Digby M R, Lowenthal J W
CSIRO Division of Animal Health, Animal Health Research Laboratory, Parkville, Victoria, Australia.
J Interferon Cytokine Res. 1995 Nov;15(11):939-45. doi: 10.1089/jir.1995.15.939.
We have cloned the gene for chicken interferon-gamma (ChIFN-gamma) from a cDNA expression library generated from a T cell line (CC8.1h) that produces high levels of IFN-gamma activity. CC8.1h constitutively produces IFN activity that shares physiochemical properties with mammalian IFN-gamma. ChIFN-gamma, when secreted by CC8.1h or expressed in transfected COS cells, is heat labile, inactivated by exposure to pH 2, and capable of inducing nitrite production by chicken macrophages. These properties clearly distinguish it from chicken and mammalian type I IFN. The ChIFN-gamma gene codes for a predicted mature protein of 145 amino acids with a molecular mass of 16.8 kD. There are two potential N-glycosylation sites located near the N terminus. ChIFN-gamma protein shares significant amino acid homology with mammalian IFN-gamma proteins; in particular it also contains the highly conserved motifs that are present in all mammalian IFN-gamma proteins. ChIFN-gamma is 35 and 32% identical to the equine and human counterparts, respectively, but shares only 15% homology with chicken type I IFN. These findings show that the emergence of the two principal types of IFN predates the divergence of avians and mammals that occurred some 350 million years ago.
我们从一个由产生高水平干扰素-γ(IFN-γ)活性的T细胞系(CC8.1h)构建的cDNA表达文库中克隆了鸡干扰素-γ(ChIFN-γ)基因。CC8.1h组成性地产生与哺乳动物IFN-γ具有相同理化性质的IFN活性。当由CC8.1h分泌或在转染的COS细胞中表达时,ChIFN-γ对热不稳定,在pH 2条件下失活,并且能够诱导鸡巨噬细胞产生亚硝酸盐。这些特性使其与鸡和哺乳动物的I型干扰素明显区分开来。ChIFN-γ基因编码一个预测的由145个氨基酸组成的成熟蛋白,分子量为16.8 kD。在N端附近有两个潜在的N-糖基化位点。ChIFN-γ蛋白与哺乳动物IFN-γ蛋白具有显著的氨基酸同源性;特别是它还包含所有哺乳动物IFN-γ蛋白中都存在的高度保守基序。ChIFN-γ分别与马和人的对应物有35%和32%的同一性,但与鸡I型干扰素只有15%的同源性。这些发现表明,两种主要类型的干扰素的出现早于大约3.5亿年前鸟类和哺乳动物的分化。