Chi Heng, Hu Yong-hua, Xiao Zhi-zhong, Sun Li
Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China.
Dev Comp Immunol. 2014 Feb;42(2):125-31. doi: 10.1016/j.dci.2013.09.001. Epub 2013 Sep 20.
Nuclear factor 45 (NF45) is known to play an important role in regulating interleukin-2 expression in mammals. The function of fish NF45 is largely unknown. In a previous study, we reported the identification of a NF45 (named CsNF45) from half smooth tongue sole (Cynoglossus semilaevis). In the present study, we identified an isoform of CsNF45 (named CsNF45i) from half smooth tongue sole and examined its biological properties in comparison with CsNF45. We found that CsNF45i is a truncated version of CsNF45 and lacks the N-terminal 38 residues of CsNF45. Genetic analysis showed that the CsNF45 gene consists of 14 exons and 13 introns, and that CsNF45 and CsNF45i are the products of alternative splicing. Constitutive expression of CsNF45 and CsNF45i occurred in multiple tissues but differed in patterns. Experimental infection with viral and bacterial pathogens upregulated the expression of both isoforms but to different degrees, with potent induction of CsNF45 being induced by bacterial pathogen, while dramatic induction of CsNF45i being induced by viral pathogen. Transient transfection analysis showed that both isoforms were localized in the nucleus and able to stimulate the activity of IL-2 promoter to comparable extents. To examine their in vivo effects, the two isoforms were overexpressed in tongue sole. Subsequent analysis showed that following viral and bacterial infection, the viral loads in CsNF45i-overexpressing fish were significantly lower than those in CsNF45-overexpressing fish, whereas the bacterial loads in CsNF45-overexpressing fish were significantly lower than those in CsNF45i-overexpressing fish. These results indicate that both CsNF45 and CsNF45i possess immunoregulatory properties, however, the two isoforms most likely participate in different aspects of host immune defense that target different pathogens.
已知核因子45(NF45)在调节哺乳动物白细胞介素-2表达中起重要作用。鱼类NF45的功能在很大程度上尚不清楚。在先前的一项研究中,我们报道了从半滑舌鳎(Cynoglossus semilaevis)中鉴定出一种NF45(命名为CsNF45)。在本研究中,我们从半滑舌鳎中鉴定出CsNF45的一种异构体(命名为CsNF45i),并与CsNF45比较研究了其生物学特性。我们发现CsNF45i是CsNF45的截短版本,缺少CsNF45的N端38个残基。遗传分析表明,CsNF45基因由14个外显子和13个内含子组成,CsNF45和CsNF45i是可变剪接的产物。CsNF45和CsNF45i在多个组织中组成性表达,但模式不同。用病毒和细菌病原体进行实验性感染上调了两种异构体的表达,但程度不同,细菌病原体强烈诱导CsNF45的表达,而病毒病原体显著诱导CsNF45i的表达。瞬时转染分析表明,两种异构体都定位于细胞核中,并且能够在相当程度上刺激IL-2启动子的活性。为了研究它们在体内的作用,在舌鳎中过表达了这两种异构体。随后的分析表明,在病毒和细菌感染后,过表达CsNF45i的鱼中的病毒载量显著低于过表达CsNF45的鱼,而过表达CsNF45的鱼中的细菌载量显著低于过表达CsNF45i的鱼。这些结果表明,CsNF45和CsNF45i都具有免疫调节特性,然而,这两种异构体很可能参与宿主免疫防御的不同方面,针对不同的病原体。