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Transcriptional network of multiple capsule and melanin genes governed by the Cryptococcus neoformans cyclic AMP cascade.

Cryptococcus neoformans is an opportunistic human fungal pathogen that elaborates several virulence attributes, including a polysaccharide capsule and melanin pigments. A conserved Galpha protein/cyclic AMP (cAMP) pathway controls melanin and capsule production. To identify targets of this pathway, we used an expression profiling approach to define genes that are transcriptionally regulated by the Galpha protein Gpa1. This approach revealed that Gpa1 transcriptionally regulates multiple genes involved in capsule assembly and identified two additional genes with a marked dependence on Gpa1 for transcription. The first is the LAC1 gene, encoding the laccase enzyme that catalyzes a rate-limiting step in diphenol oxidation and melanin production. The second gene identified (LAC2) is adjacent to the LAC1 gene and encodes a second laccase that shares 75% nucleotide identity with LAC1. Similar to the LAC1 gene, LAC2 is induced in response to glucose deprivation. However, LAC2 basal transcript levels are much lower than those for LAC1. Accordingly, a lac2 mutation results in only a modest delay in melanin formation. LAC2 overexpression suppresses the melanin defects of gpa1 and lac1 mutants and partially restores virulence of these strains. These studies provide mechanistic insights into the regulation of capsule and melanin production by the C. neoformans cAMP pathway and demonstrate that multiple laccases contribute to C. neoformans melanin production and pathogenesis.

Animals↗

Glucosylceramide synthase is an essential regulator of pathogenicity of Cryptococcus neoformans.

The pathogenic fungus Cryptococcus neoformans infects humans upon inhalation and causes the most common fungal meningoencephalitis in immunocompromised subjects worldwide. In the host, C. neoformans is found both intracellularly and extracellularly, but how these two components contribute to the development of the disease is largely unknown. Here we show that the glycosphingolipid glucosylceramide (GlcCer), which is present in C. neoformans, was essential for fungal growth in host extracellular environments, such as in alveolar spaces and in the bloodstream, which are characterized by a neutral/alkaline pH, but not in the host intracellular environment, such as in the phagolysosome of macrophages, which is characteristically acidic. Indeed, a C. neoformans mutant strain lacking GlcCer did not grow in vitro at a neutral/alkaline pH, yet it had no growth defect at an acidic pH. The mechanism by which GlcCer regulates alkali tolerance was by allowing the transition of C. neoformans through the cell cycle. This study establishes C. neoformans GlcCer as a key virulence factor of cryptococcal pathogenicity, with important implications for future development of new antifungal strategies.

Animals↗

Temperature-regulated transcription in the pathogenic fungus Cryptococcus neoformans.

The basidiomycete fungus Cryptococcus neoformans is an opportunistic pathogen of worldwide importance that causes meningitis, leading to death in immunocompromised individuals. Unlike many basidiomycete fungi, C. neoformans is thermotolerant, and its ability to grow at 37 degrees C is considered to be a virulence factor. We used serial analysis of gene expression (SAGE) to characterize the transcriptomes of C. neoformans strains that represent two varieties with different polysaccharide capsule serotypes. These include a serotype D strain of the C. neoformans variety neoformans and a serotype A strain of variety grubii. In this report, we describe the construction and characterization of SAGE libraries from each strain grown at 25 degrees C and 37 degrees C. The SAGE data reveal transcriptome differences between the two strains, even at this early stage of analysis, and identify sets of genes with higher transcript levels at 25 degrees C or 37 degrees C. Notably, growth at the lower temperature increased transcript levels for histone genes, indicating a general influence of temperature on chromatin structure. At 37 degrees C, we noted elevated transcript levels for several genes encoding heat shock proteins and translation machinery. Some of these genes may play a role in temperature-regulated phenotypes in C. neoformans, such as the adaptation of the fungus to growth in the host and the dimorphic transition between budding and filamentous growth. Overall, this work provides the most comprehensive gene expression data available for C. neoformans; this information will be a critical resource both for gene discovery and genome annotation in this pathogen.

