Neurath M F, Strober W, Wakatsuki Y
Mucosal Immunity Section, National Institute of Allergy and Infectious Diseases, Bethesda, MD 20892.
J Immunol. 1994 Jul 15;153(2):730-42.
Using electrophoretic mobility shift assays (EMSAs) we have identified several target sites for nuclear proteins in the murine heavy chain Ig 3' alpha enhancer. Two of these sites, denoted oligo-H and oligo-K, were shown by several criteria, including cell distribution and stimulation experiments, EMSA cross-competition studies, and proteolytic clipping bandshift assays, to bind to the same protein identical to the transcription factor B cell lineage-specific activator protein (BSAP) (NF-HB, S alpha-BP). To assess the possible functional role of these BSAP binding sites in the 3' alpha enhancer, we transiently transfected a construct containing a 314-bp 3' alpha enhancer fragment upstream of a luciferase reporter gene in MOPC-315 cells, a plasmacytoma line lacking BSAP. In these cells, co-transfection with a vector expressing recombinant BSAP led to significant reduction in the activity of the 3' alpha enhancer fragment. Conversely, in the mature B lymphoma cell line CH12.LX, a cell line that expresses BSAP and has a less active 3' alpha enhancer, selective BSAP down-regulation by an antisense phosphorothioate oligonucleotide was sufficient to considerably up-regulate 3' alpha enhancer activity, as were mutations of both binding sites that prevented binding of BSAP to the 3' alpha enhancer. Our findings thus suggest that the natural loss of BSAP expression in terminally differentiated plasma cells contributes to the activation of the murine Ig 3' alpha enhancer.
通过电泳迁移率变动分析(EMSA),我们在小鼠重链Ig 3'α增强子中鉴定出了几个核蛋白的靶位点。其中两个位点,分别命名为寡核苷酸-H和寡核苷酸-K,通过多种标准表明它们结合的是同一种蛋白质,该蛋白质与转录因子B细胞谱系特异性激活蛋白(BSAP)(NF-HB,Sα-BP)相同,这些标准包括细胞分布和刺激实验、EMSA交叉竞争研究以及蛋白水解剪切带迁移分析。为了评估这些BSAP结合位点在3'α增强子中可能的功能作用,我们在缺乏BSAP的骨髓瘤细胞系MOPC-315中瞬时转染了一个构建体,该构建体在荧光素酶报告基因上游含有一个314 bp的3'α增强子片段。在这些细胞中,与表达重组BSAP的载体共转染导致3'α增强子片段的活性显著降低。相反,在表达BSAP且3'α增强子活性较低的成熟B淋巴瘤细胞系CH12.LX中,用反义硫代磷酸酯寡核苷酸选择性下调BSAP足以显著上调3'α增强子活性,与阻止BSAP与3'α增强子结合的两个结合位点的突变效果相同。因此,我们的研究结果表明,终末分化浆细胞中BSAP表达的自然缺失有助于小鼠Ig 3'α增强子的激活。