Magor B G, Ross D A, Middleton D L, Warr G W
Department of Biochemistry and Molecular Biology, Medical University of South Carolina, 171 Ashley Avenue, Charleston 29425-2211, USA.
Immunogenetics. 1997;46(3):192-8. doi: 10.1007/s002510050261.
The transcriptional enhancer (Emu3') within the Ig heavy chain (IgH) locus of the channel catfish differs from those found in mammalian IgH loci in both its location and structure. However, upon transfection into fish or mouse lymphocytes, it activates transcription to an extent equivalent to that of the mouse IgH intronic enhancer (Emu). Potential transcription factor binding motifs in Emu3' are more numerous than in mammalian IgH enhancers, and are dispersed over 1.6 kilobases. We transfected catfish and mouse lymphoid cells with reporters under the control of artificial promoters containing motifs from the catfish enhancer. We demonstrate that 9 of 11 octamer motifs identified in the catfish enhancer, representing five variations of the consensus octamer (ATGCAAAT), are functional in both a catfish B-cell line (1B10) and the mouse plasmacytoma J558L. Only those octamer variants in which one of the first four bases is altered are active. Clear species differences in the strengths of the variant octamer motifs were evident, and in catfish B cells the ATGtAAAT motif was over threefold more active than the consensus octamer. The one muA and two muB motifs in Emu3' do not contribute to transcriptional activation. These results suggest that the relative functional contributions of IgH enhancer motifs has changed significantly during vertebrate evolution.
斑点叉尾鮰免疫球蛋白重链(IgH)基因座内的转录增强子(Emu3'),其位置和结构与哺乳动物IgH基因座中的增强子不同。然而,转染到鱼类或小鼠淋巴细胞后,它激活转录的程度与小鼠IgH内含子增强子(Emu)相当。Emu3'中潜在的转录因子结合基序比哺乳动物IgH增强子中的更多,且分布在1.6千碱基上。我们用含有斑点叉尾鮰增强子基序的人工启动子控制下的报告基因转染斑点叉尾鮰和小鼠淋巴细胞。我们证明,在斑点叉尾鮰增强子中鉴定出的11个八聚体基序中的9个,代表共有八聚体(ATGCAAAT)的五种变体,在斑点叉尾鮰B细胞系(1B10)和小鼠浆细胞瘤J558L中均有功能。只有前四个碱基之一发生改变的八聚体变体才具有活性。变体八聚体基序的强度存在明显的物种差异,在斑点叉尾鮰B细胞中,ATGtAAAT基序的活性比共有八聚体高3倍以上。Emu3'中的一个μA和两个μB基序对转录激活没有贡献。这些结果表明,在脊椎动物进化过程中,IgH增强子基序的相对功能贡献发生了显著变化。