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1.
Immunology ; 145(4): 485-97, 2015 Aug.
Article in English | MEDLINE | ID: mdl-25772938

ABSTRACT

Host immune responses must be tightly regulated by an intricate balance between positive and negative signals while fighting pathogens; persistent pathogens may usurp these regulatory mechanisms to dampen host immunity to facilitate survival in vivo. Here we report that Tim-3, a negative signalling molecule expressed on monocytes and T cells, is up-regulated on natural killer (NK) cells in individuals chronically infected with hepatitis C virus (HCV). Additionally, the transcription factor T-bet was also found to be up-regulated and associated with Tim-3 expression in NK cells during chronic HCV infection. MicroRNA-155 (miR-155), an miRNA that inhibits signalling proteins involved in immune responses, was down-regulated in NK cells by HCV infection. This Tim-3/T-bet over-expression and miR-155 inhibition were recapitulated in vitro by incubating primary NK cells or NK92 cell line with Huh-7 hepatocytes expressing HCV. Reconstitution of miR-155 in NK cells from HCV-infected patients led to a decrease in T-bet/Tim-3 expression and an increase in interferon-γ production. Blocking Tim-3 signalling also enhanced interferon-γ production in NK cells by improving signal transducer and activator of transcription-5 phosphorylation. These data indicate that HCV-induced, miR-155-regulated Tim-3 expression regulates NK cell function, suggesting a novel mechanism for balancing immune clearance and immune injury during chronic viral infection.


Subject(s)
Hepatitis C, Chronic/immunology , Interferon-gamma/immunology , Killer Cells, Natural/immunology , Membrane Proteins/immunology , MicroRNAs/immunology , Signal Transduction/immunology , Up-Regulation/immunology , Adult , Aged , Cell Line , Female , Hepatitis A Virus Cellular Receptor 2 , Hepatitis C, Chronic/pathology , Hepatocytes/immunology , Hepatocytes/pathology , Humans , Killer Cells, Natural/pathology , Male , Middle Aged , T-Box Domain Proteins/immunology
2.
Hepatology ; 61(4): 1163-73, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25477247

ABSTRACT

UNLABELLED: T cells play a crucial role in viral clearance or persistence; however, the precise mechanisms that control their responses during viral infection remain incompletely understood. MicroRNA (miR) has been implicated as a key regulator controlling diverse biological processes through posttranscriptional repression. Here, we demonstrate that hepatitis C virus (HCV)-mediated decline of miR-181a expression impairs CD4(+) T-cell responses through overexpression of dual specific phosphatase 6 (DUSP6). Specifically, a significant decline of miR-181a expression along with overexpression of DUSP6 was observed in CD4(+) T cells from chronically HCV-infected individuals compared to healthy subjects, and the levels of miR-181a loss were found to be negatively associated with the levels of DUSP6 overexpression in these cells. Importantly, reconstitution of miR-181a or blockade of DUSP6 expression in CD4(+) T cells led to improved T-cell responses including enhanced CD25 and CD69 expression, increased interleukin-2 expression, and improved proliferation of CD4(+) T cells derived from chronically HCV-infected individuals. CONCLUSION: Since a decline of miR-181a concomitant with DUSP6 overexpression is the signature marker for age-associated T-cell senescence, these findings provide novel mechanistic insights into HCV-mediated premature T-cell aging through miR-181a-regulated DUSP6 signaling and reveal new targets for therapeutic rejuvenation of impaired T-cell responses during chronic viral infection.


Subject(s)
CD4-Positive T-Lymphocytes/physiology , Dual Specificity Phosphatase 6/biosynthesis , Hepacivirus/physiology , MicroRNAs/physiology , Cells, Cultured , Humans
3.
J Immunol ; 192(2): 649-57, 2014 Jan 15.
Article in English | MEDLINE | ID: mdl-24337749

ABSTRACT

Coinfection of hepatitis B virus (HBV) with hepatitis C virus (HCV) is quite common, leading to an increase in morbidity and mortality. As such, HBV vaccination is recommended in HCV-infected individuals. However, HBV vaccine responses in HCV-infected individuals are often blunted compared with uninfected populations. The mechanism for this failure of vaccine response in HCV-infected subjects remains unclear. In this study, we investigated the expression and function of an inhibitory receptor, killer cell lectin-like receptor subfamily G member 1 (KLRG1), in the regulation of CD4(+) T cells and HBV vaccine responses during HCV infection. We demonstrated that KLRG1 was overexpressed on CD4(+) T cells from HCV-infected, HBV vaccine nonresponders compared with HBV vaccine responders. The capacity of CD4(+) T cells to proliferate and secrete IL-2 cytokine was inversely associated with the level of KLRG1 expression. Importantly, blocking KLRG1 signaling resulted in a significant improvement in CD4(+) T cell proliferation and IL-2 production in HCV-infected, HBV vaccine nonresponders in response to TCR stimulation. Moreover, blockade of KLRG1 increased the phosphorylation of Akt (Ser(473)) and decreased the expression of cell cycle inhibitors p16(ink4a) and p27(kip1), which subsequently enhanced the expression of cyclin-dependent kinase 2 and cyclin E. These results suggest that the KLRG1 pathway impairs CD4(+) T cell responses to neoantigen and induces a state of immune senescence in individuals with HCV infection, raising the possibility that blocking this negative-signaling pathway might improve HBV vaccine responses in the setting of chronic viral infection.


