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马夫眼中的世界。

The world according to Maf.

作者信息

Motohashi H, Shavit J A, Igarashi K, Yamamoto M, Engel J D

机构信息

Institute of Basic Medical Sciences and Center for TARA, University of Tsukuba, Tsukuba 305, Japan.

出版信息

Nucleic Acids Res. 1997 Aug 1;25(15):2953-59. doi: 10.1093/nar/25.15.2953.

Abstract

Maf family proteins are so named because of their structural similarity to the founding member, the oncoprotein v-Maf. The small Maf proteins (MafF, MafG and MafK), as do all family members, include a characteristic basic region linked to a leucine zipper (b-Zip) domain which mediate DNA binding and subunit dimerization respectively. The small Maf proteins form homodimers or heterodimers with other b-Zip proteins present in the cell and bind to Maf recognition elements (MARE) in DNA. Since they lack known transcriptional activation domains, the small Maf proteins function either as obligatory heterodimeric partner molecules with numerous large subunits, discussed below, or alternatively as homo- or heterodimeric transcriptional repressors. The three small Maf proteins are expressed in a number of overlapping tissues, but their expression profiles nonetheless appear to be under meticulous tissue- and developmental stage-specific control. The MARE bears a striking resemblance to the NF-E2 binding sequence. NF-E2 binding sites in the human beta-globin locus control region have been directly implicated as integral components in the circuitry required for eliciting changes in chromatin structure that precede globin gene activation. While the NF-E2 DNA sequence has been shown to be important for erythroid-specific gene regulation, a growing list of other genes may also be regulated through the same, or very similar, cis elements in non-erythroid cells. Taken together, these observations argue that comprehensive analysis of the activities of the small Maf proteins may provide a unique perspective for expanding our understanding of transcriptional regulation that can be elicited through interacting transcription factor networks.

摘要

Maf家族蛋白因其与家族创始成员癌蛋白v-Maf在结构上相似而得名。小Maf蛋白(MafF、MafG和MafK)与所有家族成员一样,都包含一个与亮氨酸拉链(b-Zip)结构域相连的特征性碱性区域,该区域分别介导DNA结合和亚基二聚化。小Maf蛋白与细胞中存在的其他b-Zip蛋白形成同二聚体或异二聚体,并与DNA中的Maf识别元件(MARE)结合。由于它们缺乏已知的转录激活结构域,小Maf蛋白要么作为与许多大亚基(如下所述)形成 obligatory 异二聚体伙伴分子发挥作用,要么作为同二聚体或异二聚体转录抑制因子发挥作用。这三种小Maf蛋白在许多重叠组织中表达,但它们的表达谱似乎仍受到细致的组织和发育阶段特异性控制。MARE与NF-E2结合序列惊人地相似。人类β-珠蛋白基因座控制区域中的NF-E2结合位点已被直接证明是引发珠蛋白基因激活之前染色质结构变化所需电路中的重要组成部分。虽然NF-E2 DNA序列已被证明对红系特异性基因调控很重要,但越来越多的其他基因也可能通过非红系细胞中相同或非常相似的顺式元件进行调控。综上所述,这些观察结果表明,对小Maf蛋白活性的全面分析可能为扩展我们对通过相互作用转录因子网络引发的转录调控的理解提供独特视角。

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