Usui T, Wakatsuki Y, Matsunaga Y, Kaneko S, Koseki H, Kita T
Department of Clinical Bio-regulatory Science, Graduate School of Medicine, Kyoto University, Japan.
J Immunol. 1997 Apr 1;158(7):3197-204.
The B cell-specific activator protein (BSAP) is a DNA-binding transcription factor expressed in pro-B, pre-B, and mature B cells but not in plasma cells. We explored the role of BSAP in B cell function by creating clones in a late B cell and a plasma cell line transfected with a BSAP expression plasmid. We found that the plasma cell line MPC11, which does not produce BSAP, is still permissive to BSAP production driven by heterologous promoter. Overexpression of BSAP in a late B cell line (CH12.LX.A2) and a plasma cell line augmented cell proliferation and led to greater suppression of Ig synthesis in a late B cell line than in the plasma cell line. The reduction was seen mostly in synthesis of a secretory form of Ig. Overexpression of BSAP reduced Blimp-1 expression in CH12.LX.A2 clones but not in MPC11 clones. In addition, overexpression of BSAP in CH12.LX.A2 cells suppressed spontaneous appearance of cells with high Syndecan-1 expression and high amounts of intracytosolic as well as secreted Ig synthesis. To corroborate the above findings, we cloned nontransfected CH12.LX.A2 cells and found reduced BSAP mRNA expression in the high Ig-secreting clones, which produced more Blimp-1 mRNA with greater Syndecan-1 expression than the low Ig-secreting clones. Taken together, these results indicate that BSAP expression is sufficient to reduce Ig production in late B cells; this effect is mediated in part by suppression of differentiation to cells of plasma-cell phenotype.
B细胞特异性激活蛋白(BSAP)是一种DNA结合转录因子,在pro-B细胞、前B细胞和成熟B细胞中表达,但在浆细胞中不表达。我们通过在转染了BSAP表达质粒的晚期B细胞系和浆细胞系中创建克隆,探索了BSAP在B细胞功能中的作用。我们发现,不产生BSAP的浆细胞系MPC11仍然允许由异源启动子驱动的BSAP产生。在晚期B细胞系(CH12.LX.A2)和浆细胞系中过表达BSAP可增强细胞增殖,并导致晚期B细胞系中Ig合成的抑制作用比浆细胞系中更大。这种减少主要见于分泌型Ig的合成。在CH12.LX.A2克隆中过表达BSAP可降低Blimp-1表达,但在MPC11克隆中则不然。此外,在CH12.LX.A2细胞中过表达BSAP可抑制具有高Syndecan-1表达以及大量胞内和分泌型Ig合成的细胞的自发出现。为了证实上述发现,我们克隆了未转染的CH12.LX.A2细胞,发现在高Ig分泌克隆中BSAP mRNA表达降低,与低Ig分泌克隆相比,这些克隆产生更多的Blimp-1 mRNA且具有更高的Syndecan-1表达。综上所述,这些结果表明,BSAP表达足以降低晚期B细胞中的Ig产生;这种作用部分是通过抑制向浆细胞表型细胞的分化来介导的。