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Long-Range Comparison of Human and Mouse SCL Loci: Localized Regions of Sensitivity to Restriction Endonucleases Correspond Precisely with Peaks of Conserved Noncoding Sequences

机译:人类和小鼠SCL基因座的远程比较:限制性内切核酸敏感性的本地化区域准确地与保守的非编码序列的峰对应

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摘要

Long-range comparative sequence analysis provides a powerful strategy for identifying conserved regulatory elements. The stem cell leukemia (SCL) gene encodes a bHLH transcription factor with a pivotal role in hemopoiesis and vasculogenesis, and it displays a highly conserved expression pattern. We present here a detailed sequence comparison of 193 kb of the human SCL locus to 234 kb of the mouse SCL locus. Four new genes have been identified together with an ancient mitochondrial insertion in the human locus. The SCL gene is flanked upstream by the SIL gene and downstream by the MAP17 gene in both species, but the gene order is not collinear downstream from MAP17. To facilitate rapid identification of candidate regulatory elements, we have developed a new sequence analysis tool (SynPlot) that automates the graphical display of large-scale sequence alignments. Unlike existing programs, SynPlot can display the locus features of more than one sequence, thereby indicating the position of homology peaks relative to the structure of all sequences in the alignment. In addition, high-resolution analysis of the chromatin structure of the mouse SCL gene permitted the accurate positioning of localized zones accessible to restriction endonucleases. Zones known to be associated with functional regulatory regions were found to correspond precisely with peaks of human/mouse homology, thus demonstrating that long-range human/mouse sequence comparisons allow accurate prediction of the extent of accessible DNA associated with active regulatory regions.
机译:远程比较序列分析为鉴定保守的调控元件提供了强有力的策略。干细胞白血病(SCL)基因编码在造血和血管生成中起关键作用的bHLH转录因子,并显示高度保守的表达模式。我们在这里提出了193 kb的人SCL基因座与234 kb的小鼠SCL基因座的详细序列比较。已经鉴定出四个新基因以及人类基因座中的古代线粒体插入。在这两个物种中,SCL基因的侧翼是SIL基因的上游,而下游是MAP17基因,但是在MAP17的下游,基因顺序不是共线的。为方便快速识别候选调控元件,我们开发了一种新的序列分析工具(SynPlot),可自动进行大规模序列比对的图形显示。与现有程序不同,SynPlot可以显示一个以上序列的基因座特征,从而指示相对于所有比对序列中结构的同源性峰的位置。此外,对小鼠SCL基因染色质结构的高分辨率分析允许精确定位限制性内切核酸酶可及的局部区域。发现已知与功能调节区相关的区域与人/小鼠同源性的峰精确对应,因此证明了远距离的人/小鼠序列比较可以准确预测与活性调节区相关的可及DNA的程度。

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