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1.
J Clin Invest ; 130(5): 2377-2390, 2020 05 01.
Article in English | MEDLINE | ID: mdl-31990686

ABSTRACT

Colitis caused by Clostridium difficile infection is a growing cause of human morbidity and mortality, especially after antibiotic use in health care settings. The natural immunity of newborn infants and protective host immune mediators against C. difficile infection are not fully understood, with data suggesting that inflammation can be either protective or pathogenic. Here, we show an essential role for IL-17A produced by γδ T cells in host defense against C. difficile infection. Fecal extracts from children with C. difficile infection showed increased IL-17A and T cell receptor γ chain expression, and IL-17 production by intestinal γδ T cells was efficiently induced after infection in mice. C. difficile-induced tissue inflammation and mortality were markedly increased in mice deficient in IL-17A or γδ T cells. Neonatal mice, with naturally expanded RORγt+ γδ T cells poised for IL-17 production were resistant to C. difficile infection, whereas elimination of γδ T cells or IL-17A each efficiently overturned neonatal resistance against infection. These results reveal an expanded role for IL-17-producing γδ T cells in neonatal host defense against infection and provide a mechanistic explanation for the clinically observed resistance of infants to C. difficile colitis.


Subject(s)
Clostridioides difficile/immunology , Enterocolitis, Pseudomembranous/immunology , Enterocolitis, Pseudomembranous/prevention & control , Interleukin-17/immunology , Receptors, Antigen, T-Cell, gamma-delta/immunology , Animals , Enterocolitis, Pseudomembranous/genetics , Enterocolitis, Pseudomembranous/pathology , Female , Humans , Interleukin-17/genetics , Male , Mice , Mice, Knockout , Receptors, Antigen, T-Cell, gamma-delta/genetics
2.
BMJ Case Rep ; 12(7)2019 Jul 11.
Article in English | MEDLINE | ID: mdl-31300601

ABSTRACT

This is a rare case of sporadic lymphangioleiomyomatosis (S-LAM) manifesting as refractory chylothorax and chyloperitoneum. A middle-aged woman with unremarkable medical history presented with respiratory failure, abdominal distension and anasarca. She was found to have high-output chylous effusion that required chest tube drainage, as well as chylous ascites. Notably initial chest and abdominal CT did not reveal characteristic pulmonary cysts or the presence of angiomyolipomas suggestive of LAM. An extensive oncologic and infectious work-up was undertaken with negative findings. The chylous effusion was persistent and refractory to thoracic duct embolization, total parenteral nutrition with octreotide, and talc pleurodesis. Diagnosis of S-LAM was confirmed after repeat chest CT showed subtle pulmonary cystic changes, and serum vascular endothelial growth factor-D level was found to be elevated at 834 pg/mL. Patient was started on sirolimus therapy, but lost to follow-up after hospital discharge. Patient died approximately 1 year later.


Subject(s)
Antibiotics, Antineoplastic/therapeutic use , Chylothorax/diagnosis , Lymphangioleiomyomatosis/diagnosis , Respiratory Insufficiency/pathology , Sirolimus/therapeutic use , Thoracic Duct/pathology , Chest Tubes , Chylothorax/physiopathology , Chylothorax/therapy , Drainage , Edema , Fatal Outcome , Female , Humans , Lymphangioleiomyomatosis/physiopathology , Lymphangioleiomyomatosis/therapy , Middle Aged , Parenteral Nutrition, Total , Respiratory Insufficiency/diagnostic imaging
3.
Infect Immun ; 81(3): 713-22, 2013 Mar.
Article in English | MEDLINE | ID: mdl-23264053

