Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Cryptococcus”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 991 records · Page 55Linked to original sources

Individual and environmental factors associated with infection due to Cryptococcus neoformans serotype D. French Cryptococcosis Study Group.

Differences between the two varieties of Cryptococcus neoformans with regard to geographic distribution, epidemiology, and even pathogenicity have been described. None between C. neoformans variety neoformans serotypes A and D have been reported. We reviewed 452 cases of cryptococcosis diagnosed in France, where serotype D is responsible for 21% of the infections. Univariate analysis showed that the frequency of serotype D infections was significantly higher among patients > 60 years of age, those born in Europe, those receiving corticosteroid therapy, and those who had skin lesions. In the multivariate analysis, the risk of serotype D infection was significantly higher for patients with skin lesions, those receiving corticosteroid therapy, and those living in certain regions in France. It was significantly lower for patients with meningitis those coming from Africa, and females. Among the 350 human immunodeficiency virus-infected patients, the risk was significantly higher for those > 60 years old, those who were intravenous drug abusers, and those with skin lesions. The risk was significantly lower for patients from Africa and in cases of meningitis. These results suggest that individual and environmental factors can be associated with the serotype of the infecting strain of C. neoformans.

AIDS-Related Opportunistic Infections↗

Asymptomatic solitary pulmonary nodules due to Cryptococcus neoformans in patients infected with human immunodeficiency virus.

We report the cases of three HIV-positive patients with solitary pulmonary nodules caused by Cryptococcus neoformans. Although human infection with C. neoformans occurs via the respiratory tract, isolated pulmonary infection in HIV-positive patients, in contrast with HIV-negative patients, has been thought to be relatively rare. When isolated pulmonary disease in HIV-infected patients, has been described, most of the patients have been symptomatic (symptoms have included fever, cough, and dyspnea). In addition, these patients have had diffuse interstitial infiltrates, alveolar infiltrates, or nodular infiltrates that have often been associated with hilar adenopathy and occasionally with pleural effusions. None of the patients in the previously reported series have had lesions described as small, asymptomatic, isolated pulmonary nodules.

Adult↗

Two cyclophilin A homologs with shared and distinct functions important for growth and virulence of Cryptococcus neoformans.

Cyclophilin A is the target of the immunosuppressant cyclosporin A (CsA) and is encoded by a single unique gene conserved from yeast to humans. In the pathogenic fungus Cryptococcus neoformans, two homologous linked genes, CPA1 and CPA2, were found to encode two conserved cyclophilin A proteins. In contrast to Saccharomyces cerevisiae, in which cyclophilin A mutations confer CsA resistance but few other phenotypes, cyclophilin A mutations conferred dramatic phenotypes in C. neoformans. The Cpa1 and Cpa2 cyclophilin A proteins play a shared role in cell growth, mating, virulence and CsA toxicity. The Cpa1 and Cpa2 proteins also have divergent functions. cpa1 mutants are inviable at 39 degrees C and attenuated for virulence, whereas cpa2 mutants are viable at 39 degrees C and fully virulent. cpa1 cpa2 double mutants exhibited synthetic defects in growth and virulence. Cyclophilin A active site mutants restored growth of cpa1 cpa2 mutants at ambient but not at higher temperatures, suggesting that the prolyl isomerase activity of cyclophilin A has an in vivo function.

Amino Acid Sequence↗

Calcineurin is required for virulence of Cryptococcus neoformans.

Cyclosporin A (CsA) and FK506 are antimicrobial, immunosuppressive natural products that inhibit signal transduction. In T cells and Saccharomyces cerevisiae, CsA and FK506 bind to the immunophilins cyclophilin A and FKBP12 and the resulting complexes inhibit the Ca2+-regulated protein phosphatase calcineurin. We find that growth of the opportunistic fungal pathogen Cryptococcus neoformans is sensitive to CsA and FK506 at 37 degrees C but not at 24 degrees C, suggesting that CsA and FK506 inhibit a protein required for C. neoformans growth at elevated temperature. Genetic evidence supports a model in which immunophilin-drug complexes inhibit calcineurin to prevent growth at 37 degrees C. The gene encoding the C. neoformans calcineurin A catalytic subunit was cloned and disrupted by homologous recombination. Calcineurin mutant strains are viable but do not survive in vitro conditions that mimic the host environment (elevated temperature, 5% CO2 or alkaline pH) and are no longer pathogenic in an animal model of cryptococcal meningitis. Introduction of the wild-type calcineurin A gene complemented these growth defects and restored virulence. Our findings demonstrate that calcineurin is required for C. neoformans virulence and may define signal transduction elements required for fungal pathogenesis that could be targets for therapeutic intervention.

