Department of Computing, Goldsmiths, University of London, London, UK.
London Geometry, Ltd., London, UK.
Bioinformatics. 2021 May 17;37(7):951-955. doi: 10.1093/bioinformatics/btaa757.
The 3D structure of chromatin in the nucleus is important for gene expression and regulation. Chromosome conformation capture techniques, such as Hi-C, generate large amounts of data showing interaction points on the genome but these are hard to interpret using standard tools.
We have developed CSynth, an interactive 3D genome browser and real-time chromatin restraint-based modeller to visualize models of any chromosome conformation capture (3C) data. Unlike other modelling systems, CSynth allows dynamic interaction with the modelling parameters to allow experimentation and effects on the model. It also allows comparison of models generated from data in different tissues/cell states and the results of third-party 3D modelling outputs. In addition, we include an option to view and manipulate these complicated structures using Virtual Reality (VR) so scientists can immerse themselves in the models for further understanding. This VR component has also proven to be a valuable teaching and a public engagement tool.
CSynth is web based and available to use at csynth.org.
Supplementary data are available at Bioinformatics online.
核内染色质的 3D 结构对于基因表达和调控很重要。染色体构象捕获技术(如 Hi-C)会产生大量显示基因组上相互作用点的数据,但这些数据很难用标准工具进行解释。
我们开发了 CSynth,这是一个交互式的 3D 基因组浏览器和实时基于染色质约束的建模器,用于可视化任何染色体构象捕获(3C)数据的模型。与其他建模系统不同,CSynth 允许与建模参数进行动态交互,从而可以进行实验并对模型产生影响。它还允许比较来自不同组织/细胞状态的数据生成的模型和第三方 3D 建模输出的结果。此外,我们还包括使用虚拟现实(VR)查看和操作这些复杂结构的选项,以便科学家可以沉浸在模型中以进行进一步的理解。该 VR 组件也已被证明是一种有价值的教学和公众参与工具。
CSynth 是基于网络的,可在 csynth.org 使用。
补充数据可在“Bioinformatics”在线获得。