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1.
J Immunol ; 194(2): 697-708, 2015 Jan 15.
Artículo en Inglés | MEDLINE | ID: mdl-25505280

RESUMEN

Plasmodium remains a major pathogen causing malaria and impairing defense against other infections. Defining how Plasmodium increases susceptibility to heterologous pathogens may lead to interventions that mitigate the severity of coinfections. Previous studies proposed that reduced T cell responses during coinfections are due to diminished recruitment of naive T cells through infection-induced decreases in chemokine CCL21. We found that, although Listeria infections reduced expression of CCL21 in murine spleens, lymphocytic choriomeningitis virus (LCMV)-specific T cell responses were not impaired during Listeria + LCMV coinfection, arguing against a major role for this chemokine in coinfection-induced T cell suppression. In our experiments, Plasmodium yoelii infection led to a reduced CD8(+) T cell response to a subsequent Listeria infection. We propose an alternative mechanism whereby P. yoelii suppresses Listeria-specific T cell responses. We found that Listeria-specific T cells expanded more slowly and resulted in lower numbers in response to coinfection with P. yoelii. Mathematical modeling and experimentation revealed greater apoptosis of Listeria-specific effector T cells as the main mechanism, because P. yoelii infections did not suppress the recruitment or proliferation rates of Listeria-specific T cells. Our results suggest that P. yoelii infections suppress immunity to Listeria by causing increased apoptosis in Listeria-specific T cells, resulting in a slower expansion rate of T cell responses.


Asunto(s)
Coinfección/inmunología , Inmunidad Celular , Listeria monocytogenes/inmunología , Listeriosis/inmunología , Malaria/inmunología , Plasmodium yoelii/inmunología , Linfocitos T/inmunología , Animales , Apoptosis/inmunología , Quimiocina CCL21/genética , Quimiocina CCL21/inmunología , Coinfección/genética , Coinfección/microbiología , Coinfección/parasitología , Coinfección/patología , Listeriosis/genética , Listeriosis/parasitología , Listeriosis/patología , Malaria/genética , Malaria/microbiología , Malaria/patología , Ratones , Ratones Transgénicos
2.
BMC Microbiol ; 10: 26, 2010 Jan 28.
Artículo en Inglés | MEDLINE | ID: mdl-20109168

RESUMEN

BACKGROUND: The gram-positive pathogenic bacterium Listeria monocytogenes is widely spread in the nature. L. monocytogenes was reported to be isolated from soil, water, sewage and sludge. Listeriolysin O (LLO) is a L. monocytogenes major virulence factor. In the course of infection in mammals, LLO is required for intracellular survival and apoptosis induction in lymphocytes. In this study, we explored the potential of LLO to promote interactions between L. monocytogenes and the ubiquitous inhabitant of natural ecosystems bacteriovorous free-living ciliate Tetrahymena pyriformis. RESULTS: Wild type L. monocytogenes reduced T. pyriformis trophozoite counts and stimulated encystment. The effects were observed starting from 48 h of co-incubation. On the day 14, trophozoites were eliminated from the co-culture while about 5 x 104 cells/ml remained in the axenic T. pyriformis culture. The deficient in the LLO-encoding hly gene L. monocytogenes strain failed to cause mortality among protozoa and to trigger protozoan encystment. Replenishment of the hly gene in the mutant strain restored toxicity towards protozoa and induction of protozoan encystment. The saprophytic non-haemolytic species L. innocua transformed with the LLO-expressing plasmid caused extensive mortality and encystment in ciliates. During the first week of co-incubation, LLO-producing L. monocytogenes demonstrated higher growth rates in association with T. pyriformis than the LLO-deficient isogenic strain. At latter stages of co-incubation bacterial counts were similar for both strains. T. pyriformis cysts infected with wild type L. monocytogenes caused listerial infection in guinea pigs upon ocular and oral inoculation. The infection was proved by bacterial plating from the internal organs. CONCLUSIONS: The L. monocytogenes virulence factor LLO promotes bacterial survival and growth in the presence of bacteriovorous ciliate T. pyriformis. LLO is responsible for L. monocytogenes toxicity for protozoa and induction of protozoan encystment. L. monocytogenes entrapped in cysts remained viable and virulent. In whole, LLO activity seems to support bacterial survival in the natural habitat outside of a host.


