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首页> 外文期刊>Nucleic Acids Research >Differentiation of core promoter architecture between plants and mammals revealed by LDSS analysis
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Differentiation of core promoter architecture between plants and mammals revealed by LDSS analysis

机译:LDSS分析揭示了植物和哺乳动物之间核心启动子结构的差异

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Mammalian promoters are categorized into TATA and CpG-related groups, and they have complementary roles associated with differentiated transcriptional characteristics. While the TATA box is also found in plant promoters, it is not known if CpG-type promoters exist in plants. Plant promoters contain Y Patches (pyrimidine patches) in the core promoter region, and the ubiquity of these beyond higher plants is not understood as well. Sets of promoter sequences were utilized for the analysis of local distribution of short sequences (LDSS), and approximately one thousand octamer sequences have been identified as promoter constituents from Arabidopsis, rice, human and mouse, respectively. Based on their localization profiles, the identified octamer sequences were classified into several major groups, REG (Regulatory Element Group), TATA box, Inr (Initiator), Kozak, CpG and Y Patch. Comparison of the four species has revealed three categories: (i) shared groups found in both plants and mammals (TATA box), (ii) common groups found in both kingdoms but the utilized sequence is differentiated (REG, Inr and Kozak) and (iii) specific groups found in either plants or mammals (CpG and Y Patch). Our comparative LDSS analysis has identified conservation and differentiation of promoter architectures between higher plants and mammals.
机译:哺乳动物启动子分为TATA和CpG相关组,它们具有与分化的转录特征相关的互补作用。尽管在植物启动子中也发现了TATA框,但尚不清楚植物中是否存在CpG型启动子。植物启动子在核心启动子区域中包含Y斑块(嘧啶斑块),而且这些植物在高等植物中的普遍性也未被理解。利用启动子序列集来分析短序列(LDSS)的局部分布,并且已经鉴定出大约一千个八聚体序列作为分别来自拟南芥,水稻,人和小鼠的启动子成分。根据它们的定位图,将鉴定出的八聚体序列分为几个主要组,即REG(调节元素组),TATA盒,Inr(引发剂),Kozak,CpG和Y补丁。对这四个物种的比较揭示了三类:(i)在植物和哺乳动物中都发现的共有基团(TATA盒),(ii)在两个王国中都发现了共有基团,但利用的序列有所区别(REG,Inr和Kozak)和( iii)在植物或哺乳动物中发现的特定基团(CpG和Y斑块)。我们的比较LDSS分析已经确定了高等植物和哺乳动物之间启动子结构的保守性和差异性。

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