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Assessing Cellular Target Engagement by SHP2 PTPN11 Phosphatase Inhibitors
Published on: July 17, 2020
Combined Inhibition of SHP2 and CXCR1/2 Promotes Antitumor T-cell Response in NSCLC
Kwan Ho Tang1, Shuai Li2, Alireza Khodadadi-Jamayran3
1Laura and Isaac Perlmutter Cancer Center, New York University Grossman School of Medicine, NYU Langone Health, New York, New York. benjamin.neel@nyulangone.org kwok-kin.wong@nyulangone.org khhtang@gmail.com.
Abstract:
SHP2 inhibitors (SHP2i) alone and in various combinations are being tested in multiple tumors with overactivation of the RAS/ERK pathway. SHP2 plays critical roles in normal cell signaling; hence, SHP2is could influence the tumor microenvironment. We found that SHP2i treatment depleted alveolar and M2-like macrophages, induced tumor-intrinsic CCL5/CXCL10 secretion, and promoted B and T lymphocyte infiltration in Kras- and Egfr-mutant non-small cell lung cancer (NSCLC). However, treatment also increased intratumor granulocytic myeloid-derived suppressor cells (gMDSC) via tumor-intrinsic, NFκB-dependent production of CXCR2 ligands. Other RAS/ERK pathway inhibitors also induced CXCR2 ligands and gMDSC influx in mice, and CXCR2 ligands were induced in tumors from patients on KRASG12C inhibitor trials. Combined SHP2 (SHP099)/CXCR1/2 (SX682) inhibition depleted a specific cluster of S100a8/9 hi gMDSCs, generated Klrg1 + CD8+ effector T cells with a strong cytotoxic phenotype but expressing the checkpoint receptor NKG2A, and enhanced survival in Kras- and Egfr-mutant models. Our results argue for testing RAS/ERK pathway/CXCR1/2/NKG2A inhibitor combinations in patients with NSCLC. SIGNIFICANCE: Our study shows that inhibiting the SHP2/RAS/ERK pathway triggers NFκB-dependent upregulation of CXCR2 ligands and recruitment of S100A8hi gMDSCs, which suppress T cells. Combining SHP2/CXCR2 inhibitors blocks gMDSC immigration, resulting in enhanced Th1 polarization, induced CD8+KLRG1+ effector T cells with high cytotoxic activity, and improved survival in multiple NSCLC models.This article is highlighted in the In This Issue feature, p. 1.
Insights
SHP2 inhibitors can impact the tumor microenvironment by altering immune cells. Combining SHP2 and CXCR2 inhibitors enhances anti-tumor immunity and improves survival in non-small cell lung cancer models.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- SHP2 inhibitors (SHP2i) are investigated for RAS/ERK pathway-driven tumors.
- SHP2i can modulate the tumor microenvironment and immune responses.
- Understanding SHP2i effects is crucial for optimizing cancer therapy.
Purpose of the Study:
- To investigate the impact of SHP2 inhibition on the tumor microenvironment in non-small cell lung cancer (NSCLC).
- To explore the efficacy of combined SHP2 and CXCR2 inhibition in preclinical NSCLC models.
- To identify potential therapeutic strategies for NSCLC patients with RAS/ERK pathway alterations.
Main Methods:
- Treatment of Kras- and Egfr-mutant NSCLC models with SHP2 inhibitors.
- Analysis of immune cell populations, cytokine secretion, and T cell phenotypes.
- Combination therapy using SHP2 (SHP099) and CXCR1/2 (SX682) inhibitors.
- Evaluation of survival outcomes in preclinical models.
Main Results:
- SHP2i depleted macrophages and promoted T and B lymphocyte infiltration but increased granulocytic myeloid-derived suppressor cells (gMDSC) via CXCR2 ligands.
- Combined SHP099/SX682 inhibition depleted S100a8/9hi gMDSCs.
- Combination therapy generated cytotoxic CD8+ effector T cells and enhanced survival in NSCLC models.
- CXCR2 ligand induction and gMDSC influx were observed in patient tumors from KRASG12C inhibitor trials.
Conclusions:
- SHP2 inhibition triggers NFκB-dependent CXCR2 ligand production, recruiting immunosuppressive gMDSCs.
- Combined SHP2/CXCR2 inhibition overcomes gMDSC-mediated suppression, enhancing anti-tumor T cell responses.
- Targeting the SHP2/RAS/ERK pathway in combination with CXCR1/2 inhibition shows promise for NSCLC treatment.
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