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1.
PLoS Pathog ; 19(11): e1011747, 2023 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-37910490

RESUMEN

Buruli ulcer is an emerging chronic infectious skin disease caused by Mycobacterium ulcerans. Mycolactone, an exotoxin produced by the bacterium, is the only identified virulence factor so far, but the functions of this toxin and the mechanisms of disease progression remain unclear. By interfering Sec61 translocon, mycolactone inhibits the Sec61-dependent co-translational translocation of newly synthesized proteins, such as induced cytokines and immune cell receptors, into the endoplasmic reticulum. However, in regard to IL-1ß, which is secreted by a Sec61-independent mechanism, mycolactone has been shown to induce IL-1ß secretion via activation of inflammasomes. In this study, we clarified that cytokine induction, including that of IL-1ß, in infected macrophages was suppressed by mycolactone produced by M. ulcerans subsp. shinshuense, despite the activation of caspase-1 through the inflammasome activation triggered in a manner independent of mycolactone. Intriguingly, mycolactone suppressed the expression of proIL-1ß as well as TNF-α at the transcriptional level, suggesting that mycolactone of M. ulcerans subsp. shinshuense may exert additional inhibitory effect on proIL-1ß expression. Remarkably, constitutively produced IL-18 was cleaved and mature IL-18 was actually released from macrophages infected with the causative mycobacterium. IL-18-deficient mice infected subcutaneously with M. ulcerans exhibited exacerbated skin inflammation during the course of disease progression. On the other hand, IL-1ß controls bacterial multiplication in skin tissues. These results provide information regarding the mechanisms and functions of the induced cytokines in the pathology of Buruli ulcer.


Asunto(s)
Úlcera de Buruli , Mycobacterium ulcerans , Animales , Ratones , Úlcera de Buruli/microbiología , Inflamasomas/metabolismo , Interleucina-18/metabolismo , Mycobacterium ulcerans/metabolismo , Macrólidos/metabolismo , Citocinas/metabolismo , Progresión de la Enfermedad , Inflamación
2.
Eur J Immunol ; 53(11): e2350455, 2023 11.
Artículo en Inglés | MEDLINE | ID: mdl-37471504

RESUMEN

Caspase activation results in pyroptosis, an inflammatory cell death that contributes to several inflammatory diseases by releasing inflammatory cytokines and cellular contents. Fusobacterium nucleatum is a periodontal pathogen frequently detected in human cancer and inflammatory bowel diseases. Studies have reported that F. nucleatum infection leads to NLRP3 activation and pyroptosis, but the precise activation process and disease association remain poorly understood. This study demonstrated that F. nucleatum infection exacerbates acute colitis in mice and activates pyroptosis through caspase-11-mediated gasdermin D cleavage in macrophages. Furthermore, F. nucleatum infection in colitis mice induces the enhancement of IL-1⍺ secretion from the colon, affecting weight loss and severe disease activities. Neutralization of IL-1⍺ protects F. nucleatum infected mice from severe colitis. Therefore, F. nucleatum infection facilitates inflammation in acute colitis with IL-1⍺ from colon tissue by activating noncanonical inflammasome through gasdermin D cleavage.


Asunto(s)
Colitis , Inflamasomas , Humanos , Animales , Ratones , Inflamasomas/metabolismo , Fusobacterium nucleatum/metabolismo , Gasderminas , Colitis/inducido químicamente , Caspasas/metabolismo , Proteína con Dominio Pirina 3 de la Familia NLR/genética , Proteína con Dominio Pirina 3 de la Familia NLR/metabolismo
3.
Nat Commun ; 12(1): 2085, 2021 04 09.
Artículo en Inglés | MEDLINE | ID: mdl-33837194

RESUMEN

Long-term infection of the stomach with Helicobacter pylori can cause gastric cancer. However, the mechanisms by which the bacteria adapt to the stomach environment are poorly understood. Here, we show that a small non-coding RNA of H. pylori (HPnc4160, also known as IsoB or NikS) regulates the pathogen's adaptation to the host environment as well as bacterial oncoprotein production. In a rodent model of H. pylori infection, the genomes of bacteria isolated from the stomach possess an increased number of T-repeats upstream of the HPnc4160-coding region, and this leads to reduced HPnc4160 expression. We use RNA-seq and iTRAQ analyses to identify eight targets of HPnc4160, including genes encoding outer membrane proteins and oncoprotein CagA. Mutant strains with HPnc4160 deficiency display increased colonization ability of the mouse stomach, in comparison with the wild-type strain. Furthermore, HPnc4160 expression is lower in clinical isolates from gastric cancer patients than in isolates derived from non-cancer patients, while the expression of HPnc4160's targets is higher in the isolates from gastric cancer patients. Therefore, the small RNA HPnc4160 regulates H. pylori adaptation to the host environment and, potentially, gastric carcinogenesis.


