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Rishiq, A.

Publications and source records attributed to Rishiq, A..

2 recordsLinked to original sources

RadD from Fusobacterium nucleatum Engages NKp46 to Promote Antitumor Cytotoxicity

Fusobacterium nucleatum, a Gram-negative bacterium implicated in periodontal disease, has emerged as a contributor to tumor progression in various cancers. Whether the presence of Fusobacterium nucleatum inhibits tumor progression is largely unknown. Here, we identify a subspecies-specific interaction between F. nucleatum and the natural killer (NK) cell receptor NKp46. Analysis of TCGA datasets revealed that the co-occurrence of F. nucleatum and high NKp46 expression correlates with improved survival in head and neck cancers but not in colorectal cancers. Using binding assays, we demonstrate that both human NKp46 and its murine ortholog, Ncr1, directly recognize the fusobacterial adhesin RadD. Genetic deletion of radD or blockade of NKp46 significantly impaired NK cell-mediated cytotoxicity in vitro and promoted tumor growth. In vivo infection with F. nucleatum accelerated tumor progression, with an exacerbated effect observed in the absence of RadD or NKp46. These findings highlight RadD as a critical ligand for NKp46 and establish the NKp46-RadD axis as a key interface in host-microbe-tumor interactions, offering a novel target for immunotherapeutic intervention in cancer influenced by microbial factors.

immunology↗

NKp46 Recognizes the Hyphal Form of Candida albicans and Mediates Protective Antifungal Immunity

Candida albicans is an opportunistic fungal pathogen capable of transitioning between yeast and hyphal forms, a morphological plasticity critical for its pathogenicity. Natural killer (NK) cells play a crucial role in antifungal immunity, yet the molecular basis of their interaction with C. albicans remains incompletely understood. Here, we identify NKp46 (NCR1 in mice), an activating receptor on NK cells, as a functional receptor for the hyphal--but not yeast--form of C. albicans. Using image flow cytometry and binding assays with NKp46-Ig and NCR1-Ig fusion proteins, we demonstrate that NKp46 selectively binds to hyphae. This interaction is mediated by the D2 domain of NKp46 and is sialic acid independent. Blocking NKp46 impairs NK cell degranulation and fungal killing in vitro. In vivo, mice deficient in NCR1 exhibit increased susceptibility to systemic C. albicans infection. Our findings establish NKp46 as a key sensor of invasive fungal morphology and underscore its role in early antifungal immunity.

immunology↗