Amino Acid Sequence↗

Calcineurin is required for hyphal elongation during mating and haploid fruiting in Cryptococcus neoformans.

Cryptococcus neoformans is a fungal pathogen that causes meningitis in immunocompromised patients. Its growth is sensitive to the immunosuppressants FK506 and cyclosporin, which inhibit the Ca2+- calmodulin-activated protein phosphatase calcineurin. Calcineurin is required for growth at 37 degrees C and virulence of C.neoformans. We found that calcineurin is also required for mating. FK506 blocks mating of C.neoformans via FKBP12-dependent inhibition of calcineurin, and mutants lacking calcineurin are bilaterally sterile. Calcineurin is not essential for the initial fusion event, but is required for hyphal elongation and survival of the heterokaryon produced by cell fusion. It is also required for hyphal elongation in diploid strains and during asexual haploid fruiting of MATalpha cells in response to nitrogen limitation. Because mating and haploid fruiting produce infectious basidiospores, our studies suggest a second link between calcineurin and virulence of C.neoformans. Calcine urin regulates filamentation and 37 degrees C growth via distinct pathways. Together with studies revealing that calcineurin mediates neurite extension and neutrophil migration in mammals, our findings indicate that calcineurin plays a conserved role in the control of cell morphology.

Calcineurin↗

Topoisomerase I is essential in Cryptococcus neoformans: role In pathobiology and as an antifungal target.

Topisomerase I is the target of several toxins and chemotherapy agents, and the enzyme is essential for viability in some organisms, including mice and drosophila. We have cloned the TOP1 gene encoding topoisomerase I from the opportunistic fungal pathogen Cryptococcus neoformans. The C. neoformans topoisomerase I contains a fungal insert also found in topoisomerase I from Candida albicans and Saccharomyces cerevisiae that is not present in the mammalian enzyme. We were unable to disrupt the topoisomerase I gene in this haploid organism by homologous recombination in over 8000 transformants analyzed. When a second functional copy of the TOP1 gene was introduced into the genome, the topoisomerase I gene could be readily disrupted by homologous recombination (at 7% efficiency). Thus, topoisomerase I is essential in C. neoformans. This new molecular strategy with C. neoformans may also be useful in identifying essential genes in other pathogenic fungi. To address the physiological and pathobiological functions of the enzyme, the TOP1 gene was fused to the GAL7 gene promoter. The resulting GAL7::TOP1 fusion gene was modestly regulated by carbon source in a serotype A strain of C. neoformans. Modest overexpression of topoisomerase I conferred sensitivity to heat shock, gamma-rays, and camptothecin. In contrast, alterations in topoisomerase I levels had no effect on the toxicity of a novel class of antifungal agents, the dicationic aromatic compounds (DACs), indicating that topoisomerase I is not the target of DACs. In an animal model of cryptococcal meningitis, topoisomerase I regulation was not critically important to established infection, but may impact on the initial stress response to infection. In summary, our studies reveal that topoisomerase I is essential in the human pathogen C. neoformans and represents a novel target for antifungal agents.

Amino Acid Sequence↗

The STE12alpha homolog is required for haploid filamentation but largely dispensable for mating and virulence in Cryptococcus neoformans.

Cryptococcus neoformans is a fungal pathogen that causes meningitis in immunocompromised hosts. The organism has a known sexual cycle, and strains of the MATalpha mating type are more virulent than isogenic MATa strains in mice, and they are more common in the environment and infected hosts. A C. neoformans homolog of the STE12 transcription factor that regulates mating, filamentation, and virulence in Saccharomyces cerevisiae and Candida albicans was identified previously, found to be encoded by a novel region of the MATalpha mating type locus, and shown to enhance filamentous growth when overexpressed. We have disrupted the C. neoformans STE12 gene in a pathogenic serotype A isolate. ste12 mutant strains exhibit a severe defect in filamentation and sporulation (haploid fruiting) in response to nitrogen starvation. In contrast, ste12 mutant strains have only modest mating defects and are fully virulent in two animal models compared to the STE12 wild-type strain. In genetic epistasis experiments, STE12 functions in a MAP kinase cascade to regulate fruiting, but not mating. Thus, the C. neoformans STE12alpha transcription factor homolog plays a specialized function in haploid fruiting, but it is dispensable or redundant for mating and virulence. The association of the MATalpha locus with virulence may involve additional genes, and other transcription factors that regulate mating and virulence remain to be identified.

Amino Acid Sequence↗

Isolation and characterization of the Cryptococcus neoformans MATa pheromone gene.

