Johnson R J, Stack M, Hazlewood S A, Jones M, Blackmore C G, Hu L F, Rowe M
Department of Medicine, University of Wales College of Medicine, Cardiff, United Kingdom.
J Virol. 1998 May;72(5):4038-48. doi: 10.1128/JVI.72.5.4038-4048.1998.
One group of sequence variants of Epstein-Barr virus is characterized by a 10-amino-acid deletion within the CTAR-2 functional domain of the latent membrane protein, LMP1. A role for this deletion in enhancing the tumorigenicity of the viral oncogene in rodent fibroblasts was recently demonstrated. We examined the effect of this deletion upon LMP1 function in four human lymphoid cell lines by using three natural variants of LMP1: the prototype B95.8 gene and the CAO and AG876 genes, both of which have codons 343 to 352 of the B95.8-LMP1 deleted. These experiments revealed that LMP1-mediated upregulation of CD40 and CD54 was markedly impaired (by 60 to 90%) with CAO-LMP1 compared with B95.8-LMP1. In contrast, the function of AG876-LMP1 was indistinguishable from that of B95.8-LMP1 in two lines and was only slightly impaired in the other two lines. Activation of NF-kappaB by CAO-LMP1 was not impaired in any of the lines; rather, activation of an NF-kappaB reporter by CAO-LMP1 was consistently about twofold greater than the activation with B95.8- or AG876-LMP1. Therefore, while the CAO-LMP1 is functionally distinct from the prototype B95.8-LMP1 in human lymphocytes, the 10-amino-acid deletion appears not to be directly responsible. This conclusion was confirmed by using a B95.8-LMP1 mutant with codons 343 to 352 deleted and chimerae of CAO- and B95.8-LMP1 in which the CTAR-2 domains of these genes were exchanged. Sequences outside the CTAR-2 domain were implicated in the distinct functional characteristics of CAO-LMP1 in human lymphoid cells.
爱泼斯坦-巴尔病毒的一组序列变体的特征是,潜伏膜蛋白LMP1的CTAR-2功能域内有一个10个氨基酸的缺失。最近证实了这种缺失在增强病毒癌基因在啮齿动物成纤维细胞中的致瘤性方面所起的作用。我们通过使用LMP1的三种天然变体,研究了这种缺失对四种人类淋巴细胞系中LMP1功能的影响:原型B95.8基因以及CAO和AG876基因,后两者的B95.8-LMP1的343至352密码子均缺失。这些实验表明,与B95.8-LMP1相比,CAO-LMP1介导的CD40和CD54上调明显受损(降低60%至90%)。相比之下,AG876-LMP1在两个细胞系中的功能与B95.8-LMP1无异,在另外两个细胞系中仅略有受损。CAO-LMP1对NF-κB的激活在任何细胞系中均未受损;相反,CAO-LMP1对NF-κB报告基因的激活始终比B95.8-或AG876-LMP1的激活高约两倍。因此,虽然CAO-LMP1在人类淋巴细胞中的功能与原型B95.8-LMP1不同,但10个氨基酸的缺失似乎并非直接原因。通过使用缺失343至352密码子的B95.8-LMP1突变体以及CAO-和B95.8-LMP1的嵌合体(其中这些基因的CTAR-2结构域进行了交换),证实了这一结论。CTAR-2结构域之外的序列与CAO-LMP1在人类淋巴细胞中的独特功能特性有关。