ABSTRACT

Clostridium difficile infection (CDI) results in toxin-induced epithelial injury and marked intestinal inflammation. Fecal markers of intestinal inflammation correlate with CDI disease severity, but regulation of the inflammatory response is poorly understood. Previous studies demonstrated that C. difficile toxin TcdA activates p38 kinase in tissue culture cells and mouse ilium, resulting in interleukin-8 (IL-8) release. Here, we investigated the role of phosphorylated mitogen-activated protein kinase (MAPK)-activated protein kinase (MK2 kinase, pMK2), a key mediator of p38-dependent inflammation, in CDI. Exposure of cultured intestinal epithelial cells to the C. difficile toxins TcdA and TcdB resulted in p38-dependent MK2 activation. Toxin-induced IL-8 and GROα release required MK2 activity. We found that p38 and MK2 are activated in response to other actin-disrupting agents, suggesting that toxin-induced cytoskeleton disruption is the trigger for kinase-dependent cytokine response. Phosphorylated MK2 was detected in the intestines of C. difficile-infected hamsters and mice, demonstrating for the first time that the pathway is activated in infected animals. Furthermore, we found that elevated pMK2 correlated with the presence of toxigenic C. difficile among 100 patient stool samples submitted for C. difficile testing. In conclusion, we find that MK2 kinase is activated by TcdA and TcdB and regulates the expression of proinflammatory cytokines. Activation of p38-MK2 in infected animals and humans suggests that this pathway is a key driver of intestinal inflammation in patients with CDI.


Subject(s)
Clostridioides difficile , Clostridium Infections/metabolism , Inflammation/metabolism , Intracellular Signaling Peptides and Proteins/metabolism , Protein Serine-Threonine Kinases/metabolism , Animals , Biomarkers , Cell Line, Tumor , Clostridium Infections/microbiology , Clostridium Infections/pathology , Colon/microbiology , Colon/pathology , Cricetinae , Cytokines/chemistry , Cytokines/genetics , Cytokines/metabolism , Feces/chemistry , Humans , Inflammation/microbiology , Intracellular Signaling Peptides and Proteins/antagonists & inhibitors , Intracellular Signaling Peptides and Proteins/genetics , Male , Mice , Mice, Inbred C57BL , Protein Serine-Threonine Kinases/antagonists & inhibitors , Protein Serine-Threonine Kinases/genetics , p38 Mitogen-Activated Protein Kinases/genetics , p38 Mitogen-Activated Protein Kinases/metabolism , rac1 GTP-Binding Protein/genetics , rac1 GTP-Binding Protein/metabolism
4.
Nature ; 482(7385): 400-4, 2012 Feb 08.
Article in English | MEDLINE | ID: mdl-22318521

ABSTRACT

Cancer immunoediting, the process by which the immune system controls tumour outgrowth and shapes tumour immunogenicity, is comprised of three phases: elimination, equilibrium and escape. Although many immune components that participate in this process are known, its underlying mechanisms remain poorly defined. A central tenet of cancer immunoediting is that T-cell recognition of tumour antigens drives the immunological destruction or sculpting of a developing cancer. However, our current understanding of tumour antigens comes largely from analyses of cancers that develop in immunocompetent hosts and thus may have already been edited. Little is known about the antigens expressed in nascent tumour cells, whether they are sufficient to induce protective antitumour immune responses or whether their expression is modulated by the immune system. Here, using massively parallel sequencing, we characterize expressed mutations in highly immunogenic methylcholanthrene-induced sarcomas derived from immunodeficient Rag2(-/-) mice that phenotypically resemble nascent primary tumour cells. Using class I prediction algorithms, we identify mutant spectrin-ß2 as a potential rejection antigen of the d42m1 sarcoma and validate this prediction by conventional antigen expression cloning and detection. We also demonstrate that cancer immunoediting of d42m1 occurs via a T-cell-dependent immunoselection process that promotes outgrowth of pre-existing tumour cell clones lacking highly antigenic mutant spectrin-ß2 and other potential strong antigens. These results demonstrate that the strong immunogenicity of an unedited tumour can be ascribed to expression of highly antigenic mutant proteins and show that outgrowth of tumour cells that lack these strong antigens via a T-cell-dependent immunoselection process represents one mechanism of cancer immunoediting.


