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由小Maf和Bach1产生的多价DNA结合复合物作为β-珠蛋白基因座控制区复合物的一种可能的生化基础。

Multivalent DNA binding complex generated by small Maf and Bach1 as a possible biochemical basis for beta-globin locus control region complex.

作者信息

Igarashi K, Hoshino H, Muto A, Suwabe N, Nishikawa S, Nakauchi H, Yamamoto M

机构信息

Institute of Basic Medical Sciences and Center for Tsukuba Advanced Research Alliance, University of Tsukuba, Tenno-dai 1-1-1, Tsukuba 305, Japan.

出版信息

J Biol Chem. 1998 May 8;273(19):11783-90. doi: 10.1074/jbc.273.19.11783.

Abstract

The human beta-globin locus control region (LCR) is required to properly regulate chromatin domain opening, replication timing, and globin gene activation. The LCR contains multiple NF-E2 sites (Maf recognition elements, MAREs) that allow the binding of various basic leucine zipper (bZip) proteins like p45 NF-E2, Nrf1, Nrf2, Bach1, and Bach2, in some cases as obligate heterodimers with a small Maf protein. In addition to the bZip domain, the Bach proteins bear a BTB/POZ domain, which has been implicated in the regulation of chromatin structure. We show here that Bach1 is highly expressed in hematopoietic cells and constitutes one of the two MARE-binding activities in murine erythroleukemic (MEL) cells. We further demonstrate that Bach1/MafK heterodimers interact with each other through the BTB domain, generating a multimeric and multivalent DNA binding complex. These results strongly implicate Bach1/MafK heterodimer as an architectural transcription factor that mediates interactions among multiple MAREs. Such a factor could then provide a model for assembly of the theoretical beta-globin LCR "holocomplex. " Other BTB domain proteins have already been demonstrated to be involved in remodeling chromatin, and thus this class of proteins likely promote the formation of nucleoprotein complexes required to establish the architecture of regulatory domains.

摘要

人类β-珠蛋白基因座控制区(LCR)对于正确调节染色质结构域开放、复制时间以及珠蛋白基因激活是必需的。LCR包含多个NF-E2位点(Maf识别元件,MAREs),这些位点允许各种碱性亮氨酸拉链(bZip)蛋白如p45 NF-E2、Nrf1、Nrf2、Bach1和Bach2结合,在某些情况下,它们作为与小Maf蛋白形成的 obligate异二聚体结合。除了bZip结构域,Bach蛋白还带有一个BTB/POZ结构域,该结构域与染色质结构的调节有关。我们在此表明,Bach1在造血细胞中高度表达,并且是小鼠红白血病(MEL)细胞中两种MARE结合活性之一。我们进一步证明,Bach1/MafK异二聚体通过BTB结构域相互作用,形成多聚体和多价DNA结合复合物。这些结果强烈表明Bach1/MafK异二聚体是一种介导多个MARE之间相互作用的结构转录因子。这样的因子可以为理论上的β-珠蛋白LCR“全复合物”的组装提供一个模型。其他BTB结构域蛋白已被证明参与染色质重塑,因此这类蛋白可能促进形成建立调节结构域结构所需的核蛋白复合物。

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