Dendritic cells dictate responses to PD-L1 blockade cancer immunotherapy
SCIENCE TRANSLATIONAL MEDICINE
Authors: Mayoux, Maud; Roller, Andreas; Pulko, Vesna; Sammicheli, Stefano; Chen, Stanford; Sum, Eva; Jost, Christian; Fransen, Marieke F.; Buser, Regula B.; Kowanetz, Marcin; Rommel, Karolin; Matos, Ines; Colombetti, Sara; Belousov, Anton; Karanikas, Vaios; Ossendorp, Ferry; Hegde, Priti S.; Chen, Daniel S.; Umana, Pablo; Perro, Mario; Klein, Christian; Xu, Wei
Abstract
PD-L1/PD-1 blocking antibodies have demonstrated therapeutic efficacy across a range of human cancers. Extending this benefit to a greater number of patients, however, will require a better understanding of how these therapies instigate anticancer immunity. Although the PD-L1 /PD-1 axis is typically associated with T cell function, we demonstrate here that dendritic cells (DCs) are an important target of PD-L1 blocking antibody. PD-L1 binds two receptors, PD-1 and B7.1 (CD80). PD-L1 is expressed much more abundantly than B7.1 on peripheral and tumor-associated DCs in patients with cancer. Blocking PD-L1 on DCs relieves B7.1 sequestration in cis by PD-L1, which allows the B7.1/CD28 interaction to enhance T cell priming. In line with this, in patients with renal cell carcinoma or non-small cell lung cancer treated with atezolizumab (PD-L1 blockade), a DC gene signature is strongly associated with improved overall survival. These data suggest that PD-L1 blockade reinvigorates DC function to generate potent anticancer T cell immunity.
Sporothrix globosamelanin inhibits antigenpresentation by macrophages and enhances deep organ dissemination
BRAZILIAN JOURNAL OF MICROBIOLOGY
Authors: Song, Yang; Yao, Lei; Zhen, Yu; Cui, Yan; Zhong, Shuxia; Liu, Yuanyuan; Li, Shanshan
Abstract
Melanin is aSporothrixvirulence factor that can inhibit the innate immune functions of macrophages such as phagocytosis and killing. However, no data on melanin's influence on antigen presentation by macrophages are available. In this study, we used conidia, yeasts, and melanin ghosts (MGs) from a blackSporothrix globosastrain (MEL+) and its ultraviolet-induced albino mutant (MEL-), to study the influence of melanin on expression of molecules involved in antigen presentation by mouse macrophages (MHC class II, CD80, CD86), as well as on levels of transcription factors regulating their expression (CIITA and promoters I, III, and IV). A murine infection model was used to assess the virulence of both strains and differences in expression of MHC class II and CD80/86 in vivo. MHC class II, CD86 CIITA, and PIV expressions were lower in macrophages infected with MEL+ than in macrophages infected with MEL- conidia, while CD80 expression was similar. No statistical difference in gene expression was observed between macrophages infected by MEL+ and MEL- yeasts. Infection by MGs alone had no clear effect on expression of antigen presentation-associated molecules. Mice infected with MEL+S. globosahad significantly higher fungal burdens in the lung, liver, spleen, kidney, and testicle compared with mice infected with MEL-S. globosa21 days post-infection. MHC class II expression changes in the animal study were similar to those observed in the in vitro experiment. Our results indicate thatS. globosamelanin can inhibit expression of antigen presentation-associated molecules during both the early and late stages of infection, representing a new mechanism to evade host immunity and to enhance dissemination. Further investigations of melanin's impact on adaptive immunity will be helpful in understanding this fungal virulence factor.