Asunto(s)
Adaptación Fisiológica/genética , Infecciones por Helicobacter/patología , Helicobacter pylori/fisiología , ARN Bacteriano/metabolismo , ARN Pequeño no Traducido/metabolismo , Neoplasias Gástricas/microbiología , Animales , Antígenos Bacterianos/genética , Proteínas Bacterianas/genética , Carcinogénesis , Modelos Animales de Enfermedad , Mucosa Gástrica/microbiología , Mucosa Gástrica/patología , Regulación Bacteriana de la Expresión Génica/fisiología , Genoma Bacteriano/genética , Gerbillinae , Infecciones por Helicobacter/microbiología , Helicobacter pylori/aislamiento & purificación , Helicobacter pylori/patogenicidad , Interacciones Microbiota-Huesped , Humanos , Masculino , Mutación , ARN Bacteriano/genética , ARN Pequeño no Traducido/genética , RNA-Seq , Neoplasias Gástricas/patología
4.
Biochem Biophys Res Commun ; 525(3): 806-811, 2020 05 07.
Artículo en Inglés | MEDLINE | ID: mdl-32164943

RESUMEN

Helicobacter pylori, a pathogenic bacterium that colonizes in the human stomach, harbors DNA repair genes to counter the gastric environment during chronic infection. In addition, H. pylori adapts to the host environment by undergoing antigenic phase variation caused by genomic mutations. The emergence of mutations in nucleotide sequences is one of the major factors underlying drug resistance and genetic diversity in bacteria. However, it is not clear how DNA repair genes contribute to driving the genetic change of H. pylori during chronic infection. To elucidate the physiological roles of DNA repair genes, we generated DNA repair-deficient strains of H. pylori (ΔuvrA, ΔuvrB, ΔruvA, Δnth, ΔmutY, ΔmutS, and Δung). We performed susceptibility testing to rifampicin in vitro and found that ΔmutY exhibited the highest mutation frequency among the mutants. The number of bacteria colonizing the stomach was significantly lower with ΔmutY strain compared with wild-type strains in a Mongolian gerbil model of H. pylori infection. Furthermore, we performed a genomic sequence analysis of the strains isolated from the Mongolian gerbil stomachs eight weeks after infection. We found that the isolated ΔmutY strains exhibited a high frequency of spontaneous G:C to T:A mutations. However, the frequency of phase variations in the ΔmutY strain was almost similar to the wild-type strain. These results suggest that MutY may play a role in modes of gastric environmental adaptation distinct from phase variation.


Asunto(s)
Adaptación Fisiológica , ADN Glicosilasas/genética , Helicobacter pylori/genética , Mutación/genética , Estómago/microbiología , Animales , Proteínas Bacterianas/genética , Reparación del ADN/genética , Modelos Animales de Enfermedad , Gerbillinae , Infecciones por Helicobacter/microbiología , Helicobacter pylori/crecimiento & desarrollo , Tasa de Mutación , FN-kappa B/metabolismo
5.
Sci Rep ; 10(1): 3251, 2020 02 24.
Artículo en Inglés | MEDLINE | ID: mdl-32094510

RESUMEN

Group A Streptococcus (GAS) secretes deoxyribonucleases and evades neutrophil extracellular killing by degrading neutrophil extracellular traps (NETs). However, limited information is currently available on the interaction between GAS and NETs in the pathogenicity of GAS pharyngitis. In this study, we modified a mouse model of GAS pharyngitis and revealed an essential role for DNase in this model. After intranasal infection, the nasal mucosa was markedly damaged near the nasal cavity, at which GAS was surrounded by neutrophils. When neutrophils were depleted from mice, GAS colonization and damage to the nasal mucosa were significantly decreased. Furthermore, mice infected with deoxyribonuclease knockout GAS mutants (∆spd, ∆endA, and ∆sdaD2) survived significantly better than those infected with wild-type GAS. In addition, the supernatants of digested NETs enhanced GAS-induced cell death in vitro. Collectively, these results indicate that NET degradation products may contribute to the establishment of pharyngeal infection caused by GAS.


Asunto(s)
ADN/química , Trampas Extracelulares , Faringitis/microbiología , Faringe/microbiología , Infecciones Estreptocócicas/patología , Animales , Apoptosis , Desoxirribonucleasas/metabolismo , Modelos Animales de Enfermedad , Humanos , Macrófagos/microbiología , Masculino , Ratones , Ratones Endogámicos C57BL , Mutación , Neutrófilos/microbiología , Reacción en Cadena en Tiempo Real de la Polimerasa , Streptococcus pyogenes
6.
Bioorg Med Chem Lett ; 19(13): 3559-63, 2009 Jul 01.
Artículo en Inglés | MEDLINE | ID: mdl-19467867

RESUMEN

In this study, the synthesis and evaluation of a number of esters of CS-758 as injectable prodrugs are described. Phosphoryl ester 1a was soluble in water (>30mg/mL) and was converted to CS-758 in human liver microsome. It was also converted to CS-758 in rats after iv administration, wherein the bioavailability of CS-758 was 53%. Compound 1a (iv) reduced the viable cell counts in kidneys in a murine systemic Candida albicans infection model, wherein the effect was comparable to or slightly superior to that of CS-758 (po). The prodrug 1a proved to be a promising injectable antifungal agent whose further evaluation is warranted.


Asunto(s)
Antifúngicos/química , Profármacos/química , Triazoles/química , Animales , Antifúngicos/síntesis química , Antifúngicos/farmacología , Candidiasis/tratamiento farmacológico , Humanos , Ratones , Microsomas Hepáticos/metabolismo , Profármacos/síntesis química , Profármacos/farmacología , Ratas , Triazoles/farmacología , Agua/química
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