Li Chaozheng, Chen Yixiao, Weng Shaoping, Li Sedong, Zuo Hongliang, Yu Xiaoqiang, Li Haoyang, He Jianguo, Xu Xiaopeng
MOE Key Laboratory of Aquatic Product Safety/State Key Laboratory for Biocontrol, School of Life Sciences, Sun Yat-sen University, Guangzhou, PR China.
Dev Comp Immunol. 2014 Feb;42(2):174-85. doi: 10.1016/j.dci.2013.08.012. Epub 2013 Sep 4.
The toll-like receptor (TLR)/NF-κB signaling pathways play critical roles in the innate immune system. The intracellular signal transduction of most TLR pathways in invertebrate cells is triggered by formation of a heterotrimeric complex composed of MyD88, Tube and Pelle. In this study, we identified a Litopenaeus vannamei Pelle (LvPelle) and an isoform of L. vannamei Tube (LvTube) designated as LvTube-1. The interactions among LvPelle, LvTube/LvTube-1 and LvMyD88/LvMyD88-1 were elucidated and their functions during pathogen infections were investigated. Knockdowns of LvPelle and LvTube/LvTube-1 using RNAi strategy led to higher mortalities of shrimps during Vibrio parahemolyticus infection, and could reduce the genome copy number of white spot syndrome virus (WSSV) in the infected muscle tissue but did not affect the mortality caused by WSSV infection. The effects of LvPelle and LvTube/LvTube-1 on promoters containing NF-κB binding motifs were analyzed by dual-luciferase reporter assays and the results demonstrated that LvTube-1 could activate the NF-κB activity to significantly higher level than LvTube did. Moreover, tissue distributions of LvTube and LvTube-1 mRNAs and their expression profiles during pathogen and immune stimulant challenges were different, indicating that they could play different roles in immune responses. This is the first report of Tube isoforms in invertebrates. Together with our previous study on LvMyD88 isoforms, our results suggest that various isoforms of adaptor components may be involved in various regulatory patterns of signal transduction in invertebrate TLR/NF-κB pathway and this could be a strategy adopted by invertebrates to modulate immune responses.
Toll样受体(TLR)/核因子κB(NF-κB)信号通路在先天免疫系统中发挥关键作用。在无脊椎动物细胞中,大多数TLR通路的细胞内信号转导是由MyD88、Tube和Pelle组成的异源三聚体复合物的形成所触发的。在本研究中,我们鉴定了凡纳滨对虾的Pelle(LvPelle)和凡纳滨对虾Tube的一种异构体,命名为LvTube-1。阐明了LvPelle、LvTube/LvTube-1和LvMyD88/LvMyD88-1之间的相互作用,并研究了它们在病原体感染过程中的功能。使用RNA干扰策略敲低LvPelle和LvTube/LvTube-1会导致对虾在副溶血性弧菌感染期间死亡率更高,并且可以降低感染肌肉组织中白斑综合征病毒(WSSV)的基因组拷贝数,但不影响WSSV感染引起的死亡率。通过双荧光素酶报告基因检测分析了LvPelle和LvTube/LvTube-1对含有NF-κB结合基序的启动子的影响,结果表明LvTube-1能够比LvTube更显著地激活NF-κB活性。此外,LvTube和LvTube-1 mRNA的组织分布及其在病原体和免疫刺激物刺激下的表达谱不同,表明它们在免疫反应中可能发挥不同的作用。这是无脊椎动物中Tube异构体的首次报道。与我们之前关于LvMyD88异构体的研究一起,我们的结果表明,衔接子成分的各种异构体可能参与无脊椎动物TLR/NF-κB通路中信号转导的各种调节模式,这可能是无脊椎动物调节免疫反应所采用的一种策略。