Blotting, Northern↗

Insights into mechanisms of antibody-mediated immunity from studies with Cryptococcus neoformans.

At first glance Cryptococcus neoformans appears an unlikely microbe to provide a new understanding of mechanisms of antibody-mediated immunity (AMI), because it is a facultative intracellular fungal pathogen for which the role of naturally acquired AMI in host defense is uncertain. However, numerous studies have now established that certain antibodies (Abs) against C. neoformans are protective in certain hosts. Studies with Abs to C. neoformans have provided new insights into AMI and generated new precedents with implications for other pathogens. The following concepts have emerged: 1) susceptibility to C. neoformans may be related to qualitative and quantitative aspects of the Ab response; 2) protective monoclonal Abs can be generated against pathogens even when the role of humoral immunity is uncertain; 3) Abs to C. neoformans mediate protection by immunomodulatory effects, thereby linking Ab efficacy to the overall host immune response; 4) Ab efficacy is critically dependent on fine specificity, which in turn is affected by immunoglobulin variable region usage, somatic mutation and constant region usage; 5) the efficacy of passive Ab therapy is a function of Ab dose and infecting innoculum, with lack of efficacy at the extremes of Ab concentration; 6) Ab-mediated toxicity resulting from antigen-Ab complex-induced release of platelet activating factor is isotype dependent. Observations with C. neoformans have stimulated a reappraisal of the role of humoral immunity for other pathogens and highlighted the limitations in current methods of assessing the role of Ab in host defense.

Animals↗

Radial mass density, charge, and epitope distribution in the Cryptococcus neoformans capsule.

Exposure of Cryptococcus neoformans cells to gamma radiation results in a gradual release of capsular polysaccharide, in a dose-dependent manner. This method allows the systematic exploration of different capsular regions. Using this methodology, capsule density was determined to change according to the radial distribution of glucuronoxylomannan and total polysaccharide, becoming denser at the inner regions of the capsule. Scanning electron microscopy of cells following gamma radiation treatment confirmed this finding. The zeta potential of the capsule also increased as the capsule size decreased. However, neither charge nor density differences were correlated with any change in sugar composition (xylose, mannose, and glucuronic acid) in the different capsular regions, since the proportions of these sugars remained constant throughout the capsule. Analysis of the capsular antigenic properties by monoclonal antibody binding and Scatchard analysis revealed fluctuations in the binding affinity within the capsule but not in the number of antibody binding sites, suggesting that the spatial organization of high- and low-affinity epitopes within the capsule changed according to radial position. Finally, evidence is presented that the structure of the capsule changes with capsule age, since the capsule of older cells became more resistant to gamma radiation-induced ablation. In summary, the capsule of C. neoformans is heterogeneous in its spatial distribution and changes with age. Furthermore, our results suggest several mechanisms by which the capsule may protect the fungal cell against exogenous environmental factors.

Antigens, Fungal↗

Prevalence of Cryptococcus neoformans in clinical specimens.

Cryptococcus neoformans isolated from various clinical materials in 14 cases, was identified by (1) cultivation on Sabouraud glucose agar and CHROMagar Candida, (2) microscopic examination of Indian-ink-stained preparations and (3) determination of biochemical properties (assimilation and fermentation of saccharides, assimilation of KNO3, production of urease and phenol monooxygenase). C. neoformans was determined in five specimens from paediatric patients in the intensive care unit and in nine specimens from adult patients, most frequently from liquor at meningitis (n = 3).

Adult↗

Cryptococcus neoformans of saprophytic origin.

Cryptococcus neoformans was isolated on 276 occasions as follows: from pigeon faeces, 159 (45%) of 349 samples; pigeon crops, 39 (50%) of 80 crops; from drinking water, 37 (74%) of 50 samples; from the atmosphere, 3 strains in a contaminated loft. It was also recovered from 38 (19%) of 200 samples of canary faeces. It is possible that C. neoformans survives in the crop of pigeons and occasionally passes to the faeces where it multiplies. The factors influencing its presence are: the irregular cleaning of lofts, overcrowding and air-pollution from poor ventilation.

