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c-Jun 结合位点在 K562 细胞中的鉴定。

c-Jun binding site identification in K562 cells.

机构信息

State Key Laboratory of Bioelectronics, Southeast University, Nanjing 210096, China.

出版信息

J Genet Genomics. 2011 Jun 20;38(6):235-42. doi: 10.1016/j.jgg.2011.05.004. Epub 2011 May 17.

Abstract

Determining the binding sites of the transcription factor is important for understanding of transcriptional regulation. Transcription factor c-Jun plays an important role in cell growth, differentiation and development, but the binding sites and the target genes are not clearly defined in the whole human genome. In this study, we performed a ChIP-Seq experiment to identify c-Jun binding site in the human genome. Forty-eight binding sites were selected to process further evaluation by dsDNA microarray assay. We identified 283 c-Jun binding sites in K562 cells. Data analysis showed that 48.8% binding sites located within 100 kb of the upstream of the annotated genes, 28.6% binding sites comprised consensus TRE/CRE motif (5'-TGAC/GTCA-3', 5'-TGACGTCA-3') and variant sequences. Forty-two out of the selected 48 binding sites were found to bind the c-Jun homodimer in dsDNA microarray analysis. Data analysis also showed that 1569 genes are located in the neighborhood of the 283 binding sites and 191 genes in the neighborhood of the 42 binding sites validated by dsDNA microarray. We consulted 38 c-Jun target genes in previous studies and 16 among these 38 genes were also detected in this study. The identification of c-Jun binding sites and potential target genes in the genome scale may improve our fundamental understanding in the molecular mechanisms underlying the transcription regulation related to c-Jun.

摘要

确定转录因子的结合位点对于理解转录调控至关重要。转录因子 c-Jun 在细胞生长、分化和发育中起着重要作用,但在整个人类基因组中,其结合位点和靶基因尚未明确界定。在本研究中,我们进行了 ChIP-Seq 实验,以鉴定人类基因组中 c-Jun 的结合位点。选择了 48 个结合位点,通过 dsDNA 微阵列检测进行进一步评估。我们在 K562 细胞中鉴定了 283 个 c-Jun 结合位点。数据分析表明,48.8%的结合位点位于注释基因上游 100kb 范围内,28.6%的结合位点包含共识 TRE/CRE 基序(5'-TGAC/GTCA-3',5'-TGACGTCA-3')和变体序列。在 dsDNA 微阵列分析中,从 48 个选定的结合位点中发现 42 个能够结合 c-Jun 同源二聚体。数据分析还表明,在 283 个结合位点的邻近区域有 1569 个基因,在 42 个经 dsDNA 微阵列验证的结合位点的邻近区域有 191 个基因。我们查阅了之前研究中的 38 个 c-Jun 靶基因,其中 16 个也在本研究中被检测到。在基因组范围内鉴定 c-Jun 结合位点和潜在靶基因,可能会增进我们对与 c-Jun 相关的转录调控分子机制的基本理解。

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