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转录因子BSAP(NF-κB)对于免疫球蛋白种系ε转录至关重要。

The transcription factor BSAP (NF-HB) is essential for immunoglobulin germ-line epsilon transcription.

作者信息

Liao F, Birshtein B K, Busslinger M, Rothman P

机构信息

Department of Cell Biology, Albert Einstein College of Medicine, Bronx, NY 10461.

出版信息

J Immunol. 1994 Mar 15;152(6):2904-11.

PMID:8144891
Abstract

Treatment of murine splenic B lymphocytes and certain B-lineage cell lines with mitogen (LPS) and the lymphokine IL-4 has been shown to induce expression of germ-line epsilon transcripts (l epsilon transcripts) and class switching to the C epsilon gene. Three protein complexes, one of which (complex 3) is constitutively expressed, have been shown to bind to a 179-base pair LPS/IL-4-responsive l epsilon promoter (Rothman, P., S. C. Li, B. Gorham, L. Glimcher, F. W. Alt, and M. Boothby. 1991. Mol. Cell. Biol. 11:5551). Complex 3 is indispensable for this inducible promoter activity. In this report, we have used electrophoretic mobility shift assays (EMSA) to demonstrate that the early B cell-specific transcription factor (BSAP) is involved in the formation of complex 3. In addition, BSAP is implicated functionally in l epsilon transcription because a BSAP binding site either from a sea urchin histone promoter (H2A-2.2) or from 5' of murine immunoglobulin S gamma 2a can substitute for the epsilon-associated site (epsilon(foot), as assayed by transient transfection assays of the l epsilon:CAT reporter constructs into the M12.4.1 B cell line. Like the sea urchin histone BSAP site, the complex 3 binding site (epsilon(foot)) functions as an upstream promoter element when assayed in the OVEC vector. These results indicate that BSAP is an essential protein required for LPS/IL-4 induction of the l epsilon promoter. In addition, experiments showing that a BSAP binding site from 5' of S gamma 2a also functions as an upstream promoter element in OVEC suggest a potential role for BSAP in regulation of the IgG2a isotype.

摘要

用丝裂原(LPS)和淋巴因子IL-4处理小鼠脾脏B淋巴细胞和某些B系细胞系,已显示可诱导种系ε转录本(lε转录本)的表达以及向Cε基因的类别转换。已显示三种蛋白质复合物,其中一种(复合物3)组成性表达,可与一个179碱基对的LPS/IL-4反应性lε启动子结合(罗斯曼,P.,S.C.李,B.戈尔曼,L.格林彻,F.W.阿尔特,和M.布斯比。1991.分子细胞生物学。11:5551)。复合物3对于这种诱导型启动子活性是必不可少的。在本报告中,我们使用电泳迁移率变动分析(EMSA)来证明早期B细胞特异性转录因子(BSAP)参与复合物3的形成。此外,BSAP在功能上与lε转录有关,因为来自海胆组蛋白启动子(H2A-2.2)或小鼠免疫球蛋白Sγ2a 5'端的BSAP结合位点可以替代ε相关位点(ε(足迹)),这是通过将lε:CAT报告构建体瞬时转染到M12.4.1 B细胞系中进行测定的。与海胆组蛋白BSAP位点一样,复合物3结合位点(ε(足迹))在OVEC载体中测定时作为上游启动子元件起作用。这些结果表明,BSAP是LPS/IL-4诱导lε启动子所必需的蛋白质。此外,实验表明,来自Sγ2a 5'端的BSAP结合位点在OVEC中也作为上游启动子元件起作用,这表明BSAP在IgG2a同种型调节中具有潜在作用。

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