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Updated: Oct 10, 2025

Author Spotlight: A Streamlined Approach to Studying Cell Death Initiation in Hypersensitive Response
Published on: November 10, 2023
XDeathDB: a visualization platform for cell death molecular interactions
Venkat Sundar Gadepalli1, Hangil Kim2, Yueze Liu3
1Research Information Technology, College of Medicine, Ohio State University, 1585 Neil Ave, Columbus, OH, 43210, USA.
Abstract:
Lots of cell death initiator and effector molecules, signalling pathways and subcellular sites have been identified as key mediators in both cell death processes in cancer. The XDeathDB visualization platform provides a comprehensive cell death and their crosstalk resource for deciphering the signaling network organization of interactions among different cell death modes associated with 1461 cancer types and COVID-19, with an aim to understand the molecular mechanisms of physiological cell death in disease and facilitate systems-oriented novel drug discovery in inducing cell deaths properly. Apoptosis, autosis, efferocytosis, ferroptosis, immunogenic cell death, intrinsic apoptosis, lysosomal cell death, mitotic cell death, mitochondrial permeability transition, necroptosis, parthanatos, and pyroptosis related to 12 cell deaths and their crosstalk can be observed systematically by the platform. Big data for cell death gene-disease associations, gene-cell death pathway associations, pathway-cell death mode associations, and cell death-cell death associations is collected by literature review articles and public database from iRefIndex, STRING, BioGRID, Reactom, Pathway's commons, DisGeNET, DrugBank, and Therapeutic Target Database (TTD). An interactive webtool, XDeathDB, is built by web applications with R-Shiny, JavaScript (JS) and Shiny Server Iso. With this platform, users can search specific interactions from vast interdependent networks that occur in the realm of cell death. A multilayer spectral graph clustering method that performs convex layer aggregation to identify crosstalk function among cell death modes for a specific cancer. 147 hallmark genes of cell death could be observed in detail in these networks. These potential druggable targets are displayed systematically and tailoring networks to visualize specified relations is available to fulfil user-specific needs. Users can access XDeathDB for free at https://pcm2019.shinyapps.io/XDeathDB/ .
Insights
XDeathDB is a new platform visualizing cell death interactions across 1461 cancer types and COVID-19. It aids in understanding cell death mechanisms and discovering new cancer drugs by mapping gene-disease and pathway associations.
Area of Science:
- Oncology
- Systems Biology
- Bioinformatics
Background:
- Cell death mechanisms are crucial in cancer, involving numerous molecules, pathways, and subcellular sites.
- Understanding the complex crosstalk between different cell death modes is essential for cancer research and drug discovery.
Purpose of the Study:
- To develop XDeathDB, a comprehensive visualization platform for cell death and crosstalk.
- To decipher signaling network organization of cell death interactions in 1461 cancer types and COVID-19.
- To facilitate systems-oriented drug discovery by understanding molecular mechanisms of cell death.
Main Methods:
- Collected big data on gene-disease, gene-cell death pathway, pathway-cell death mode, and cell death-cell death associations from literature and public databases.
- Built an interactive webtool, XDeathDB, using R-Shiny, JavaScript, and Shiny Server.
- Employed a multilayer spectral graph clustering method for identifying crosstalk among cell death modes.
Main Results:
- XDeathDB systematically visualizes 12 cell death modes and their crosstalk, including apoptosis, ferroptosis, necroptosis, and pyroptosis.
- The platform displays associations for 1461 cancer types and COVID-19, highlighting 147 hallmark cell death genes.
- Identified potential druggable targets and enabled tailored network visualization for user-specific needs.
Conclusions:
- XDeathDB provides a valuable resource for exploring cell death networks and their implications in cancer and disease.
- The platform facilitates the understanding of molecular mechanisms underlying cell death and aids in novel drug discovery.
- XDeathDB is freely accessible, empowering researchers to investigate complex cell death interactions.
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