Abstract
Therapeutic induction of tumor tertiary lymphoid structures (TLS) represents an unmet need. ADAMTS-mediated proteolysis of the proteoglycan versican (VCAN), a cardinal provisional matrix modification in wound-healing, correlates with tumor T-cell inflammation. In human metastatic colorectal cancer, VCAN proteolysis prospectively predicted outcomes after checkpoint inhibition immunotherapy, with 100% overall-survival in the intense-proteolysis group at 4.1yr median follow-up. We now report that VCAN undergoes constitutive proteolysis within CXCL13-replete germinal center light zones in secondary lymphoid tissue, whereas inducible VCAN proteolysis localizes within CXCL13-rich tumor stromal niches. The VCAN matrikine, versikine, activates CD11b+ dendritic cells (DC) and expands cDC1 to organize TLS-archetypal triad hubs. Under permissive conditions of intact VCAN depletion, versikine-conditioned DC engage progenitor-exhausted CD8+ T-cells (Tpex) and Tpex-supporting, Th1-polarized CD4+ follicular-helper T-cells. Conversely, excess unproteolyzed VCAN favors DC-Treg crosstalk and Tpex loss from dysfunctional triads. Therapeutic versikine (mRNA/protein) eradicates experimental tumors modeling the VCAN-proteolysis-weak state of 60-73% of human colorectal cancers. Thus, tumor lymphoneogenesis co-opts a matrix-processing step of normal germinal center biology and wound-repair with prognostic and therapeutic implications.
Preprint server:
bioRxiv
The authors list and abstract were imported from bioRxiv on 30 Sep 2026.
Advertisement
Stats
- Recommendations n/a n/a positive of 0 vote(s)
- Views 7
- Comments 0