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1.
Nat Struct Mol Biol ; 24(12): 1081-1092, 2017 Dec.
Article in English | MEDLINE | ID: mdl-29058713

ABSTRACT

CD28 provides an essential costimulatory signal for T cell activation, and its function is critical in antitumor immunity. However, the molecular mechanism of CD28 transmembrane signaling remains elusive. Here we show that the conformation and signaling of CD28 are regulated by two counteractive charged factors, acidic phospholipids and Ca2+ ions. NMR spectroscopy analyses showed that acidic phospholipids can sequester CD28 signaling motifs within the membrane, thereby limiting CD28 basal signaling. T cell receptor (TCR) activation induced an increase in the local Ca2+ concentration around CD28, and Ca2+ directly disrupted CD28-lipid interaction, leading to opening and signaling of CD28. We observed that the TCR, Ca2+, and CD28 together form a dual-positive-feedback circuit that substantially amplifies T cell signaling and thus increases antigen sensitivity. This work unravels a new regulatory mechanism for CD28 signaling and thus contributes to the understanding of the dependence of costimulation signaling on TCR signaling and the high sensitivity of T cells.


Subject(s)
CD28 Antigens/metabolism , Calcium/metabolism , Lymphocyte Activation/immunology , Phospholipids/metabolism , Signal Transduction/immunology , T-Lymphocytes/immunology , Animals , Cell Line, Tumor , Mice , Mice, Inbred C57BL , Mice, Knockout , Protein Conformation , Receptors, Antigen, T-Cell/immunology
2.
Nature ; 531(7596): 651-5, 2016 Mar 31.
Article in English | MEDLINE | ID: mdl-26982734

ABSTRACT

CD8(+) T cells have a central role in antitumour immunity, but their activity is suppressed in the tumour microenvironment. Reactivating the cytotoxicity of CD8(+) T cells is of great clinical interest in cancer immunotherapy. Here we report a new mechanism by which the antitumour response of mouse CD8(+) T cells can be potentiated by modulating cholesterol metabolism. Inhibiting cholesterol esterification in T cells by genetic ablation or pharmacological inhibition of ACAT1, a key cholesterol esterification enzyme, led to potentiated effector function and enhanced proliferation of CD8(+) but not CD4(+) T cells. This is due to the increase in the plasma membrane cholesterol level of CD8(+) T cells, which causes enhanced T-cell receptor clustering and signalling as well as more efficient formation of the immunological synapse. ACAT1-deficient CD8(+) T cells were better than wild-type CD8(+) T cells at controlling melanoma growth and metastasis in mice. We used the ACAT inhibitor avasimibe, which was previously tested in clinical trials for treating atherosclerosis and showed a good human safety profile, to treat melanoma in mice and observed a good antitumour effect. A combined therapy of avasimibe plus an anti-PD-1 antibody showed better efficacy than monotherapies in controlling tumour progression. ACAT1, an established target for atherosclerosis, is therefore also a potential target for cancer immunotherapy.


Subject(s)
Acetates/pharmacology , CD8-Positive T-Lymphocytes/drug effects , CD8-Positive T-Lymphocytes/immunology , Cholesterol/metabolism , Immunotherapy/methods , Melanoma/drug therapy , Melanoma/immunology , Sulfonic Acids/pharmacology , Acetamides , Acetates/therapeutic use , Acetyl-CoA C-Acetyltransferase/antagonists & inhibitors , Acetyl-CoA C-Acetyltransferase/deficiency , Acetyl-CoA C-Acetyltransferase/genetics , Acetyl-CoA C-Acetyltransferase/metabolism , Animals , Atherosclerosis/drug therapy , CD8-Positive T-Lymphocytes/metabolism , Cell Membrane/drug effects , Cell Membrane/metabolism , Esterification/drug effects , Female , Immunological Synapses/drug effects , Immunological Synapses/immunology , Immunological Synapses/metabolism , Male , Melanoma/metabolism , Melanoma/pathology , Mice , Programmed Cell Death 1 Receptor/antagonists & inhibitors , Programmed Cell Death 1 Receptor/immunology , Receptors, Antigen, T-Cell/immunology , Receptors, Antigen, T-Cell/metabolism , Signal Transduction/drug effects , Sulfonamides , Sulfonic Acids/therapeutic use
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