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GOPHER: Generator Of Probes for capture Hi-C Experiments at high Resolution

机译:Gopher:高分辨率捕获Hi-C实验的探头发电机

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Target enrichment combined with chromosome conformation capturing methodologies such as capture Hi-C (CHC) can be used to investigate spatial layouts of genomic regions with high resolution and at scalable costs. A common application of CHC is the investigation of regulatory elements that are in contact with promoters, but CHC can be used for a range of other applications. Therefore, probe design for CHC needs to be adapted to experimental needs, but no flexible tool is currently available for this purpose. We present a Java desktop application called GOPHER (Generator Of Probes for capture Hi-C Experiments at high Resolution) that implements three strategies for CHC probe design. GOPHER's simple approach is similar to the probe design of previous approaches that employ CHC to investigate all promoters, with one probe being placed at each margin of a single digest that overlaps the transcription start site (TSS) of each promoter. GOPHER's simple-patched approach extends this methodology with a heuristic that improves coverage of viewpoints in which the TSS is located near to one of the boundaries of the digest. GOPHER's extended approach is intended mainly for focused investigations of smaller gene sets. GOPHER can also be used to design probes for regions other than TSS such as GWAS hits or large blocks of genomic sequence. GOPHER additionally provides a number of features that allow users to visualize and edit viewpoints, and outputs a range of files useful for documentation, ordering probes, and downstream analysis. GOPHER is an easy-to-use and robust desktop application for CHC probe design. Source code and a precompiled executable can be downloaded from the GOPHER GitHub page at https://github.com/TheJacksonLaboratory/Gopher .
机译:靶富集与染色体构象相结合,捕获捕获HI-C(CHC)等方法可用于研究基因组区域的空间布局,高分辨率和可扩展成本。 CHC的常见应用是调查与启动子接触的调节元件,但CHC可用于各种其他应用。因此,CHC的探头设计需要适应实验需求,但目前没有柔性工具目前目前可用。我们介绍了一个名为Gopher的Java桌面应用程序(在高分辨率下捕获Hi-C实验的发电机),实现了CHC探头设计的三种策略。 Gopher的简单方法类似于使用CHC来研究所有启动子的先前方法的探针设计,其中一个探针放置在单个摘要的每个裕度下,其与每个启动子的转录开始部位(TS)重叠。 Gopher的简单修补方法将该方法与启发式扩展,提高了TSS位于摘要的界限附近的观点的覆盖范围。 Gopher的扩展方法主要用于较小基因套的重点调查。 Gopher还可用于设计除TS的区域的探针,例如GWAS命中或大块的基因组序列。 Gopher另外提供了许多功能,允许用户可视化和编辑视点,并输出一系列有用的文件,可用于文档,排序探测和下游分析。 Gopher是一种易于使用和强大的桌面应用,用于CHC探头设计。源代码和预编译的可执行文件可以从https://github.com/thejacksonlaboratory/gopher下载从Gopher Github页面下载。

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