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A web-based comparative visualization system for human endogenous RetroVirus(HERV) on whole genomes

机译:全基因组织人内源性逆转录病毒(HERV)的基于网络的比较可视化系统

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Human Endogenous RetroViruses(HERVs) are suggested that they have a function of regulating the activity of human genes and could produce protein in some conditions. So it is crucial to examine the physical layout relationship between HERVs and genes in the whole genome scale. In this paper we present RetroScope, a new Web-based comparative visualization system for HERV over 4 whole primate genomes including Human, Chimpanzee, Orangutan and Rhesus monkey. So RetroScope enables us to find the retro element which is very close to a specified gene in the form of exonoverlapping or promotor, primer overlapping. Thus our system enables biologist to provide global understanding by comparing the linear configuration of several HERVs in the whole chromosome scales by using a fast HERV alignment algorithm. Also by alignment of HERVs, we can find the most similar pair of chromosomes with respect to the configuration of HERV elements, which would be another clues to construct phylogenetics based on HERV. RetroScope is available on http://neobio.cs.pusan.ac.kr/sretroscope/.
机译:提出人内源性逆转录病毒(肝脏),表明它们具有调节人类基因活性的功能,并且可以在某些条件下产生蛋白质。因此,在整个基因组规模中检查患有肝异常和基因之间的物理布局关系至关重要。在本文中,我们呈现了一个腰窥,用于腰腰面的新的基于Web的比较可视化系统,包括人,黑猩猩,猩猩和恒河猴。因此,探测器使我们能够找到以外切出或促进者的形式非常接近指定基因的复古元素,引物重叠。因此,我们的系统使生物学家能够通过使用快速钢腰部对准算法比较整个染色体尺度中的几个腰部的线性配置来提供全球理解。同样通过肝脏的对准,我们可以在肝脏元素的构型方面找到最相似的染色体,这将是构建基于腰部的系统源性的另一种线索。在http://neobio.cs.pusan.ac.kr/sretroscope/中提供了读数。

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