Subject(s)
Exome/genetics , Exome/immunology , Immunologic Surveillance/immunology , Neoplasms/genetics , Neoplasms/immunology , T-Lymphocytes/immunology , Algorithms , Animals , Carrier Proteins/genetics , Carrier Proteins/immunology , DNA-Binding Proteins/deficiency , DNA-Binding Proteins/genetics , Histocompatibility Antigens Class I/immunology , Humans , Male , Methylcholanthrene , Mice , Microfilament Proteins/genetics , Microfilament Proteins/immunology , Models, Immunological , Neoplasms/chemically induced , Neoplasms/pathology , Reproducibility of Results , Sarcoma/chemically induced , Sarcoma/genetics , Sarcoma/immunology , Sarcoma/pathology
5.
Proc Natl Acad Sci U S A ; 104(43): 16810-5, 2007 Oct 23.
Article in English | MEDLINE | ID: mdl-17942703

ABSTRACT

Observations in hemodialysis patients suggest a survival advantage associated with activated vitamin D therapy. Left ventricular (LV) structural and functional abnormalities are strongly linked with hemodialysis mortality. Here, we investigated whether paricalcitol (PC, 19-nor-1,25(OH)(2)D(2)), an activated vitamin D compound, attenuates the development of LV abnormalities in the Dahl salt-sensitive (DSS) rat and whether humans demonstrate comparable findings. Compared with DSS rats fed a high-salt (HS) diet (6% NaCl for 6 weeks), HS+PC was associated with lower heart and lung weights, reduced LV mass, posterior wall thickness and end diastolic pressures, and increased fractional shortening. Blood pressures did not significantly differ between the HS groups. Plasma brain natriuretic peptide levels, and cardiac mRNA expression of brain natriuretic peptide, atrial natriuretic factor, and renin were significantly reduced in the HS+PC animals. Microarray analyses revealed 45 specific HS genes modified by PC. In a retrospective pilot study of hemodialysis patients, PC-treated subjects demonstrated improved diastolic function and a reduction in LV septal and posterior wall thickness by echocardiography compared with untreated patients. In summary, PC attenuates the development of LV alterations in DSS rats, and these effects should be examined in human clinical trials.


Subject(s)
Ergocalciferols/pharmacology , Hypertrophy, Left Ventricular/prevention & control , Sodium, Dietary/pharmacology , Animals , Atrial Natriuretic Factor/genetics , Atrial Natriuretic Factor/metabolism , Blood Pressure/drug effects , Echocardiography , Gene Expression Profiling , Gene Expression Regulation/drug effects , Humans , Hypertrophy, Left Ventricular/physiopathology , Male , Natriuretic Peptide, Brain/blood , Natriuretic Peptide, Brain/genetics , Organ Size/drug effects , Rats , Rats, Inbred Dahl , Renal Dialysis
6.
Am J Physiol Heart Circ Physiol ; 293(1): H829-35, 2007 Jul.
Article in English | MEDLINE | ID: mdl-17468330

ABSTRACT

Uncoupling protein 2 (UCP2) is an inner mitochondrial membrane proton carrier that uncouples ATP synthesis. The aim of this study was to determine whether UCP2 plays a role in survival of adult rat cardiac myocytes. We first studied the effects of UCP2 overexpression in vitro. Overexpression of UCP2 in primary cardiomyocytes led to a significant decline in ATP level and the development of acidosis but had no observable effect on cell survival. When cardiomyocytes were challenged with hypoxia-reoxygenation, cells overexpressing UCP2 survived significantly less compared with control. This finding was associated with upregulation of proapoptotic protein Bcl-2 and 19-kDa interacting protein 3 (BNIP3). Furthermore, UCP2 short interfering RNA prevented both the increase in cell death and BNIP3 expression. To examine the in vivo role of UCP2 in the heart, we used the Dahl salt-sensitive rat heart-failure model. Northern blot analysis revealed that UCP2 mRNA level was significantly upregulated in rat heart failure along with BNIP3 protein level. In conclusion, UCP2 increases sensitivity of adult rat cardiac myocytes to hypoxia-reoxygenation by way of ATP depletion and acidosis, which in turn causes accumulation of prodeath protein BNIP3.