Cryptococcus neoformans is a heterothallic basidiomycete with two mating types, MATa and MATalpha. The mating pathway of this fungus has a number of conserved genes, including a MATalpha-specific pheromone (MFalpha1). A modified differential display strategy was used to identify a gene encoding the MATa pheromone. The gene, designated MFa1, is 42 amino acids in length and contains a conserved farnesylation motif. MFa1 is present in three linked copies that span a 20-kb fragment of MATa-specific DNA and maps to the MAT-containing chromosome. Transformation studies showed that MFa1 induced filament formation only in MATalpha cells, demonstrating that MFa1 is functionally conserved. Sequence analysis of the predicted Mfa1 and Mfalpha1 proteins revealed that, in contrast to other fungi such as Saccharomyces cerevisiae, the C. neoformans pheromone genes are structurally and functionally conserved. However, unlike the MFalpha1 gene, which is found in MATalpha strains of both varieties of C. neoformans, MFa1 is specific for the neoformans variety of C. neoformans.

3' Untranslated Regions↗

Estimating the spontaneous mutation rate of loss of sex in the human pathogenic fungus Cryptococcus neoformans.

Few events have evolutionary consequences as pervasive as changes in reproductive behavior. Among those changes, the loss of the ability to undergo sexual reproduction is probably the most profound. However, little is known about the rate of loss of sex. Here I describe an experimental system using the fungus Cryptococcus neoformans and provide the first empirical estimate of the spontaneous mutation rate of loss of sex in fungi. Two critical steps in sexual reproduction in C. neoformans were examined: mating and filamentation. Mating, the fusion of cells of opposite sexes, is a universal first step in eukaryotic sexual reproduction. In contrast, filamentation, a prerequisite process preceding meiosis and sexual spore development, is restricted to C. neoformans and a few other fungal species. After approximately 600 mitotic divisions under favorable asexual growth conditions, mean abilities for mating and filamentation decreased significantly by >67 and 24%, respectively. Similarly, though statistically not significant, the mean vegetative growth rates also decreased and among the mutation accumulation lines, the vegetative growth rates were negatively correlated to the mating ability. The estimated mutation rates to decreases in mating ability and filamentation were in excess of 0.0172 and 0.0036, respectively. The results show that C. neoformans can be a highly attractive model for analyses of reproductive system evolution in fungi.

Cryptococcus neoformans↗

Mitochondria are inherited from the MATa parent in crosses of the basidiomycete fungus Cryptococcus neoformans.

Previous studies demonstrated that mitochondrial DNA (mtDNA) was uniparentally transmitted in laboratory crosses of the pathogenic yeast Cryptococcus neoformans. To begin understanding the mechanisms, this study examined the potential role of the mating-type locus on mtDNA inheritance in C. neoformans. Using existing isogenic strains (JEC20 and JEC21) that differed only at the mating-type locus and a clinical strain (CDC46) that possessed a mitochondrial genotype different from JEC20 and JEC21, we constructed strains that differed only in mating type and mitochondrial genotype. These strains were then crossed to produce hyphae and sexual spores. Among the 206 single spores analyzed from six crosses, all but one inherited mtDNA from the MATa parents. Analyses of mating-type alleles and mtDNA genotypes of natural hybrids from clinical and natural samples were consistent with the hypothesis that mtDNA is inherited from the MATa parent in C. neoformans. To distinguish two potential mechanisms, we obtained a pair of isogenic strains with different mating-type alleles, mtDNA types, and auxotrophic markers. Diploid cells from mating between these two strains were selected and 29 independent colonies were genotyped. These cells did not go through the hyphal stage or the meiotic process. All 29 colonies contained mtDNA from the MATa parent. Because no filamentation, meiosis, or spore formation was involved in generating these diploid cells, our results suggest a selective elimination of mtDNA from the MATalpha parent soon after mating. To our knowledge, this is the first demonstration that mating type controls mtDNA inheritance in fungi.

Crosses, Genetic↗

Molecular analysis of a novel family of complex glycoinositolphosphoryl ceramides from Cryptococcus neoformans: structural differences between encapsulated and acapsular yeast forms.

