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一种人类早期B细胞因子样蛋白参与人类CD19启动子的调控。

A human early B-cell factor-like protein participates in the regulation of the human CD19 promoter.

作者信息

Gisler R, Akerblad P, Sigvardsson M

机构信息

Immunology Group, CMB, Lund University, Lund, Sweden.

出版信息

Mol Immunol. 1999 Oct-Nov;36(15-16):1067-77. doi: 10.1016/s0161-5890(99)00092-9.

Abstract

CD19 is a functional component of the B-cell receptor complex where it acts as a modulator of the cellular response to surface immunoglobulin signaling. The gene is expressed from early B-cell developmental stages until the mature B-cell stage, but not in the plasma cell. The human CD19 promoter has been suggested to be regulated by the B-cell specific activator protein. BSAP, the Erg transcription factor and unidentified factors interacting with a GC rich binding site denoted PyG. In this report we present data suggesting that one of the PyG interacting factors is related to mouse early B-cell factor (EBF). Recombinant mouse EBF binds to the PyG site with an affinity about 3-fold lower than to the EBF binding site from the mouse mb-1 promoter in electrophoretic mobility shift assays. Furthermore, the PyG box binds to a factor in nuclear extracts from human B-cell lines that also interact with the mouse mb-1 promoter EBF binding site. Mutation of the PyG box impaired binding of the factor and the function of a minimal CD19 promoter in human cells of the B lineage, but not in Jurkat T or non-lymphoid HeLa cells. In addition to this, murine EBF was able to activate a wild type but not a PyG mutant human CD19 promoter 7-fold upon transient co-transfection in HeLa cells. Thus, we suggest that a human homologue of mouse EBF participate in transcriptional regulation of the human CD19 promoter.

摘要

CD19是B细胞受体复合物的一个功能成分,在其中它作为细胞对表面免疫球蛋白信号反应的调节剂。该基因从B细胞早期发育阶段到成熟B细胞阶段均有表达,但在浆细胞中不表达。有人提出人类CD19启动子受B细胞特异性激活蛋白(BSAP)、Erg转录因子以及与富含GC的结合位点PyG相互作用的未知因子调控。在本报告中,我们提供的数据表明,与PyG相互作用的因子之一与小鼠早期B细胞因子(EBF)相关。在电泳迁移率变动分析中,重组小鼠EBF与PyG位点结合的亲和力比与小鼠mb-1启动子的EBF结合位点的亲和力低约3倍。此外,PyG盒与人类B细胞系核提取物中的一种因子结合,该因子也与小鼠mb-1启动子EBF结合位点相互作用。PyG盒的突变损害了该因子的结合以及B系人类细胞中最小CD19启动子的功能,但在Jurkat T细胞或非淋巴细胞HeLa细胞中没有这种情况。除此之外,在HeLa细胞中瞬时共转染时,小鼠EBF能够激活野生型而非PyG突变型人类CD19启动子7倍。因此,我们认为小鼠EBF的人类同源物参与了人类CD19启动子的转录调控。

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