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1.
Immunity ; 45(2): 333-45, 2016 08 16.
Article in English | MEDLINE | ID: mdl-27533014

ABSTRACT

Many pathogens, including Plasmodium spp., exploit the interaction of programmed death-1 (PD-1) with PD-1-ligand-1 (PD-L1) to "deactivate" T cell functions, but the role of PD-L2 remains unclear. We studied malarial infections to understand the contribution of PD-L2 to immunity. Here we have shown that higher PD-L2 expression on blood dendritic cells, from Plasmodium falciparum-infected individuals, correlated with lower parasitemia. Mechanistic studies in mice showed that PD-L2 was indispensable for establishing effective CD4(+) T cell immunity against malaria, because it not only inhibited PD-L1 to PD-1 activity but also increased CD3 and inducible co-stimulator (ICOS) expression on T cells. Importantly, administration of soluble multimeric PD-L2 to mice with lethal malaria was sufficient to dramatically improve immunity and survival. These studies show immuno-regulation by PD-L2, which has the potential to be translated into an effective treatment for malaria and other diseases where T cell immunity is ineffective or short-lived due to PD-1-mediated signaling.


Subject(s)
B7-H1 Antigen/metabolism , CD4-Positive T-Lymphocytes/immunology , Dendritic Cells/immunology , Malaria, Falciparum/immunology , Plasmodium falciparum/immunology , Programmed Cell Death 1 Ligand 2 Protein/metabolism , Programmed Cell Death 1 Receptor/metabolism , Adamantane/analogs & derivatives , Adamantane/therapeutic use , Adult , Animals , Antimalarials/therapeutic use , B7-H1 Antigen/genetics , Cells, Cultured , Clinical Trials as Topic , Dendritic Cells/parasitology , Female , Humans , Immunity, Cellular , Lymphocyte Activation , Malaria, Falciparum/drug therapy , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Middle Aged , Parasitemia/immunology , Peroxides/therapeutic use , Programmed Cell Death 1 Ligand 2 Protein/genetics , Programmed Cell Death 1 Receptor/genetics , Pyrimidines/therapeutic use , Triazoles/therapeutic use , Young Adult
2.
Endocrinology ; 145(10): 4703-11, 2004 Oct.
Article in English | MEDLINE | ID: mdl-15231706

ABSTRACT

The metallopeptidase angiotensin-converting enzyme (ACE) plays a pivotal role in the cardiovascular system by generating the vasoconstrictor peptide angiotensin II. A homolog of ACE with different substrate specificity, ACE2, has recently been cloned that shows an expression pattern restricted to endothelial cells of the heart and kidney, epithelial cells of the distal tubule of the kidney, and the testis. Although the importance of ACE2 to cardiac function is already evident, its role in the testis remains unknown. In this study, we report the cloning and expression of human testicular ACE2 and confirm that it is identical to the somatic form of the enzyme. ACE2 catalytic activity was present in membrane preparations of whole testes and Leydig cells from adult rats; expression of the protein in Leydig cells was confirmed by Western immunoblot analysis. Using immunohistochemistry, ACE2 expression was confined to the Leydig cells in the rat testis and to Leydig and Sertoli cells in the human testis. Ablation of the Leydig cells in the rat by the specific toxin, ethane dimethane sulfonate, eliminated ACE2-positive cells from the interstitium. Expression of ACE2 in rat Leydig cells was up-regulated during the development of adult-type Leydig cells at puberty and after ethane dimethane sulfonate treatment. Expression of ACE2 activity in the testis was not significantly altered by manipulation of the pituitary-testicular hormonal axis with sc testosterone implants. These data suggest that ACE2 is a constitutive product of adult-type Leydig cells and may participate in the control of testicular function by as yet unknown mechanisms.


Subject(s)
Carboxypeptidases/metabolism , Leydig Cells/enzymology , Angiotensin-Converting Enzyme 2 , Animals , Blotting, Western , CHO Cells , Carboxypeptidases/genetics , Carboxypeptidases/physiology , Catalysis , Cloning, Molecular , Cricetinae , Cricetulus , Gene Expression , Humans , Immunohistochemistry/methods , Male , Peptidyl-Dipeptidase A , Rats , Rats, Sprague-Dawley , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Staining and Labeling , Subcellular Fractions/enzymology , Tissue Distribution
3.
Endocrinology ; 150(5): 2376-81, 2009 May.
Article in English | MEDLINE | ID: mdl-19164471

