Qiu G, Stavnezer J
Department of Molecular Genetics and Microbiology, University of Massachusetts Medical School, Worcester 01655-0122, USA.
J Immunol. 1998 Sep 15;161(6):2906-18.
B cell-specific activator protein (BSAP)/Pax-5 is a paired domain DNA-binding protein expressed in the developing nervous system, testis, and in all B lineage cells, except terminally differentiated plasma cells. BSAP regulates transcription of several genes expressed in B cells and also the activity of the 3' IgH enhancer. As it has binding sites within or 5' to the switch regions of nearly all Ig heavy chain C region genes and also is known to increase transcription of the germline epsilon RNA, BSAP has been hypothesized to be involved in regulation of Ab class switch recombination. To directly examine the effects of BSAP on isotype switching, we use a tetracycline-regulated expression system to overexpress BSAP in the surface IgM+ I.29 mu B cell line, a mouse cell line that can be induced to undergo class switch recombination. We find that overexpression of BSAP inhibits switching to IgA in I.29 mu cells stimulated with LPS + TGF-beta 1 + nicotinamide, but enhances switching to IgE in cells stimulated with LPS + IL-4 + nicotinamide. Parallel to its effects on switching, overexpression of BSAP inhibits germline alpha RNA expression and the transcriptional activity of the germline alpha promoter, while enhancing activity of the germline epsilon promoter. Proliferation of I.29 mu cells is not affected in this system. The possible mechanisms and significance of the effect of BSAP on isotype switching are discussed.
B细胞特异性激活蛋白(BSAP)/Pax-5是一种配对结构域DNA结合蛋白,在发育中的神经系统、睾丸以及除终末分化浆细胞外的所有B淋巴细胞系细胞中表达。BSAP调节B细胞中几个基因的转录以及3'Igh增强子的活性。由于它在几乎所有Ig重链C区基因的转换区内部或5'端具有结合位点,并且已知能增加种系εRNA的转录,因此推测BSAP参与抗体类别转换重组的调控。为了直接检测BSAP对同种型转换的影响,我们使用四环素调控表达系统在表面IgM+I.29μB细胞系中过表达BSAP,该小鼠细胞系可被诱导进行类别转换重组。我们发现,在LPS+TGF-β1+烟酰胺刺激的I.29μ细胞中,BSAP的过表达抑制向IgA的转换,但在LPS+IL-4+烟酰胺刺激的细胞中增强向IgE的转换。与其对转换的影响平行,BSAP的过表达抑制种系αRNA表达和种系α启动子的转录活性,同时增强种系ε启动子的活性。在该系统中,I.29μ细胞的增殖不受影响。本文讨论了BSAP对同种型转换影响的可能机制及意义。