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Updated: Sep 10, 2025

Measuring Composition of CD95 Death-Inducing Signaling Complex and Processing of Procaspase-8 in this Complex
Published on: August 2, 2021
Comprehensive analysis of regulated cell death pathways: intrinsic disorder, protein-protein interactions, and
Oleksandr Sorokin1, Frank Hause2,3, Alice Wedler2
1Research Training Group RTG2467, Martin Luther University Halle-Wittenberg, 06120, Halle (Saale), Germany. oleksandr.sorokin@pharmazie.uni-halle.de.
Abstract:
Regulated cell death (RCD) pathways-once viewed as linear, independent processes-are now recognized as components of a dynamic, interconnected molecular network that dictates cellular fate in health and disease. This study presents a systematic meta-analysis of thirteen major RCD pathways, examining their molecular mechanisms, triggers, and interconnections through protein-protein interaction (PPI) networks. Using custom bioinformatics approaches, we unveiled the interactome of proteins involved in apoptosis, autophagy-dependent cell death, cellular senescence, mitotic catastrophe, entotic cell death, ferroptosis, cuproptosis, immunogenic cell death, lysosome-dependent cell death, mitochondrial permeability transition-driven necrosis, necroptosis, neutrophil extracellular trap formation-related cell death (NETosis), parthanatos, and pyroptosis. By integrating data from an extensive literature review with STRING database analyses, we identified previously unrecognized cross-pathway interactions and regulatory nodes where special attention was given to the role of intrinsically disordered proteins (IDPs) in these pathways. Our findings reveal a complex interplay between different RCD mechanisms and highlight potential therapeutic targets for diseases characterized by dysregulated cell death programs, including cancer and autoimmune disorders. This comprehensive analysis provides new insights into the molecular architecture of RCD pathways and their cooperative functions in maintaining cellular homeostasis.
Insights
This study reveals that regulated cell death (RCD) pathways are interconnected, not isolated. Understanding these complex protein-protein interactions offers new therapeutic targets for diseases like cancer.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Regulated cell death (RCD) pathways were traditionally viewed as distinct processes.
- Emerging evidence highlights their interconnected nature within a complex molecular network.
- This network governs cellular fate in both health and disease states.
Purpose of the Study:
- To systematically analyze thirteen major RCD pathways.
- To investigate their molecular mechanisms, triggers, and interconnections.
- To identify novel cross-pathway interactions and regulatory nodes, focusing on intrinsically disordered proteins (IDPs).
Main Methods:
- Systematic meta-analysis of thirteen RCD pathways.
- Protein-protein interaction (PPI) network analysis using custom bioinformatics approaches.
- Integration of literature review data with STRING database analyses.
Main Results:
- Unveiled the interactome of proteins across diverse RCD pathways (apoptosis, ferroptosis, necroptosis, pyroptosis, etc.).
- Identified previously unrecognized cross-pathway interactions and key regulatory nodes.
- Highlighted the significant role of intrinsically disordered proteins (IDPs) in RCD pathway regulation.
Conclusions:
- RCD pathways exhibit complex interplays, forming an integrated network.
- Dysregulated RCD is implicated in diseases such as cancer and autoimmune disorders.
- The identified interactions and nodes present potential therapeutic targets for these conditions.
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