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通过HS2的NFE2串联重复序列识别位点筛选克隆MafF:分析其在珠蛋白和GCS1基因调控中的作用。

Cloning MafF by recognition site screening with the NFE2 tandem repeat of HS2: analysis of its role in globin and GCSl genes regulation.

作者信息

Marini M Giuseppina, Asunis Isadora, Chan Kaimin, Chan Jefferson Y, Kan Yuet W, Porcu Loredana, Cao Antonio, Moi Paolo

机构信息

Istituto di Neurogenetica e Neurofarmacologia, CNR, Cagliari 09121, Italy.

出版信息

Blood Cells Mol Dis. 2002 Sep-Oct;29(2):145-58. doi: 10.1006/bcmd.2002.0550.

Abstract

The erythroid-specific enhancer within hypersensitivity site 2 (HS2) of the human beta-globin locus control region is required for high level globin gene expression. We used an oligonucleotide of the NF-E2 tandem repeat, within HS2, as recognition site probe to screen a K562 cDNA library for interacting transcription factors. A 2.3 kb full length cDNA encoding the b-zip transcription factor MafF was isolated. MafF can form both homodimers and high affinity heterodimers with Nrf1, Nrf2 and Nf-E2, three members of the CNC-bZip family. Despite obvious structural similarities with the other small Maf proteins, MafF differs in its tissue distribution and its inability to repress transcription when overexpressed as homodimer. In fact, in different cell lines and on different promoters (gamma-globin, beta-globin and glutamylcysteine synthetase genes) the MafF homodimers do not appreciably affect transcription of target promoters, whereas MafF/CNC member heterodimers act as weak transcriptional activators. Even though MafF was cloned using probes derived from the globin LCR, it is in the context of the GCSl promoter and in combination with Jun that MafF shows a rather distinct and specific regulatory role. These observations suggest that a complex network of small Maf and CNC-AP1 protein interactions might be involved in regulating transcription in diverse tissues or developmental stages.

摘要

人β-珠蛋白基因座控制区超敏位点2(HS2)内的红系特异性增强子是高水平珠蛋白基因表达所必需的。我们使用HS2内NF-E2串联重复序列的寡核苷酸作为识别位点探针,筛选K562 cDNA文库以寻找相互作用的转录因子。分离出了一个编码b-zip转录因子MafF的2.3 kb全长cDNA。MafF可以与CNC-bZip家族的三个成员Nrf1、Nrf2和Nf-E2形成同二聚体和高亲和力异二聚体。尽管与其他小Maf蛋白在结构上有明显相似性,但MafF在组织分布上有所不同,并且当以同二聚体形式过表达时不能抑制转录。事实上,在不同细胞系和不同启动子(γ-珠蛋白、β-珠蛋白和谷氨酰半胱氨酸合成酶基因)上,MafF同二聚体对靶启动子的转录没有明显影响,而MafF/CNC成员异二聚体作为弱转录激活剂起作用。尽管MafF是使用来自珠蛋白LCR的探针克隆的,但在GCS1启动子的背景下并与Jun结合时,MafF显示出相当独特和特定的调节作用。这些观察结果表明,小Maf和CNC-AP1蛋白相互作用的复杂网络可能参与了不同组织或发育阶段的转录调控。

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