Complex glycoinositolphosphoryl ceramides (GIPCs) have been purified from a pathogenic encapsulated wild-type (WT) strain of Cryptococcus neoformans var. neoformans and from an acapsular mutant (Cap67). The structures of the GIPCs were determined by a combination of tandem mass spectrometry, nuclear magnetic resonance spectroscopy, methylation analysis, gas chromatography-mass spectrometry, and chemical degradation. The main GIPC from the WT strain had the structure Manp(alpha1-3)[Xylp(beta1-2)] Manp(alpha1-4)Galp(beta1-6)Manp(alpha1-2)Ins-1-phosphoryl ceramide (GIPC A), whereas the compounds from the acapsular mutant were more heterogeneous in their glycan chains, and variants with Manp(alpha1-6) (GIPC B), Manp(alpha1-6) Manp(alpha1-6) (GIPC C), and Manp(alpha1-2)Manp(alpha1-6)Manp(alpha1-6) (GIPC D) substituents linked to the nonreducing terminal mannose residue found in the WT GIPC A were abundant. The ceramide moieties of C. neoformans GIPCs were composed of a C(18) phytosphingosine long-chain base mainly N-acylated with 2-hydroxy-tetracosanoic acid in the WT GIPC while in the acapsular Cap67 mutant GIPCs, as well as 2-hydroxy-tetracosanoic acid, the unusual 2,3-dihydroxy-tetracosanoic acid was characterized. In addition, structural analysis revealed that the amount of GIPC in the WT cells was fourfold less of that in the acapsular mutant.

Carbohydrate Conformation↗

Killing of Cryptococcus neoformans by human peripheral blood mononuclear cells stimulated in culture.

Since cell-mediated immunity (CMI) is critical for host defenses against the encapsulated fungus Cryptococcus neoformans, the production of human antifungal effector cells as a consequence of the CMI response was investigated. Peripheral blood mononuclear cells (PBMC) were stimulated in culture with killed C. neoformans. Stimulated (but not unstimulated) PBMC killed a subsequent inoculum of live encapsulated organisms, with maximal killing seen after 3-7 days. Killing required the presence of both adherent and nonadherent stimulated PBMC and was enhanced by anticapsular antibody. In contrast, unstimulated PBMC and the adherent fraction of stimulated PBMC killed an isogenic acapsular strain of C. neoformans. These data suggest that the CMI response controls cryptococcosis by eliciting two populations of fungicidal cells acting synergistically. Moreover, capsule, by thwarting the ability of unstimulated PBMC to kill C. neoformans, seems to obligate the host to mount an immune response to generate fungicidal cells.

Cell Division↗

Antibodies elicited by a Cryptococcus neoformans-tetanus toxoid conjugate vaccine have the same specificity as those elicited in infection.

The antibody responses of BALB/c mice to serotype A Cryptococcus neoformans capsular polysaccharide (CNPS) were compared after cryptococcal infection and immunization with a serotype A glucuronoxylomannan-tetanus toxoid conjugate (GXM-TT). Infection rarely resulted in a rise of serum antibody titer to CNPS. In contrast, mice immunized with GXM-TT produced serum IgM and IgG to CNPS. Six IgM and one IgG1 monoclonal antibodies (MAbs) were generated from the spleen of one infected mouse. Nine IgM, 1 IgG3, 16 IgG1, and 7 IgA MAbs were generated from the spleen of one GXM-TT-immunized mouse. All MAbs generated from both mice bound to the GXM fraction of the capsular polysaccharide. For some MAbs, de-O-acetylation of serotype A GXM abolished or greatly reduced MAb binding compared with the native GXM. All MAbs reacted with CNPS from C. neoformans serotypes A-D. MAbs generated from the infected mouse competitively inhibited the binding of MAbs generated from the GXM-TT-immunized mouse. These results indicate that some antibodies elicited by infection with C. neoformans or by immunization with GXM-TT bind to the same antigenic determinant in the GXM.

Animals↗

Binding of unopsonized Cryptococcus neoformans by human bronchoalveolar macrophages: inhibition by a large-molecular-size serum component.

Infection with Cryptococcus neoformans usually begins after inhalation of airborne organisms. Since levels of opsonins in the alveolar space may be low, the ability of human bronchoalveolar macrophages to bind C. neoformans in the presence and absence of opsonins was studied. Bronchoalveolar macrophages bound unopsonized C. neoformans. Surprisingly, component(s) in pooled human serum (PHS) inhibited binding, as evidenced by 26% and 71% inhibition of binding when 20% PHS and heat-inactivated PHS (HI-PHS), respectively, were added to the system. Separation of PHS by molecular size revealed that the inhibitory component had an apparent molecular weight greater than 10(6) and was inhibitory at nanomolar concentrations. PHS stimulated and HI-PHS had no effect on binding of acapsular C. neoformans and zymosan particles to bronchoalveolar macrophages. These data demonstrate that bronchoalveolar macrophages can bind unopsonized, encapsulated C. neoformans, but that serum component(s) inhibits binding.

