Menu
Peptide Database
Results
No peptides found
Featured

Use search to browse all 100+ peptides

LL-37

Cathelicidin, hCAP-18, FALL-39, CAP-18

Quick Stats
Studies 2230
Trials 95
2024 pubmed 25 citations

Tumor Exosomal ENPP1 Hydrolyzes cGAMP to Inhibit cGAS-STING Signaling.

An. Yu Y; Zhu. Jinchao J; Xie. Qihui Q; Feng. Jianzhou J; Gong. Yanli Y; Fan. Qian Q; Cao. Jiao J; Huang. Zhi Z; Shi. Weixiong W; Lin. Qingyuan Q; Wu. Lingling L; Yang. Chaoyong C; Ji. Tianhai T

Key Findings

  • Tumor‑derived exosomes carry the enzyme ENPP1
  • 3
  • Degrading cGAMP via exosomal ENPP1 suppresses the cGAS‑STING immune pathway and lowers CD8+ and CD4+ T‑cell infiltration in tumors

Practical Outcomes

  • There are no direct actions for biohackers or self‑experimenters. The findings highlight a cancer‑specific immune evasion tactic, not a new supplement or protocol for longevity or performance.

Summary

Researchers found that tiny particles released by tumors (exosomes) contain an enzyme called ENPP1, which can break down a signaling molecule called cGAMP—even when cGAMP is carried by the peptide LL-37. By destroying cGAMP, these exosomes dampen the immune system's ability to detect and fight cancer cells, and they also reduce the presence of immune‑fighting T cells in tumors. This study is mainly about how cancers hide from the immune system, not about any health‑boosting use of LL‑37 for everyday people.

Abstract

To evade immune surveillance, tumor cells express ectonucleotide pyrophosphatase phosphodiesterase 1 (ENPP1) on the surface of their membrane, which degrades extracellular cyclic GMP-AMP (cGAMP), thereby inhibiting the cyclic GMP-AMP synthase (cGAS) stimulator of interferon gene (STING) DNA-sensing pathway. To fully understand this tumor stealth mechanism, it is essential to determine whether other forms of ENPP1 with hydrolytic cGAMP activity also are present in the tumor microenvironment to regulate this innate immune pathway. Herein, it is reported that various tumor-derived exosomes carry ENPP1, and can hydrolyze synthetic 2'3'-cGAMP and endogenous 2'3'-cGAMP produced by cells to inhibit cGAS-STING pathway in immune cells. Moreover, tumor exosomal ENPP1 also can hydrolyze 2'3'-cGAMP bound to LL-37 (an effective transporter of 2'3'-cGAMP) to inhibit STING signaling. Furthermore, high expression of ENPP1 in exosomes is observed isolated from human breast and lung cancer tissue, and tumor exosomal ENPP1 inhibited the immune infiltration of CD8+ T cells and CD4+ T cells. The results elucidate the essential function of tumor exosomal ENPP1 in the cGAS-STING pathway, furthering understanding of the crosstalk between the tumor cells and immune system.

Study Information

Provider

pubmed

Year

2024

Date

2024-03-18T00:00:00.000Z

DOI

10.1002/advs.202308131

Citations

25

References

43