bioRxiv · 10.1101/2020.06.16.151555
Decoding of persistent multiscale structures in complex biological networks
Abstract
In any omics study, the scale of analysis can dramatically affect the outcome. For instance, when clustering single-cell transcriptomes, is the analysis tuned to discover broad or specific cell types? Likewise, protein communities revealed from protein networks can vary widely in sizes depending on the method. Here we use the concept of "persistent homology", drawn from mathematical topology, to identify robust structures in data at all scales simultaneously. Application to mouse single-cell transcriptomes significantly expands the catalog of identified cell types, while analysis of SARS-COV-2 protein interactions suggests hijacking of WNT. The method, HiDeF, is available via Python and Cytoscape.
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Zheng, F., Zhang, S., Churas, C., Pratt, D., Bahar, I., Ideker, T.. 2020-06-17. Decoding of persistent multiscale structures in complex biological networks. https://doi.org/10.1101/2020.06.16.151555
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