Bacterial Adhesion↗

Identification by random amplification of polymorphic DNA of a common molecular type of Cryptococcus neoformans var. neoformans in patients with AIDS or other immunosuppressive conditions.

Sixty clinical isolates of Cryptococcus neoformans var. neoformans were analyzed by random amplification of polymorphic DNA (RAPD) using 12- to 22-mer primers in pairs. Five major profiles, which clearly distinguished between serotypes A (profiles I-III), AD (profile IV), and D (profile V), were identified. Forty-two of 58 serotype A isolates were assigned to profile I, 13 to profile II, and 3 to profile III. Profile I compromised 5 subtypes (profiles Ia-Ie), with 37 to 42 isolates in profile Ia. Twenty-seven of 28 isolates from patients with AIDS belonged to profile Ia (P<.001), as did 7 of 10 isolates from otherwise immunocompromised patients. Isolates from immunocompetent hosts were broadly distributed (profile I, 8 isolates; profile II, 10 isolates; profile III, 2 isolates). RAPD profiles were independent of body site and geographic origin of isolates. Isolates pairs from 3 patients produced identical profiles. A predominant genetic profile among serotype A strains from AIDS patients has not been reported previously.

AIDS-Related Opportunistic Infections↗

J774 murine macrophage-like cell interactions with Cryptococcus neoformans in the presence and absence of opsonins.

The interaction of Cryptococcus neoformans with the murine macrophage-like cell line J774.16 was studied in the presence and absence of monoclonal antibodies (MAbs) to the capsular polysaccharide glucuronoxylomannan (GXM). In the absence of MAb 2H1 to GXM, coincubation of J774.16 cells with C. neoformans reduced fungal colony-forming units in only 26.6% of 21 independent experiments. In the presence of MAb 2H1, coincubation of J774.16 cells with C. neoformans reduced fungal colony-forming units in > 95% of experiments. Comparison of the relative efficacy of two IgG1 MAbs revealed that the higher affinity MAb was more effective at low concentrations. Antibody-mediated reductions of C. neoformans colony-forming units by J774.16 cells occurred despite inhibition of nitric oxide synthase, addition of reactive oxygen intermediate scavengers, or the use of a superoxide-deficient J774 mutant line.

Animals↗

Molecular subtypes and antifungal susceptibilities of serial Cryptococcus neoformans isolates in human immunodeficiency virus-associated Cryptococcosis. Cryptococcal Disease Active Surveillance Group.

Serial isolates of Cryptococcus neoformans from 33 human immunodeficiency virus-infected patients with cryptococcosis were analyzed to determine whether persistence might result from reinfection with a new cryptococcal strain or acquisition of antifungal resistance. Isolates were subtyped by multilocus enzyme electrophoresis (MEE), electrophoretic karyotyping (EK), random-amplified polymorphic DNA (RAPD), and the CNRE-1 DNA probe, MICs of amphotericin B, fluconazole, and 5-fluorocytosine were determined. No changes in MEE or RAPD subtypes were detected in serial isolates from any patient. Isolates from 8 patients (24%) showed alterations in EK only (mobility change in two or more bands) but not with any other subtyping method. MICs did not change significantly in isolates from 30 patients. In 1 case, the fluconazole MIC increased stepwise over 18 months, suggesting development of resistance. These overall invariant subtyping and MIC results confirm previous studies suggesting that persistent cryptococcal infection is due to relapse rather than reinfection or antifungal drug resistance.

AIDS-Related Opportunistic Infections↗

Phospholipase activity in Cryptococcus neoformans: a new virulence factor?

Fifty isolates of Cryptococcus neoformans were examined for extracellular phospholipase production after inoculation onto egg yolk agar; 49 produced a pericolonial precipitate indicative of phospholipase activity. Phospholipase B (PLB), lysophospholipase, and lysophospholipase-transacylase activities were identified by radiometric analysis in supernatants from 4 clinical isolates. The ratio of colony diameter to colony plus precipitate on agar (Pz) correlated with PLB activity. Phospholipase production was similar in 12 environmental and 13 clinical isolates of C. neoformans var. gattii. Environmental strains of C. neoformans var. neoformans (n = 8) produced more phospholipase at 72 h than did 17 clinical isolates (mean Pz, 0.57 vs. 0.72; P < .01); however, Pz values were similar at 96 h. Quantitation of cryptococci in the lungs and brains of BALB/c mice inoculated intravenously with 4 strains expressing high, intermediate, or low phospholipase activity revealed a correlation between phospholipase activity and virulence. Phospholipases secreted by C. neoformans may be implicated in virulence.

Acyltransferases↗