Subject(s)
Hypertension/metabolism , Ion Channels/metabolism , Mitochondrial Proteins/metabolism , Myocytes, Cardiac/metabolism , Myocytes, Cardiac/pathology , Animals , Cell Survival , Cells, Cultured , Female , Rats , Rats, Sprague-Dawley , Uncoupling Protein 2
7.
Circ Res ; 99(4): 415-23, 2006 Aug 18.
Article in English | MEDLINE | ID: mdl-16857965

ABSTRACT

Caspase-9 is a critical regulator of mitochondria-mediated apoptosis. We found that adult cardiac myocytes, but not nonmyocytes, have high caspase-9 expression, and exhibit relative resistance to caspase-9-induced cell death. Thus, we hypothesized that cardiac myocytes possess factors that resist apoptosis. Through a yeast two-hybrid screening of adult human heart cDNA library, we identified HS-1 associated protein-1 (HAX-1), a 35-kD BH-domain containing protein localized to the mitochondria as one of the molecules that interacts with caspase-9. Recombinant HAX-1 protein inhibited caspase-9 processing in a dose-dependent manner in a cell-free caspase activation assay. Overexpression of HAX-1 in adult cardiac myocytes conferred 30% protection from apoptosis as compared with the control. Suppression of HAX-1 expression using siRNA-HAX-1 resulted in significant cell death in adult cardiac myocytes, suggesting the importance of HAX-1 in cardiac myocyte resistance to apoptotic stimulation. On apoptotic stimulation, some caspase-9 translocated to the mitochondria and co-localized with HAX-1, confirming the spatial proximity of caspase-9 and HAX-1. In summary, HAX-1 is a newly identified anti-apoptotic factor and its mechanism of action is through caspase-9 inhibition.


Subject(s)
Apoptosis/physiology , Muscle Cells/physiology , Proteins/genetics , Proteins/metabolism , Adaptor Proteins, Signal Transducing , Adult , Animals , Caspase 9 , Caspases/deficiency , Caspases/metabolism , Enzyme Activation , Female , Humans , Mice , Mice, Knockout , Mitochondria, Heart , Muscle Cells/cytology , Proteins/isolation & purification , Rats , Rats, Sprague-Dawley , Recombinant Proteins/isolation & purification , Recombinant Proteins/metabolism
8.
Mol Pharmacol ; 69(4): 1347-55, 2006 Apr.
Article in English | MEDLINE | ID: mdl-16391241

ABSTRACT

Endothelin-1 (ET-1) is implicated in fibroblast proliferation, which results in cardiac fibrosis. Both reactive oxygen species (ROS) generation and epidermal growth factor receptor (EGFR) transactivation play critical roles in ET-1 signal transduction. In this study, we used rat cardiac fibroblasts treated with ET-1 to investigate the connection between ROS generation and EGFR transactivation. ET-1 treatment was found to stimulate the phosphorylation of EGFR and ROS generation, which were abolished by ETA receptor antagonist N-(N-(N-((hexahydro-1H-azepin-1-yl)carbonyl)-L-leucyl)-D-tryptophyl)-D-tryptophan (BQ485). NADPH oxidase inhibitor diphenyleneiodonium chloride (DPI), ROS scavenger N-acetyl cysteine (NAC), and p47phox small interfering RNA knockdown all inhibited the EGFR transactivation induced by ET-1. In contrast, EGFR inhibitor 4-(3'-chloroanilino)-6,7-dimethoxyquinazoline (AG-1478) cannot inhibit intracellular ROS generation induced by ET-1. Src homology 2-containing tyrosine phosphatase (SHP-2) was shown to be associated with EGFR during ET-1 treatment by EGFR coimmunoprecipitation. ROS have been reported to transiently oxidize the catalytic cysteine of phosphotyrosine phosphatases to inhibit their activity. We examined the effect of ROS on SHP-2 in cardiac fibroblasts using a modified malachite green phosphatase assay. SHP-2 was transiently oxidized during ET-1 treatment, and this transient oxidization could be repressed by DPI or NAC treatment. In SHP-2 knockdown cells, ET-1-induced phosphorylation of EGFR was dramatically elevated and is not influenced by NAC and DPI. However, this elevation was suppressed by GM6001 [a matrix metalloproteinase (MMP) inhibitor] and heparin binding (HB)-epidermal growth factor (EGF) neutralizing antibody. Our data suggest that ET-1-ETA-mediated ROS generation can transiently inhibit SHP-2 activity to facilitate the MMP-dependent and HB-EGF-stimulated EGFR transactivation and mitogenic signal transduction in rat cardiac fibroblasts.


