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发育过程中Pax7靶基因的全基因组发现。

Genome-wide discovery of Pax7 target genes during development.

作者信息

White Robert B, Ziman Melanie R

机构信息

School of Exercise Biomedical and Health Science, Edith Cowan University, Joondalup, Western Australia, Australia.

出版信息

Physiol Genomics. 2008 Mar 14;33(1):41-9. doi: 10.1152/physiolgenomics.00256.2007. Epub 2008 Jan 15.

Abstract

Pax7 plays critical roles in development of brain, spinal cord, neural crest, and skeletal muscle. As a sequence-specific DNA-binding transcription factor, any direct functional role played by Pax7 during development is mediated through target gene selection. Thus, we have sought to identify genes targeted by Pax7 during embryonic development using an unbiased chromatin immunoprecipitation (ChIP) cloning assay to isolate cis-regulatory regions bound by Pax7 in vivo. Sequencing and genomic localization of a library of chromatin-DNA fragments bound by Pax7 has identified 34 candidate Pax7 target genes, with occupancy of a selection confirmed with independent chromatin enrichment tests (ChIP-PCR). To assess the capacity of Pax7 to regulate transcription from these loci, we have cloned alternate transcripts of Pax7 (differing significantly in their DNA binding domain) into expression vectors and transfected cultured cells with these constructs, then analyzed target gene expression levels using RT-PCR. We show that Pax7 directly occupies sites within genes encoding transcription factors Gbx1 and Eya4, the neurogenic cytokine receptor ciliary neurotrophic factor receptor, the neuronal potassium channel Kcnk2, and the signal transduction kinase Camk1d in vivo and regulates the transcriptional state of these genes in cultured cells. This analysis gives us greater insight into the direct functional role played by Pax7 during embryonic development.

摘要

PAX7在脑、脊髓、神经嵴和骨骼肌的发育中发挥着关键作用。作为一种序列特异性DNA结合转录因子,PAX7在发育过程中所起的任何直接功能作用都是通过靶基因选择来介导的。因此,我们试图利用一种无偏差的染色质免疫沉淀(ChIP)克隆分析方法来鉴定PAX7在胚胎发育过程中的靶基因,以分离体内与PAX7结合的顺式调控区域。对与PAX7结合的染色质-DNA片段文库进行测序和基因组定位,已鉴定出34个候选PAX7靶基因,并通过独立的染色质富集试验(ChIP-PCR)证实了其中一部分的占有率。为了评估PAX7调控这些基因座转录的能力,我们已将PAX7的交替转录本(其DNA结合结构域有显著差异)克隆到表达载体中,并用这些构建体转染培养细胞,然后使用RT-PCR分析靶基因表达水平。我们发现,PAX7在体内直接占据编码转录因子Gbx1和Eya4、神经源性细胞因子受体睫状神经营养因子受体、神经元钾通道Kcnk2以及信号转导激酶Camk1d的基因内的位点,并在培养细胞中调控这些基因的转录状态。这一分析让我们对PAX7在胚胎发育过程中所起的直接功能作用有了更深入的了解。

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