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CXCL9/10/11, a regulator of PD-L1 expression in gastric cancer
Chenlu Zhang1,2, Zhi Li1, Ling Xu1
1Department of Medical Oncology, the First Hospital of China Medical University, NO.155, North Nanjing Street, Heping District, Shenyang, 110001, China.
Background:
Programmed death-ligand 1 (PD-L1) is an immunosuppressor that plays an important role in cancer treatments. Although majority of the studies demonstrated that PD-L1 expression was regulated by cellular intrinsic and extrinsic controls, and IFN-γ was a key molecule of extrinsic control, other studies imply that other cytokines play important roles in PD-L1 expression. In this study, we investigated the regulation of PD-L1 by chemokine signaling pathway in gastric cancer (GC) cells.
Methods:
Bioinformatics was used to explore the PD-L1-related genes in GC and propose a hypothesis. PD-L1 and CXCR3 expression were detected by western blot in SGC7901 and MKN74 cell lines. Meanwhile, PD-L1 and CXCR3 expressions were immunohistochemically assessed for their relevance. Moreover, PD-L1, pSTAT3 and pAkt were detected after treatment with CXCL9/10/11. Furthermore,PD-L1, pSTAT3 and pAkt were evaluated after blocking chemokine signaling in SGC7901 cells.
Results:
Based on online database analysis, CXCL9/10/11-CXCR3 is proposed to upregulate PD-L1 expression by activating the STAT and PI3K-Akt pathways. This hypothesis was confirmed by in vitro and vivo experiments. CXCR3 and PD-L1 were expressed in GC cell lines and tissues, and the expression of CXCR3 and PD-L1 was positively related. PD-L1 was upregulated after treatment with CXCL9/10/11, accompanied by activation of STAT3 and Akt. After blocking chemokine signaling, upregulation of PD-L1 and activation of STAT3 and Akt were diminished.
Conclusions:
CXCL9/10/11-CXCR3 upregulated the expression of PD-L1 by activating the STAT and PI3K-Akt signaling pathways in GC cells. There was a significant positive correlation between the expression of PD-L1 and CXCR3 in gastric cancer patient tissues.
Insights
The chemokine CXCL9/10/11-CXCR3 pathway activates STAT and PI3K-Akt signaling, upregulating programmed death-ligand 1 (PD-L1) in gastric cancer. PD-L1 and CXCR3 expression are positively correlated in patient tissues.
Area of Science:
- Immunology and Cancer Biology
- Molecular Signaling Pathways
Background:
- Programmed death-ligand 1 (PD-L1) is a key immunosuppressor in cancer therapy.
- While IFN-γ is a known regulator of PD-L1, other cytokines' roles are under investigation.
- This study explores PD-L1 regulation by chemokine signaling in gastric cancer (GC).
Purpose of the Study:
- To investigate the role of chemokine signaling in regulating PD-L1 expression in gastric cancer cells.
- To elucidate the specific molecular pathways involved in this regulation.
Main Methods:
- Bioinformatic analysis to identify PD-L1-related genes in GC.
- Western blot and immunohistochemistry to assess PD-L1 and CXCR3 expression in cell lines and tissues.
- In vitro experiments involving cytokine treatment (CXCL9/10/11) and pathway inhibition (STAT3, Akt).
Main Results:
- Bioinformatics suggested CXCL9/10/11-CXCR3 signaling activates STAT and PI3K-Akt pathways to upregulate PD-L1.
- PD-L1 and CXCR3 were co-expressed in GC cell lines and tissues, with a positive correlation.
- CXCL9/10/11 treatment increased PD-L1, pSTAT3, and pAkt levels; blocking chemokine signaling reversed these effects.
Conclusions:
- The CXCL9/10/11-CXCR3 axis upregulates PD-L1 expression in gastric cancer via STAT and PI3K-Akt activation.
- A significant positive correlation exists between PD-L1 and CXCR3 expression in gastric cancer patient tissues.
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