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早期B细胞因子是早期B细胞发育过程中B淋巴样激酶启动子的激活剂。

Early B cell factor is an activator of the B lymphoid kinase promoter in early B cell development.

作者信息

Akerblad P, Sigvardsson M

机构信息

Immunology Group, Cell and Molecular Biology, Lund University, Sweden.

出版信息

J Immunol. 1999 Nov 15;163(10):5453-61.

Abstract

Early B cell factor (EBF) is a transcription factor suggested to be involved in the transcriptional control of several B cell restricted genes. EBF is also essential for B lymphocyte development because mice carrying a homologous disruption of the EBF gene lack mature B lymphocytes. This makes the identification of genetic targets for EBF important for the understanding of early B cell development. Examination of the nucleotide sequence of the B lymphoid kinase (Blk) promoter suggested the presence of an EBF binding site, and in vivo footprinting analysis showed that the site was protected from methylation in a pre-B cell line. EMSA indicated that recombinant and cellular EBF interact physically with this site; furthermore, transient transfections indicated that ectopic expression of EBF in nonlymphoid HeLa cells activate a Blk promoter-controlled reporter construct 9-fold. The defined EBF binding site was also important for the function of the Blk promoter in pre-B cells, because transient transfections of a reporter construct under the control of an EBF site-mutated Blk promoter displayed only 20-30% of the activity of the wild-type promoter. Furthermore, transient transfections in HeLa cells proposed that EBF and B cell-specific activator protein were able to cooperate in the activation of a Blk promoter-controlled reporter construct. These data indicate that EBF plays an important role in the regulation of the Blk promoter in early B cell development and that EBF and BSAP are capable to act in cooperation to induce a target gene.

摘要

早期B细胞因子(EBF)是一种转录因子,被认为参与多种B细胞限制性基因的转录调控。EBF对B淋巴细胞发育也至关重要,因为携带EBF基因同源性破坏的小鼠缺乏成熟B淋巴细胞。这使得鉴定EBF的基因靶点对于理解早期B细胞发育很重要。对B淋巴样激酶(Blk)启动子核苷酸序列的检查表明存在一个EBF结合位点,体内足迹分析显示该位点在一个前B细胞系中免受甲基化作用。电泳迁移率变动分析表明重组EBF和细胞内EBF与该位点发生物理相互作用;此外,瞬时转染表明在非淋巴细胞的HeLa细胞中异位表达EBF可使受Blk启动子控制的报告基因构建体激活9倍。确定的EBF结合位点对前B细胞中Blk启动子的功能也很重要,因为受EBF位点突变的Blk启动子控制的报告基因构建体的瞬时转染仅显示出野生型启动子活性的20%-30%。此外,在HeLa细胞中的瞬时转染表明EBF和B细胞特异性激活蛋白能够协同激活受Blk启动子控制的报告基因构建体。这些数据表明EBF在早期B细胞发育中对Blk启动子的调控起重要作用,并且EBF和BSAP能够协同作用以诱导一个靶基因。

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