Multiaxial Biophysical Control of Oncogenic Phase Separation by Indoleamines: A Proof-of-Concept Synthesis of Landscape-Level Regulation
Loh, D.; Chuffa, L. G. d. A.; Seiva, F. R. F.; Reiter, R. J.
Show abstract
ABSTRACTO_ST_ABSBackgroundC_ST_ABSPhase-separated oncogenic condensates act as biophysical sanctuaries, stabilizing transcriptional and survival programs to drive cancer progression. While individual proteins within these assemblies are well-documented, a universal regulator capable of orchestrating the integrated biophysical axes governing cellular phase behavior has remained elusive. We propose a paradigm of landscape-level regulation mediated by the indoleamine scaffold. MethodsA systematic synthesis and integrative bioinformatics analysis were performed to identify the intersection between melatonin-responsive genes and the phase-separation proteome. A gene set of 121 phase separation-related molecules was validated via PhaSepDB and intersected with 134 melatonin-modulated genes identified across diverse cancer models. Clinical relevance was assessed using TCGA survival datasets. ResultsWe identified a conserved network of 26 core genes--including AR, BCL2, CGAS, CTNNB1, EP300, EZH2, EGFR, IKBKG (NEMO), KEAP1, KDM1A (LSD1), LEF1, MYC, NANOG, PRNP, SMAD3, SOX9, SQSTM1, TFEB, TFAM, TP53, TWIST1, USP10, WWTR1 (TAZ), VIM, YAP1, and YTHDF3--at the intersection of melatonin signaling and PS architecture. Network analysis revealed high-confidence interactions predominantly localized to the nucleoplasm and stress granules. Melatonin significantly suppressed the majority of these oncogenic drivers, targeting pathways associated with EMT, glycolysis, and hypoxia. Furthermore, higher expression of this melatonin-responsive phase separation-network correlated with poorer overall survival in breast and gastric cancers. ConclusionsThis proof-of-concept synthesis positions melatonin as a remarkably versatile regulator of phase-separated oncogenic networks, capable of simultaneously modulating the integrated biophysical axes that govern cellular phase behavior. We propose that melatonin utilizes a tri-lever framework--comprising redox switching, structural intercalation, and dielectric tuning--to recalibrate the cellular solvation and fluidity landscape. By enforcing fundamental physicochemical constraints rather than targeting discrete signaling nodes, melatonin destabilizes the biophysical sanctuaries that shield oncogenic programs. This landscape-level regulation offers a strategic platform for disrupting condensate-driven malignancy, providing a biophysical logic that circumvents the diverse evasion mechanisms of the malignant cell.
Matching journals
The top 12 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Geometrically encoded positioning of introns, intergenic segments, and exons in the human genome 93%
- Biomechanical Phenotyping Reveals Unique Mechanobiological Signatures of Early-Onset Colorectal Cancer 92%
- Distinct stress-dependent signatures of cellular and extracellular tRNA-derived small RNAs (tDRs) 91%
Similar papers in this journal
- Systematic identification of a nuclear receptor-enriched predictive signature for erastin-induced ferroptosis 93%
- Low level of antioxidant capacity biomarkers but not target overexpression predicts vulnerability to ROS-inducing drugs 93%
- Unravelling the anti-cancer mechanisms elicited by non-covalent thioredoxin reductase inhibitors for triple negative breast cancer therapy. 93%
Similar papers in this journal
- FTO-mediated cytoplasmic m6Am demethylation adjusts stem-like properties in colorectal cancer cell 94%
- Mitochondria preserve an autarkic one-carbon cycle to confer growth-independent cancer cell migration and metastasis 93%
- CDK4 inactivation balances resistance to apoptosis with heightened metabolic sensitivity in triple negative breast cancer cells 92%
Similar papers in this journal
- Selective targeting of TBXT with DARPins identifies regulatory networks and therapeutic vulnerabilities in chordoma 92%
- The extracellular matrix drives guanylate production and protects pancreatic cancer cells from oxaliplatin-induced DNA damage. 92%
- Hydralazine inhibits cysteamine dioxygenase to treat preeclampsia and senesce glioblastoma 92%
Similar papers in this journal
- Decoding mechanism of action and susceptibility to drug candidates from integrated transcriptome and chromatin state 92%
- Limited inhibition of multiple nodes in a driver network blocks metastasis 92%
- Targeting SLC7A11-mediated cysteine metabolism for the treatment of trastuzumab resistant HER2 positive breast cancer 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.