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哺乳动物双性同源物 DMRT1 在幼年睪丸中对 DNA 结合和转录调控的全基因组分析。

Genome-wide analysis of DNA binding and transcriptional regulation by the mammalian Doublesex homolog DMRT1 in the juvenile testis.

机构信息

Developmental Biology Center, Department of Genetics, Cell Biology, and Development, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Jul 27;107(30):13360-5. doi: 10.1073/pnas.1006243107. Epub 2010 Jul 7.

Abstract

The DM domain proteins Doublesex- and MAB-3-related transcription factors (DMRTs) are widely conserved in metazoan sex determination and sexual differentiation. One of these proteins, DMRT1, plays diverse and essential roles in development of the vertebrate testis. In mammals DMRT1 is expressed and required in both germ cells and their supporting Sertoli cells. Despite its critical role in testicular development, little is known about how DMRT1 functions as a transcription factor or what genes it binds and regulates. We combined ChIP methods with conditional gene targeting and mRNA expression analysis and identified almost 1,400 promoter-proximal regions bound by DMRT1 in the juvenile mouse testis and determined how expression of the associated mRNAs is affected when Dmrt1 is selectively mutated in germ cells or Sertoli cells. These analyses revealed that DMRT1 is a bifunctional transcriptional regulator, activating some genes and repressing others. ChIP analysis using conditional mutant testes showed that DNA binding and transcriptional regulation of individual target genes can differ between germ cells and Sertoli cells. Genes bound by DMRT1 in vivo were enriched for a motif closely resembling the sequence DMRT1 prefers in vitro. Differential response of genes to loss of DMRT1 corresponded to differences in the enriched motif, suggesting that other transacting factors may modulate DMRT1 activity. DMRT1 bound its own promoter and those of six other Dmrt genes, indicating auto- and cross-regulation of these genes. Many of the DMRT1 target genes identified here are known to be important for a variety of functions in testicular development; the others are candidates for further investigation.

摘要

DM 结构域蛋白双性和 mab-3 相关转录因子 (DMRTs) 在动物性别决定和性分化中广泛保守。这些蛋白中的一种,DMRT1,在脊椎动物睾丸的发育中发挥多样化和必不可少的作用。在哺乳动物中,DMRT1 在生殖细胞及其支持的 Sertoli 细胞中均有表达和必需。尽管它在睾丸发育中起着关键作用,但对于 DMRT1 如何作为转录因子发挥作用,以及它结合和调节哪些基因,知之甚少。我们将 ChIP 方法与条件性基因靶向和 mRNA 表达分析相结合,鉴定了在幼年小鼠睾丸中由 DMRT1 结合的近 1400 个启动子近端区域,并确定了当 Dmrt1 在生殖细胞或 Sertoli 细胞中选择性突变时,相关 mRNA 的表达如何受到影响。这些分析表明,DMRT1 是一种双功能转录调节剂,既能激活一些基因,又能抑制其他基因。使用条件性突变睾丸的 ChIP 分析表明,单个靶基因的 DNA 结合和转录调控在生殖细胞和 Sertoli 细胞之间可能不同。DMRT1 在体内结合的基因富含与体外 DMRT1 偏好的序列非常相似的基序。对 DMRT1 缺失的基因的不同反应对应于富集基序的差异,表明其他反式作用因子可能调节 DMRT1 的活性。DMRT1 结合自身启动子和其他六个 Dmrt 基因的启动子,表明这些基因的自动和交叉调节。这里鉴定的许多 DMRT1 靶基因已知对睾丸发育的各种功能很重要;其他的是进一步研究的候选者。

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