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Comparative analysis of osteoblast gene expression profiles and Runx2 genomic occupancy of mouse and human osteoblasts in vitro

机译:骨液细胞基因表达谱的比较分析和体外小鼠和人骨盆菌株的runx2基因组占用

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Fast progress of the next generation sequencing (NGS) technology has allowed global transcriptional profiling and genome-wide mapping of transcription factor binding sites in various cellular contexts. However, limited number of replicates and high amount of data processing may weaken the significance of the findings. Comparative analyses of independent data sets acquired in the different laboratories would greatly increase the validity of the data. Runx2 is the key transcription factor regulating osteoblast differentiation and bone formation. We performed a comparative analysis of three published Runx2 data sets of chromatin immunoprecipitation followed by deep sequencing (ChIP-seq) analysis in osteoblasts from mouse and human origin. Moreover, we assessed the similarity of the corresponding transcription data of these studies available online. The ChIP-seq data analysis confirmed general features of Runx2 binding, including location at genic vs intergenic regions and abundant Runx2 binding on promoters of the highly expressed genes. We also found high frequency of Runx2 DNA binding without a consensus Runx2 motif at the binding site. Importantly, mouse and human Runx2 showed moderately similar binding patterns in terms of peak-associated closest genes and their associated genomic ontology (GO) pathways. Accordingly, the gene expression profiles were highly similar and osteoblastic phenotype was prominent in the differentiated stage in both species. In conclusion, ChIP-seq method shows good reproducibility in the context of mature osteoblasts, and mouse and human osteoblast models resemble each other closely in Runx2 binding and in gene expression profiles, supporting the use of these models as adequate tools in studying osteoblast differentiation.
机译:下一代测序(NGS)技术的快速进展使得在各种细胞环境中允许全局转录因子结合位点的全局转录分析和基因组映射。但是,有限数量的复制和大量数据处理可能会削弱发现的重要性。在不同实验室中获得的独立数据集的比较分析将大大提高数据的有效性。 Runx2是调节成骨细胞分化和骨形成的关键转录因子。我们对三种公开的染色质免疫沉淀数据进行了比较分析,然后进行了小鼠和人来源的骨细胞中的深度测序(芯片-SEQ)分析。此外,我们评估了这些研究的相应转录数据的相似性在线提供。芯片-SEQ数据分析证实了Runx2结合的一般特征,包括基因族基因因子的位置和高表达基因的启动子的丰富Runx2结合。我们还发现高频率的Runx2 DNA结合,在结合位点处没有共有runx2基序。重要的是,小鼠和人runx2在峰相关最近基因和它们相关的基因组本体(GO)途径方面显示了适度相似的结合模式。因此,基因表达谱具有高度相似,并且骨细胞表型在两种物种中的分化阶段突出。总之,芯片-SEQ方法在成熟的成骨细胞的背景下显示出良好的再现性,小鼠和人骨盆模型在Runx2结合和基因表达谱中彼此紧密地相似,支持这些模型在研究成骨细胞分化中的适当工具。

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