Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Phagocytes from Mice Lacking the Sts Phosphatases Have an Enhanced Antifungal Response to Candida albicans

View through CrossRef
ABSTRACTMice lacking expression of the homologous phosphatases Sts-1 and Sts-2 (Sts−/−mice) are resistant to disseminated candidiasis caused by the fungal pathogenCandida albicans. To better understand the immunological mechanisms underlying the enhanced resistance of Sts−/−mice, we examined the kinetics of fungal clearance at early time points. In contrast to the rapidC. albicansgrowth seen in normal kidneys during the first 24 h postinfection, we observed a reduction in kidney fungal CFU within Sts−/−mice beginning at 12 to 18 h postinfection. This corresponds to the time period when large numbers of innate leukocytes enter the renal environment to counter the infection. Because phagocytes of the innate immune system are important for host protection against pathogenic fungi, we evaluated responses of bone marrow leukocytes. Relative to wild-type cells, Sts−/−marrow monocytes and bone marrow-derived dendritic cells (BMDCs) displayed a heightened ability to inhibitC. albicansgrowthex vivo. This correlated with significantly enhanced production of reactive oxygen species (ROS) by Sts−/−BMDCs downstream of Dectin-1, a C-type lectin receptor that plays a critical role in stimulating host responses to fungi. We observed no visible differences in the responses of other antifungal effector pathways, including cytokine production and inflammasome activation, despite enhanced activation of the Syk tyrosine kinase downstream of Dectin-1 in Sts−/−cells. Our results highlight a novel mechanism regulating the immune response to fungal infections. Further understanding of this regulatory pathway could aid the development of therapeutic approaches to enhance protection against invasive candidiasis.IMPORTANCESystemic candidiasis caused by fungalCandidaspecies is becoming an increasingly serious medical problem for which current treatment is inadequate. Recently, the Sts phosphatases were established as key regulators of the host antifungal immune response. In particular, genetic inactivation of Sts significantly enhanced survival of mice infected intravenously withCandida albicans. The Sts−/−in vivoresistance phenotype is associated with reduced fungal burden and an absence of inflammatory lesions. To understand the underlying mechanisms, we studied phagocyte responses. Here, we demonstrate that Sts−/−phagocytes have heightened responsiveness toC. albicanschallenge relative to wild-type cells. Our data indicate the Sts proteins negatively regulate phagocyte activation via regulating selective elements of the Dectin-1–Syk tyrosine kinase signaling axis. These results suggest that phagocytes lacking Sts respond to fungal challenge more effectively and that this enhanced responsiveness partially underlies the profound resistance of Sts−/−mice to systemic fungal challenge.
Title: Phagocytes from Mice Lacking the Sts Phosphatases Have an Enhanced Antifungal Response to Candida albicans
Description:
ABSTRACTMice lacking expression of the homologous phosphatases Sts-1 and Sts-2 (Sts−/−mice) are resistant to disseminated candidiasis caused by the fungal pathogenCandida albicans.
To better understand the immunological mechanisms underlying the enhanced resistance of Sts−/−mice, we examined the kinetics of fungal clearance at early time points.
In contrast to the rapidC.
 albicansgrowth seen in normal kidneys during the first 24 h postinfection, we observed a reduction in kidney fungal CFU within Sts−/−mice beginning at 12 to 18 h postinfection.
This corresponds to the time period when large numbers of innate leukocytes enter the renal environment to counter the infection.
Because phagocytes of the innate immune system are important for host protection against pathogenic fungi, we evaluated responses of bone marrow leukocytes.
Relative to wild-type cells, Sts−/−marrow monocytes and bone marrow-derived dendritic cells (BMDCs) displayed a heightened ability to inhibitC.
 albicansgrowthex vivo.
This correlated with significantly enhanced production of reactive oxygen species (ROS) by Sts−/−BMDCs downstream of Dectin-1, a C-type lectin receptor that plays a critical role in stimulating host responses to fungi.
We observed no visible differences in the responses of other antifungal effector pathways, including cytokine production and inflammasome activation, despite enhanced activation of the Syk tyrosine kinase downstream of Dectin-1 in Sts−/−cells.
Our results highlight a novel mechanism regulating the immune response to fungal infections.
Further understanding of this regulatory pathway could aid the development of therapeutic approaches to enhance protection against invasive candidiasis.
IMPORTANCESystemic candidiasis caused by fungalCandidaspecies is becoming an increasingly serious medical problem for which current treatment is inadequate.
Recently, the Sts phosphatases were established as key regulators of the host antifungal immune response.
In particular, genetic inactivation of Sts significantly enhanced survival of mice infected intravenously withCandida albicans.
The Sts−/−in vivoresistance phenotype is associated with reduced fungal burden and an absence of inflammatory lesions.
To understand the underlying mechanisms, we studied phagocyte responses.
Here, we demonstrate that Sts−/−phagocytes have heightened responsiveness toC.
 albicanschallenge relative to wild-type cells.
Our data indicate the Sts proteins negatively regulate phagocyte activation via regulating selective elements of the Dectin-1–Syk tyrosine kinase signaling axis.
These results suggest that phagocytes lacking Sts respond to fungal challenge more effectively and that this enhanced responsiveness partially underlies the profound resistance of Sts−/−mice to systemic fungal challenge.

Related Results

Hefebefunde bei Reihenuntersuchungen an Soldaten der Bundeswehr
Hefebefunde bei Reihenuntersuchungen an Soldaten der Bundeswehr
ZusammenfassungBei Reihenuntersuchungen an 1325 Soldaten wurde die Sproßpilzbesiedlung der Mund‐böhle (1325 Abstriche), der Analregion (949 Abstriche), des Penis (1325 Abklatsch‐Ku...
Prevalence of Candidemia with Susceptibility Pattern in a Tertiary Care Hospital in North India
Prevalence of Candidemia with Susceptibility Pattern in a Tertiary Care Hospital in North India
BACKGROUND Blood stream infections (BSI) caused by various candida species have been reported from many countries worldwide and are a significant cause of morbidity and mortality i...
Uji daya hambat ekstrak daun mengkudu (Morinda citrifolia L.) terhadap pertumbuhan Candida albicans secara in vitro
Uji daya hambat ekstrak daun mengkudu (Morinda citrifolia L.) terhadap pertumbuhan Candida albicans secara in vitro
Abstract: Candida albicans is a normal flora of the mouth, respiratory tract, gastrointestinal tract and the female genital but it becomes pathogen if there is a predisposing facto...
In vitro susceptibility testing of Candida species isolated from blood stream infections to five conventional antifungal drugs
In vitro susceptibility testing of Candida species isolated from blood stream infections to five conventional antifungal drugs
Candida is an opportunistic fungal pathogen which can cause fatal bloodstream infections (BSIs) in immunocompromised and immunodeficient persons. In this study, the susceptibility ...

Back to Top