Asunto(s)
Toxinas Bacterianas/metabolismo , Proteínas de Choque Térmico/metabolismo , Proteínas Hemolisinas/metabolismo , Listeria monocytogenes/crecimiento & desarrollo , Tetrahymena pyriformis/crecimiento & desarrollo , Tetrahymena pyriformis/microbiología , Animales , Infecciones por Cilióforos/microbiología , Técnicas de Cocultivo , Oftalmopatías/microbiología , Oftalmopatías/parasitología , Cobayas , Listeria monocytogenes/patogenicidad , Listeriosis/microbiología , Listeriosis/parasitología
3.
Mol Immunol ; 45(11): 3253-63, 2008 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-18455236

RESUMEN

As only a handful of ligands have been identified, the general nature of the ligands recognized by gammadelta T cells remains unresolved. In this study, soluble multimerized gammadelta T cell receptors (smTCRs) representing the TCRs of two gammadelta T cell subsets common in the mouse were used to detect and track their own ligands. Ligands for both subsets were found on resident peritoneal macrophages taken from untreated mice, and the expression of both was further induced by Listeria monocytogenes infection. Nevertheless, the two types of ligand differ from one another in abundance, in the kinetics of their induction following Listeria infection, and in their ability to be induced by in vitro culture with lipopolysaccharide (LPS). Surprisingly, because both are detectable on normal macrophages, these host-derived ligands are likely expressed constitutively, but are induced to higher levels of expression by stress or inflammation. In contrast to T22 and other known cell surface ligands for gammadelta T cells in mice and humans, expression of these smTCR-defined ligands does not depend on beta2-microglobulin, suggesting that they are not MHC class I or class I-like molecules.


Asunto(s)
Macrófagos Peritoneales/inmunología , Receptores de Antígenos de Linfocitos T gamma-delta/inmunología , Animales , Separación Celular , Antígenos de Histocompatibilidad Clase I/inmunología , Ligandos , Listeria/inmunología , Listeriosis/inmunología , Listeriosis/parasitología , Activación de Macrófagos/inmunología , Ratones , Ratones Endogámicos C57BL , Solubilidad , Factores de Tiempo
4.
mBio ; 9(1)2018 02 27.
Artículo en Inglés | MEDLINE | ID: mdl-29487235

RESUMEN

Listeria monocytogenes is a facultative intracellular bacterial pathogen that is frequently associated with food-borne infection. Of particular concern is the ability of L. monocytogenes to breach the blood-brain barrier, leading to life-threatening meningitis and encephalitis. The mechanisms used by bacterial pathogens to infect the brain are not fully understood. Here we show that L. monocytogenes is able to utilize vimentin for invasion of host cells. Vimentin is a type III intermediate filament protein within the cytosol but is also expressed on the host cell surface. We found that L. monocytogenes interaction with surface-localized vimentin promoted bacterial uptake. Furthermore, in the absence of vimentin, L. monocytogenes colonization of the brain was severely compromised in mice. The L. monocytogenes virulence factor InlF was found to bind vimentin and was necessary for optimal bacterial colonization of the brain. These studies reveal a novel receptor-ligand interaction that enhances infection of the brain by L. monocytogenes and highlights the importance of surface vimentin in host-pathogen interactions.IMPORTANCEListeria monocytogenes is an intracellular bacterial pathogen that is capable of invading numerous host cells during infection. L. monocytogenes can cross the blood-brain barrier, leading to life-threatening meningitis. Here we show that an L. monocytogenes surface protein, InlF, is necessary for optimal colonization of the brain in mice. Furthermore, in the absence of vimentin, a cytosolic intermediate filament protein that is also present on the surface of brain endothelial cells, colonization of the brain was significantly impaired. We further show that InlF binds vimentin to mediate invasion of host cells. This work identifies InlF as a bacterial surface protein with specific relevance for infection of the brain and underscores the significance of host cell surface vimentin interactions in microbial pathogenesis.


Asunto(s)
Encéfalo/parasitología , Endocitosis , Interacciones Huésped-Patógeno , Listeria monocytogenes/fisiología , Listeriosis/parasitología , Vimentina/metabolismo , Animales , Encéfalo/patología , Línea Celular , Modelos Animales de Enfermedad , Listeriosis/patología , Ratones , Ratas
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