Huang A, Scougall C A, Lowenthal J W, Jilbert A R, Kotlarski I
Department of Microbiology and Immunology, University of Adelaide, Australia.
Dev Comp Immunol. 2001 Jan;25(1):55-68. doi: 10.1016/s0145-305x(00)00041-0.
The Duck interferon gamma (DuIFN-gamma) cDNA was cloned from a phytohaemaglutinin-stimulated duck spleen cDNA library screened using a chicken IFN-gamma (ChIFN-gamma) cDNA probe. The DuIFN-gamma cDNA is 1392 nt long and shows 99% and 80% sequence identity with another cloned DuIFN-gamma cDNA, and with ChIFN-gamma cDNA, respectively. The cDNA contains a 495 bp ORF that encodes a putative 164 amino acid (AA) protein that shares 67% identity with ChIFN-gamma, but only 30-35% identity with mammalian IFN-gamma. The predicted three-dimensional (3D) structures of DuIFN-gamma and ChIFN-gamma are similar when analysed by comparative protein modelling. Culture supernatant collected from COS cells transfected with DuIFN-gamma cDNA was able to activate nitrite secretion from a chicken macrophage cell line (HD11) in a dose-dependent fashion. This activity could not be neutralised by an anti-ChIFN-gamma monoclonal antibody (Mab 85) that was able to neutralise the activity of ChIFN-gamma. Recombinant DuIFN-gamma (rDuIFN-gamma) protein was expressed in E. coli as an N-terminally His-tagged protein and was purified on a nickel affinity column. The eluted protein, which was detected as a approximately 18 kDa band with a purity of >90%, was also detected by Western blot using the anti-ChIFN-gamma monoclonal antibody (Mab 9.1). The rDuIFN-gamma was shown to activate nitrite secretion by HD11 cells in a dose-dependent fashion with a specific activity that was approximately 16-fold lower than a rChIFN-gamma control. Two rabbit antisera raised against rDuIFN-gamma were able to neutralise COS cell-expressed DuIFN-gamma activity; one of these also neutralised ChIFN-gamma activity. These findings indicate that DuIFN-gamma shares structural and functional identity with ChIFN-gamma, which is consistent with our previous results which demonstrated cross reactivity with other lymphokines from the two species.
鸭γ干扰素(DuIFN-γ)cDNA是从用鸡γ干扰素(ChIFN-γ)cDNA探针筛选的经植物血凝素刺激的鸭脾脏cDNA文库中克隆得到的。DuIFN-γ cDNA长1392 nt,与另一个克隆的DuIFN-γ cDNA以及ChIFN-γ cDNA的序列同一性分别为99%和80%。该cDNA包含一个495 bp的开放阅读框(ORF),编码一个推定的164个氨基酸(AA)的蛋白质,该蛋白质与ChIFN-γ的同一性为67%,但与哺乳动物γ干扰素的同一性仅为30 - 35%。通过比较蛋白质建模分析,DuIFN-γ和ChIFN-γ的预测三维(3D)结构相似。从用DuIFN-γ cDNA转染的COS细胞收集的培养上清液能够以剂量依赖的方式激活鸡巨噬细胞系(HD11)中的亚硝酸盐分泌。这种活性不能被能够中和ChIFN-γ活性的抗ChIFN-γ单克隆抗体(Mab 85)中和。重组DuIFN-γ(rDuIFN-γ)蛋白在大肠杆菌中作为N端带有His标签的蛋白表达,并在镍亲和柱上纯化。洗脱的蛋白在SDS-PAGE上检测为约18 kDa的条带,纯度>90%,用抗ChIFN-γ单克隆抗体(Mab 9.1)进行Western印迹也能检测到。rDuIFN-γ被证明能够以剂量依赖的方式激活HD11细胞中的亚硝酸盐分泌,其比活性比rChIFN-γ对照低约16倍。针对rDuIFN-γ产生的两种兔抗血清能够中和COS细胞表达的DuIFN-γ活性;其中一种还能中和ChIFN-γ活性。这些发现表明DuIFN-γ与ChIFN-γ具有结构和功能同一性,这与我们之前证明两种物种的其他淋巴因子具有交叉反应性的结果一致。