,这表明CqFerritin对WSSV感染具有明显的负面影响。此外,发现细胞内铁离子的积累以剂量依赖的方式促进WSSV复制,说明由CqFerritin调节的铁水平可能对红螯螯虾中WSSV感染至关重要。综上所述,这些数据表明CqFerritin在甲壳类红螯螯虾对WSSV感染的免疫防御中起重要作用。