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Biology subjects

Aznar-Benitah, S.

Publications and source records attributed to Aznar-Benitah, S..

2 recordsLinked to original sources

NGFR-driven suppression of antigen presentation limits CD8+ T cell immunity and response to checkpoint blockade

Immune checkpoint blockade has revolutionized cancer therapy; however, numerous tumors remain resistant by adopting cellular states that impede immune recognition. In this study, we identify the nerve growth factor receptor (NGFR) as a regulator of immune evasion in head and neck squamous cell carcinoma (HNSCC). Genetic ablation of Ngfr resulted in impaired tumor growth in immunocompetent MOC2 HNSCC, while pharmacological inhibition with THX-B reduced primary tumor growth and spontaneous metastatic dissemination. Single-cell profiling of MOC2 tumors demonstrated that Ngfr loss redirected tumor cells away from invasive EMT-like states and enhanced antigen-processing and presentation programs. This was accompanied by increased presentation of tumor antigens and expansion of effector CD8+ T-cells in vivo. Functionally, CD8+ T-cell depletion, Batf3 deficiency, and JAK1/2 inhibition restored the growth of Ngfr-deficient tumors, indicating that NGFR loss exposes tumors to CD8+ T-cell-mediated control through a JAK-associated antigen-presentation program. Notably, NGFR blockade sensitized otherwise resistant MOC2 tumors to anti-PD1 therapy, and the combination of THX-B with anti-PD1 significantly improved tumor control and survival. In human HNSCC, spatial profiling revealed that NGFR+ tumor regions exhibited reduced HLA-DR expression and limited CD3+ T-cell infiltration. Notably, an NGFR-associated antigen-presentation signature stratified survival and response in HNSCC patients undergoing immune checkpoint blockade. Interestingly, this signature was also linked to improved outcomes in melanoma patients. We also observed a significant increase in the effector CD8+ T-cell fraction in melanoma NGFR KO tumors linked to a significant decrease in tumor growth. These findings position NGFR as a regulator of tumor immune visibility and support NGFR inhibition as a strategy to enhance immunotherapy response.

cancer biology↗

FCD-11: A First-in-Class COMPASS Inhibitor in Cancer Therapeutics

COMPASS (Complex of proteins associated with Set1) are highly conserved chromatin regulatory complexes responsible for all methylation marks on histone H3 lysine 4 (H3K4). The COMPASS protein SET1A is upregulated in metastatic breast cancer, and its H3K4 methyltransferase activity promotes metastasis in a palmitic acid diet setting. We identify and characterize FCD-11, a first-in-class small molecule inhibitor of COMPASS activity designed to disrupt the termolecular interface between COMPASS SET domains, ASH2L, and RBBP5. FCD-11 significantly inhibited the H3K4me3 methyltransferase activity of SET1A/COMPASS and MLL1/COMPASS in vitro. ChIP-seq and CETSA indicated that FCD-11 selectively inhibits SET1A/COMPASS activity in mouse embryonic stem cells and breast cancer cell lines. FCD-11 significantly reduced tumor size and extended survival in mouse models of breast cancer. Our findings establish FCD-11 as a potent, COMPASS-specific inhibitor lead compound with preclinical efficacy in breast cancer models and therapeutic potential for cancers with abnormal dependence on SET1A/COMPASS activity.

biochemistry↗