Yang Shuxin, Marín-Juez Rubén, Meijer Annemarie H, Spaink Herman P
Institute of Biology, Leiden University, PO Box 9502, 2300 RA, Leiden, The Netherlands.
ZF-screens BV, J. H. Oortweg 19, 2333 CH, Leiden, The Netherlands.
BMC Genomics. 2015 Jul 25;16(1):547. doi: 10.1186/s12864-015-1740-9.
Although the responses to many pathogen associated molecular patterns (PAMPs) in cell cultures and extracted organs are well characterized, there is little known of transcriptome responses to PAMPs in whole organisms. To characterize this in detail, we have performed RNAseq analysis of responses of zebrafish embryos to injection of PAMPs in the caudal vein at one hour after exposure. We have compared two ligands that in mammals have been shown to specifically activate the TLR2 and TLR5 receptors: Pam3CSK4 and flagellin, respectively.
We identified a group of 80 common genes that respond with high stringency selection to stimulations with both PAMPs, which included several well-known immune marker genes such as il1b and tnfa. Surprisingly, we also identified sets of 48 and 42 genes that specifically respond to either Pam3CSK4 or flagellin, respectively, after a comparative filtering approach. Remarkably, in the Pam3CSK4 specific set, there was a set of transcription factors with more than 2 fold-change, as confirmed by qPCR analyses, including cebpb, fosb, nr4a1 and egr3. We also showed that the regulation of the Pam3CSK4 and flagellin specifically responding sets is inhibited by knockdown of tlr2 or tlr5, respectively.
Our studies show that Pam3CSK4 and flagellin can stimulate the Tlr2 and Tlr5 signaling pathways leading to common and specific responses in the zebrafish embryo system.
尽管细胞培养物和提取器官中对许多病原体相关分子模式(PAMP)的反应已得到充分表征,但对于全生物体中PAMP的转录组反应却知之甚少。为了详细表征这一点,我们在暴露一小时后对斑马鱼胚胎尾静脉注射PAMP的反应进行了RNA测序分析。我们比较了两种在哺乳动物中已被证明能特异性激活TLR2和TLR5受体的配体:分别是Pam3CSK4和鞭毛蛋白。
我们鉴定出一组80个共同基因,它们在严格筛选下对两种PAMP刺激均有反应,其中包括几个著名的免疫标记基因,如il1b和tnfa。令人惊讶的是,在采用比较筛选方法后,我们还分别鉴定出了48个和42个分别对Pam3CSK4或鞭毛蛋白特异性反应的基因集。值得注意的是,在Pam3CSK4特异性基因集中,通过qPCR分析证实有一组转录因子的变化超过2倍,包括cebp b、fosb、nr4a1和egr3。我们还表明,分别敲低tlr2或tlr5可抑制Pam3CSK4和鞭毛蛋白特异性反应基因集的调控。
我们的研究表明,Pam3CSK4和鞭毛蛋白可刺激Tlr2和Tlr5信号通路,在斑马鱼胚胎系统中引发共同和特异性反应。