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Aguilar, O. A.

Publications and source records attributed to Aguilar, O. A..

2 recordsLinked to original sources

PVRL2 Suppresses Anti-tumor Immunity Through PVRIG- and TIGIT-Independent Pathways

PVRL2 is believed to act as an immune checkpoint protein in cancer; however, most insight into PVRL2s role is inferred from studies on its known receptor PVRIG. Here, we directly study PVRL2. PVRL2 levels are high in tumor cells and tumor-derived exosomes. Deletion of PVRL2 in multiple syngeneic mouse models of cancer shows a dramatic reduction in tumor growth that is immune dependent. This effect can be even greater than seen with deletion of PD-L1. PVRL2 functions by suppressing CD8 T and NK cells in the tumor microenvironment. Unexpectedly, the effect of PVRL2 loss on tumor growth remains in the absence of PVRIG. In contrast, PVRIG loss shows no additive effect in the absence of PVRL2. TIGIT blockade combined with PVRL2 deletion results in the greatest reduction in tumor growth. This effect is not recapitulated by the combined deletion of PVRL2 with its paralog PVR, the ligand for TIGIT. These data uncover PVRL2 as a distinct inhibitor of the anti-tumor immune response with functions beyond that of its known receptor PVRIG. Importantly, the data provide a strong rationale for combinatorial targeting of PVRL2 and TIGIT for cancer immunotherapy.

immunology↗

Clonal stochasticity in early NK cell response to mouse cytomegalovirus is generated by mature subsets of varying proliferative ability

Natural killer (NK) cells are classically defined as innate immune cells, but experiments show that mouse cytomegalovirus (MCMV) infection in C57BL/6 mice can cause NK cells to undergo antigen-specific proliferation and memory formation, similar to adaptive CD8+ T cells. One shared behavior between CD8+ T cells and NK cells is clonal expansion, where a single stimulated cell proliferates rapidly to form a diverse population of cells. For example, clones derived from single cells are most abundant during expansion when they are primarily CD27- for NK cells and CD62L- for T cells, phenotypes derived from precursor CD27+ and CD62L+ cells, respectively. Here we determined the mechanistic rules involving proliferation, cell death, and differentiation of endogenous and adoptively transferred NK cells in the expansion phase of the response to MCMV infection. We found that the interplay between cell proliferation and cell death of mature CD27- NK cells and a highly proliferative CD27-Ly6C- mature subtype and intrinsic stochastic fluctuations in these processes play key roles in regulating the heterogeneity and population of the NK cell subtypes. Furthermore, we estimate rates for maturation of endogenous NK cells in homeostasis and in MCMV infection and found that only NK cell growth rates, and not differentiation rates, are appreciably increased by MCMV. Taken together, these results quantify the differences between the kinetics of NK cell antigen-specific expansion from that of CD8+ T cells and unique mechanisms that give rise to the observed heterogeneity in NK cell clones generated from single NK cells in the expansion phase.

immunology↗