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对MBF占有率的染色质免疫沉淀-微阵列(ChIP-chip)分析进行去卷积,揭示了Rep2在MBF靶基因处的瞬时募集。

Deconvolution of chromatin immunoprecipitation-microarray (ChIP-chip) analysis of MBF occupancies reveals the temporal recruitment of Rep2 at the MBF target genes.

作者信息

Eshaghi Majid, Zhu Lei, Chu Zhaoqing, Li Juntao, Chan Chee Seng, Shahab Atif, Karuturi R Krishna M, Liu Jianhua

机构信息

Laboratory of Systems Biology, Genome Institute of Singapore, Singapore, Republic of Singapore.

出版信息

Eukaryot Cell. 2011 Jan;10(1):130-41. doi: 10.1128/EC.00218-10. Epub 2010 Nov 12.

Abstract

MBF (or DSC1) is known to regulate transcription of a set of G(1)/S-phase genes encoding proteins involved in regulation of DNA replication. Previous studies have shown that MBF binds not only the promoter of G(1)/S-phase genes, but also the constitutive genes; however, it was unclear if the MBF bindings at the G(1)/S-phase and constitutive genes were mechanistically distinguishable. Here, we report a chromatin immunoprecipitation-microarray (ChIP-chip) analysis of MBF binding in the Schizosaccharomyces pombe genome using high-resolution genome tiling microarrays. ChIP-chip analysis indicates that the majority of the MBF occupancies are located at the intragenic regions. Deconvolution analysis using Rpb1 ChIP-chip results distinguishes the Cdc10 bindings at the Rpb1-poor loci (promoters) from those at the Rpb1-rich loci (intragenic sequences). Importantly, Res1 binding at the Rpb1-poor loci, but not at the Rpb1-rich loci, is dependent on the Cdc10 function, suggesting a distinct binding mechanism. Most Cdc10 promoter bindings at the Rpb1-poor loci are associated with the G(1)/S-phase genes. While Res1 or Res2 is found at both the Cdc10 promoter and intragenic binding sites, Rep2 appears to be absent at the Cdc10 promoter binding sites but present at the intragenic sites. Time course ChIP-chip analysis demonstrates that Rep2 is temporally accumulated at the coding region of the MBF target genes, resembling the RNAP-II occupancies. Taken together, our results show that deconvolution analysis of Cdc10 occupancies refines the functional subset of genomic binding sites. We propose that the MBF activator Rep2 plays a role in mediating the cell cycle-specific transcription through the recruitment of RNAP-II to the MBF-bound G(1)/S-phase genes.

摘要

已知MBF(或DSC1)可调节一组参与DNA复制调控的G(1)/S期基因的转录。先前的研究表明,MBF不仅能结合G(1)/S期基因的启动子,还能结合组成型基因;然而,尚不清楚MBF在G(1)/S期基因和组成型基因上的结合在机制上是否存在差异。在此,我们报告了一项利用高分辨率基因组平铺微阵列对粟酒裂殖酵母基因组中MBF结合进行的染色质免疫沉淀-微阵列(ChIP-chip)分析。ChIP-chip分析表明,大多数MBF占据位点位于基因内区域。使用Rpb1 ChIP-chip结果进行的反卷积分析区分了Rpb1含量低的位点(启动子)和Rpb1含量高的位点(基因内序列)上的Cdc10结合。重要的是,Rpb1含量低的位点上的Res1结合依赖于Cdc10功能,而Rpb1含量高的位点上则不然,这表明存在不同的结合机制。Rpb1含量低的位点上大多数Cdc10启动子结合与G(1)/S期基因相关。虽然在Cdc10启动子和基因内结合位点都发现了Res1或Res2,但Rep2似乎在Cdc10启动子结合位点不存在,而在基因内位点存在。时间进程ChIP-chip分析表明,Rep2在MBF靶基因的编码区域随时间积累,类似于RNA聚合酶II的占据情况。综上所述,我们的结果表明,对Cdc10占据情况的反卷积分析细化了基因组结合位点的功能子集。我们提出,MBF激活因子Rep2通过将RNA聚合酶II招募到与MBF结合的G(1)/S期基因上,在介导细胞周期特异性转录中发挥作用。

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本文引用的文献

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