Subject(s)
CD4-Positive T-Lymphocytes/immunology , Cyclin-Dependent Kinase Inhibitor p16/genetics , Cyclin-Dependent Kinase Inhibitor p27/genetics , Hepatitis B Vaccines/immunology , Hepatitis B/immunology , Hepatitis C/immunology , Lectins, C-Type/genetics , Trans-Activators/genetics , Aging/genetics , Aging/immunology , CD4-Positive T-Lymphocytes/virology , Cell Proliferation , Cells, Cultured , Coinfection/genetics , Coinfection/immunology , Cyclin E/genetics , Cyclin E/immunology , Cyclin-Dependent Kinase 2/genetics , Cyclin-Dependent Kinase 2/immunology , Cyclin-Dependent Kinase Inhibitor p16/immunology , Cyclin-Dependent Kinase Inhibitor p27/immunology , Hepacivirus/immunology , Hepatitis B/genetics , Hepatitis B/prevention & control , Hepatitis B virus/immunology , Hepatitis C/genetics , Hepatitis C/virology , Humans , Interleukin-2/genetics , Interleukin-2/immunology , Lectins, C-Type/immunology , Phosphorylation/genetics , Phosphorylation/immunology , Proto-Oncogene Proteins c-akt/genetics , Proto-Oncogene Proteins c-akt/immunology , Receptors, Immunologic , Signal Transduction/genetics , Signal Transduction/immunology , Trans-Activators/immunology
4.
J Virol ; 87(21): 11626-36, 2013 Nov.
Article in English | MEDLINE | ID: mdl-23966413

ABSTRACT

In this study, we demonstrate that killer cell lectin-like receptor subfamily G member 1 (KLRG1), a transmembrane protein preferentially expressed on T cells, is highly expressed on CD56(+) NK cells, which are significantly reduced in their numbers and functions in the peripheral blood of patients with chronic hepatitis C virus (HCV) infection compared to subjects without infection. KLRG1 expression is also upregulated on healthy NK cells exposed to Huh-7 hepatocytes infected with HCV in vitro. Importantly, the expression levels of KLRG1 are inversely associated with the capacity of NK cells to proliferate and to produce gamma interferon (IFN-γ) but positively associated with apoptosis of NK cells in response to inflammatory cytokine stimulation. KLRG1(+) NK cells, including CD56(bright) and CD56(dim) subsets, exhibit impaired cell activation and IFN-γ production but increased apoptosis compared to KLRG1(-) NK cells, particularly in HCV-infected individuals. Importantly, blockade of KLRG1 signaling significantly recovered the impaired IFN-γ production by NK cells from HCV-infected subjects. Blockade of KLRG1 also enhanced the impaired phosphorylation of Akt (Ser473) in NK cells from HCV-infected subjects. Taken together, these results indicate that KLRG1 negatively regulates NK cell numbers and functions via the Akt pathway, thus providing a novel marker and therapeutic target for HCV infection.


Subject(s)
Hepatitis C, Chronic/immunology , Killer Cells, Natural/immunology , Lectins, C-Type/metabolism , Signal Transduction , Trans-Activators/metabolism , Apoptosis , CD56 Antigen/analysis , Cell Proliferation , Female , Humans , Interferon-gamma/metabolism , Killer Cells, Natural/chemistry , Male , Receptors, Immunologic
5.
PLoS One ; 8(8): e72488, 2013.
Article in English | MEDLINE | ID: mdl-23967307

ABSTRACT

Human monocytes/macrophages (M/M(Ф)) of the innate immunity sense and respond to microbial products via specific receptor coupling with stimulatory (such as TLR) and inhibitory (such as Tim-3) receptors. Current models imply that Tim-3 expression on M/M(Ø) can deliver negative signaling to TLR-mediated IL-12 expression through trans association with its ligand Galectin-9 (Gal-9) presented by other cells. However, Gal-9 is also expressed within M/M(Ø), and the effect of intracellular Gal-9 on Tim-3 activities and inflammatory responses in the same M/M(Ø) remains unknown. In this study, our data suggest that Tim-3 and IL-12/IL-23 gene transcriptions are regulated by enhanced or silenced Gal-9 expression within monocytes through synergizing with TLR signaling. Additionally, TLR activation facilitates Gal-9/Tim-3 cis association within the same M/M(Ø) to differentially regulate IL-12/IL-23 expressions through STAT-3 phosphorylation. These results reveal a ligand (Gal-9) compartment-dependent regulatory effect on receptor (Tim-3) activities and inflammatory responses via TLR pathways--a novel mechanism underlying cellular responses to external or internal cues.


Subject(s)
Galectins/metabolism , Gene Expression Regulation , Interleukin-12/genetics , Interleukin-23/genetics , Membrane Proteins/metabolism , Monocytes/cytology , Toll-Like Receptors/metabolism , Cell Line , Galectins/deficiency , Galectins/genetics , Gene Silencing , Hepatitis A Virus Cellular Receptor 2 , Humans , Intracellular Space/metabolism , Macrophages/cytology , Macrophages/immunology , Macrophages/metabolism , Monocytes/immunology , Monocytes/metabolism , Phosphorylation , STAT3 Transcription Factor/metabolism , Signal Transduction , Transcription, Genetic
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