Subject(s)
Endothelin-1/metabolism , ErbB Receptors/genetics , Protein Tyrosine Phosphatases/metabolism , Reactive Oxygen Species/metabolism , Signal Transduction , Transcriptional Activation , Animals , Immunoprecipitation , Oxidation-Reduction , Rats , src Homology Domains
9.
J Biomed Sci ; 12(1): 123-33, 2005.
Article in English | MEDLINE | ID: mdl-15864745

ABSTRACT

Endothelin-1 (ET-1) has been found to increase cardiac beta-myosin heavy chain (beta-MyHC) gene expression and induce hypertrophy in cardiomyocytes. ET-1 has been demonstrated to increase intracellular reactive oxygen species (ROS) in cardiomyocytes. The exact molecular mechanism by which ROS regulate ET-1-induced beta-MyHC gene expression and hypertrophy in cardiomyocytes, however, has not yet been fully described. We aim to elucidate the molecular regulatory mechanism of ROS on ET-1-induced beta-MyHC gene expression and hypertrophic signaling in neonatal rat cardiomyocytes. Following stimulation with ET-1, cultured neonatal rat cardiomyocytes were examined for 3H-leucine incorporation and beta-MyHC promoter activities. The effects of antioxidant pretreatment on ET-1-induced cardiac hypertrophy and mitogen-activated protein kinase (MAPKs) phosphorylation were studied to elucidate the redox-sensitive pathway in cardiomyocyte hypertrophy and beta-MyHC gene expression. ET-1 increased 3H-leucine incorporation and beta-MyHC promoter activities, which were blocked by the specific ET(A) receptor antagonist BQ-485. Antioxidants significantly reduced ET-1-induced 3H-leucine incorporation, beta-MyHC gene promoter activities and MAPK (extracellular signal-regulated kinase, p38, and c-Jun NH2 -terminal kinase) phosphorylation. Both PD98059 and SB203580 inhibited ET-1-increased 3H-leucine incorporation and beta-MyHC promoter activities. Co-transfection of the dominant negative mutant of Ras, Raf, and MEK1 decreased the ET-1-induced beta-MyHC promoter activities, suggesting that the Ras-Raf-MAPK pathway is required for ET-1 action. Truncation analysis of the beta-MyHC gene promoter showed that the activator protein-2 (AP-2)/specificity protein-1 (SP-1) binding site(s) were(was) important cis-element(s) in ET-1-induced beta-MyHC gene expression. Moreover, ET-1-induced AP-2 and SP-1 binding activities were also inhibited by antioxidant. These data demonstrate the involvement of ROS in ET-1-induced hypertrophic responses and beta-MyHC expression. ROS mediate ET-1-induced activation of MAPK pathways, which culminates in hypertrophic responses and beta-MyHC expression.


Subject(s)
Endothelin-1/metabolism , MAP Kinase Signaling System/physiology , Myocytes, Cardiac/pathology , Myocytes, Cardiac/physiology , Myosin Heavy Chains/genetics , Reactive Oxygen Species/metabolism , Animals , Animals, Newborn , Cardiac Myosins , Cells, Cultured , Enzyme Inhibitors/metabolism , Gene Expression Regulation , Genes, Reporter , Humans , Hypertrophy , Myosin Heavy Chains/metabolism , Oxidation-Reduction , Promoter Regions, Genetic , Rats , Rats, Sprague-Dawley , Receptor, Endothelin A/metabolism
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