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1.
Nat Commun ; 12(1): 6218, 2021 10 28.
Article in English | MEDLINE | ID: mdl-34711820

ABSTRACT

Cytotoxic chemotherapeutics primarily function through DNA damage-induced tumor cell apoptosis, although the inflammation provoked by these agents can stimulate anti-cancer immune responses. The mechanisms that control these distinct effects and limit immunogenic responses to DNA-damage mediated cell death in vivo are currently unclear. Using a mouse model of BCR-ABL+ B-cell acute lymphoblastic leukemia, we show that chemotherapy-induced anti-cancer immunity is suppressed by the tumor microenvironment through production of the cytokine IL-6. The chemotherapeutic doxorubicin is curative in IL-6-deficient mice through the induction of CD8+ T-cell-mediated anti-cancer responses, while moderately extending lifespan in wild type tumor-bearing mice. We also show that IL-6 suppresses the effectiveness of immune-checkpoint inhibition with anti-PD-L1 blockade. Our results suggest that IL-6 is a key regulator of anti-cancer immune responses induced by genotoxic stress and that its inhibition can switch cancer cell clearance from primarily apoptotic to immunogenic, promoting and maintaining durable anti-tumor immune responses.


Subject(s)
Antineoplastic Agents/administration & dosage , Doxorubicin/administration & dosage , Interleukin-6/immunology , Precursor Cell Lymphoblastic Leukemia-Lymphoma/immunology , Tumor Microenvironment , Animals , Apoptosis/drug effects , CD8-Positive T-Lymphocytes/drug effects , CD8-Positive T-Lymphocytes/immunology , DNA Damage/drug effects , Disease Models, Animal , Humans , Interleukin-6/genetics , Mice , Mice, Inbred C57BL , Mice, Knockout , Precursor Cell Lymphoblastic Leukemia-Lymphoma/drug therapy , Precursor Cell Lymphoblastic Leukemia-Lymphoma/genetics , Precursor Cell Lymphoblastic Leukemia-Lymphoma/physiopathology
2.
J Bacteriol ; 196(20): 3571-81, 2014 Oct.
Article in English | MEDLINE | ID: mdl-25092026

ABSTRACT

FipB, an essential virulence factor of Francisella tularensis, is a lipoprotein with two conserved domains that have similarity to disulfide bond formation A (DsbA) proteins and the amino-terminal dimerization domain of macrophage infectivity potentiator (Mip) proteins, which are proteins with peptidyl-prolyl cis/trans isomerase activity. This combination of conserved domains is unusual, so we further characterized the enzymatic activity and the importance of the Mip domain and lipid modification in virulence. Unlike typical DsbA proteins, which are oxidases, FipB exhibited both oxidase and isomerase activities. FipA, which also shares similarity with Mip proteins, potentiated the isomerase activity of FipB in an in vitro assay and within the bacteria, as measured by increased copper sensitivity. To determine the importance of the Mip domain and lipid modification of FipB, mutants producing FipB proteins that lacked either the Mip domain or the critical cysteine necessary for lipid modification were constructed. Both strains replicated within host cells and retained virulence in mice, though there was some attenuation. FipB formed surface-exposed dimers that were sensitive to dithiothreitol (DTT), dependent on the Mip domain and on at least one cysteine in the active site of the DsbA-like domain. However, these dimers were not essential for virulence, because the Mip deletion mutant, which failed to form dimers, was still able to replicate intracellularly and retained virulence in mice. Thus, the Mip domains of FipB and FipA impart additional isomerase functionality to FipB, but only the DsbA-like domain and oxidase activity are essential for its critical virulence functions.


Subject(s)
Bacterial Proteins/metabolism , Francisella tularensis/metabolism , Tularemia/microbiology , Virulence Factors/metabolism , Animals , Bacterial Proteins/chemistry , Bacterial Proteins/genetics , Copper , Francisella tularensis/drug effects , Francisella tularensis/pathogenicity , Gene Expression Regulation, Enzymologic , Isomerases/genetics , Isomerases/metabolism , Mice , Mice, Inbred C57BL , Mutation , Oxidation-Reduction , Oxidoreductases/genetics , Oxidoreductases/metabolism , Protein Structure, Tertiary , Virulence Factors/chemistry , Virulence Factors/genetics
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