ABSTRACT

Angiotensin-converting enzyme (ACE)-2 is a homolog of the well-characterized plasma membrane-bound angiotensin-converting enzyme. ACE2 is thought to play a critical role in regulating heart function, and in 2003, ACE2 was identified as a functional receptor for severe acute respiratory syndrome coronavirus. We have recently shown that like ACE, ACE2 undergoes ectodomain shedding and that this shedding event is up-regulated by phorbol esters. In the present study, we used gel shift assays to demonstrate that calmodulin, an intracellular calcium-binding protein implicated in the regulation of other ectodomain shedding events, binds a 16-amino acid synthetic peptide corresponding to residues 762-777 within the cytoplasmic domain of human ACE2, forming a calcium-dependent calmodulin-peptide complex. Furthermore, we have demonstrated that ACE2 expressed in Chinese hamster ovary cells specifically binds to glutathione-S-transferase-calmodulin, but not glutathione-S-transferase alone, in pull-down assays using cell lysates. Finally, to investigate whether calmodulin has any effect on ACE2 ectodomain shedding in cells that endogenously express the enzyme, cells from a human liver cell line (Huh-7) expressing ACE2 were incubated with calmodulin-specific inhibitors, trifluoperazine and calmidazolium. Both trifluoperazine (25 micromol/liter) and calmidazolium, (25 micromol/liter) significantly increased the release of ACE2 into the medium (44.1 +/- 10.8%, P < 0.05, Student's t test; unpaired, two-tailed, and 51.1 +/- 7.4% P < 0.05, one-way ANOVA, respectively;), as analyzed by an ACE2-specific quenched fluorescence substrate assay. We also show that the calmodulin-specific inhibitor-stimulated shedding of ACE2 is independent from phorbol ester-induced shedding. In summary, we have demonstrated that calmodulin is able to bind ACE2 and suggest that the ACE2 ectodomain shedding and/or sheddase(s) activation regulated by calmodulin is independent from the phorbol ester-induced shedding.


Subject(s)
Calmodulin/metabolism , Peptidyl-Dipeptidase A/chemistry , Peptidyl-Dipeptidase A/metabolism , Protein Interaction Domains and Motifs , Amino Acid Sequence , Angiotensin-Converting Enzyme 2 , Animals , CHO Cells , Calmodulin-Binding Proteins/chemistry , Calmodulin-Binding Proteins/genetics , Calmodulin-Binding Proteins/metabolism , Cells, Cultured , Cricetinae , Cricetulus , Cytoplasm/metabolism , Humans , Molecular Sequence Data , Peptidyl-Dipeptidase A/genetics , Protein Interaction Domains and Motifs/genetics , Protein Processing, Post-Translational , Sequence Homology, Amino Acid , Transfection
4.
Exp Physiol ; 93(5): 685-93, 2008 May.
Article in English | MEDLINE | ID: mdl-18223027

ABSTRACT

Angiotensin-converting enzyme 2 (ACE2) is thought to act in an opposing manner to its homologue, angiotensin-converting enzyme (ACE), by inactivating the vasoconstrictor peptide angiotensin II and generating the vasodilatory fragment, angiotensin(1-7). Both ACE and ACE2 are membrane-bound ectoenzymes and may circulate in plasma as a consequence of a proteolytic shedding event. In this study, we show that ACE2 circulates in human plasma, but its activity is suppressed by the presence of an endogenous inhibitor. Partial purification of this inhibitor indicated that the inhibitor is small, hydrophilic and cationic, but not a divalent metal cation. These observations led us to develop a method for removal of the inhibitor, thus allowing detection of plasma ACE2 levels using a sensitive quenched fluorescent substrate-based assay. Using this technique, ACE2 activity measured in plasma from healthy volunteers (n = 18) ranged from 1.31 to 8.69 pmol substrate cleaved min-1 ml-1 (mean +/- s.e.m., 4.44 +/- 0.56 pmol min-1 ml-1). Future studies of patients with cardiovascular, renal and liver disease will determine whether plasma ACE2 is elevated in parallel with increased tissue levels observed in these conditions.


Subject(s)
Angiotensin-Converting Enzyme Inhibitors/blood , Peptidyl-Dipeptidase A/blood , Acetonitriles/chemistry , Acetonitriles/isolation & purification , Adult , Angiotensin I/metabolism , Angiotensin II/metabolism , Angiotensin-Converting Enzyme 2 , Antiporters/metabolism , Blotting, Western , Cations, Divalent/pharmacology , Chelating Agents/pharmacology , Female , Humans , Immunoprecipitation , Male , Middle Aged , Peptide Fragments/metabolism , Plasma/enzymology , Recombinant Proteins/biosynthesis , Recombinant Proteins/isolation & purification , Subcellular Fractions/enzymology , Subcellular Fractions/metabolism
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