Air Microbiology↗

The Cryptococcus neoformans genome sequencing project.

Cryptococcus neoformans is a basidiomycete that can cause life-threatening meningoencephalitis in patients with and without impaired immune function. Cryptococcosis is usually an opportunistic infection in patients with compromised immunity as a consequence of HIV-1 infection, steroid administration, cancer chemotherapy, sarcoidosis, diabetes, or inherited immune system defects. This pathogenic yeast has a defined sexual cycle, which allows classical genetic analysis. Molecular biology approaches, including transformation and gene disruption by homologous recombination, and animal models for studies of virulence are both well developed. Recently an international consortium convened to begin the C. neoformans genome sequencing project, and we review here background and arguments for this project. We also discuss the importance of this project to the biology and virulence of this organism in particular, and to virulence in general.

AIDS-Related Opportunistic Infections↗

Signal transduction pathways regulating differentiation and pathogenicity of Cryptococcus neoformans.

The basidiomycetous yeast Cryptococcus neoformans is a human pathogen. Several phenotypes of this organism are defined as virulence traits including the polysaccharide capsule, melanin, and the ability to grow at 37 degreesC. The signaling pathways regulating the expression of these phenotypes and other important cellular processes are being defined on a molecular level. For example, the highly conserved signaling molecule calcineurin regulates high temperature growth in C. neoformans. A cryptococcal homolog of Saccharomyces cerevisiae STE12, the gene for a transcriptional regulator activated by the MAP kinase cascade, has also been identified. Additionally, the C. neoformans Galpha protein GPA1 and cAMP regulate mating, melanin production, encapsulation, and pathogenicity. This fungus is an excellent model to further dissect virulence-associated signaling pathways. The conserved role of Galpha proteins and cAMP-associated signaling pathways in fungal differentiation and pathogenicity is also reviewed.

Cryptococcosis↗

Melanin biosynthesis in Cryptococcus neoformans.

Pigment production by Cryptococcus neoformans is virulence associated. Dopamine- and 3,4-dihydroxyphenylalanine-melanin products were identified after acidic permanganate oxidation, alkaline hydrogen peroxide oxidation, or hydrolysis with hydriodic acid. These data provide direct chemical evidence for the formation of eumelanin polymers by catecholamine oxidation by laccase alone followed by oxidative coupling of dihydroxyindole.

Acids↗

Strain variation in antiphagocytic activity of capsular polysaccharides from Cryptococcus neoformans serotype A.

Strains of Cryptococcus neoformans vary in resistance to phagocytosis in vitro. The binding of isolated capsular polysaccharide (CPS) to a capsule-free mutant of C. neoformans confers resistance to phagocytosis. The importance of capsule composition to differences among strains in susceptibility to phagocytosis was evaluated. CPSs from five strains of C. neoformans serotype A, designated 6, 15, 98, 110, and 145, which had previously been isolated and characterized as to molecular size, composition, and binding properties, were evaluated for relative antiphagocytic potencies. In the presence of 5% normal isologous serum, murine thioglycolate-elicited peritoneal macrophages phagocytized (i.e., attached to or engulfed) 80% of 51Cr-labeled cells of C. neoformans 602, a capsule-free mutant. Added CPS inhibited the uptake of these yeast cells. CPS from strain 110 was most potent, followed in decreasing order of inhibitory activity by CPSs from strains 6, 145, 98, and 15. The presence of 100 micrograms of strain 110 CPS per ml reduced uptake of cells of strain 602 from 80 to 50%. CPS had no effect on the uptake of 51Cr-labeled Saccharomyces cerevisiae. Cells of strain 602 that were preincubated with CPS and then washed were more resistant to phagocytosis than nonpretreated control cells, indicating the importance of bound, not free, CPS. Added CPS did not affect the uptake of wild-type, encapsulated cells of C. neoformans. Addition of endotoxin had no effect on phagocytosis. CPSs from strains of C. neoformans serotype A varied widely in their abilities to inhibit the uptake of capsule-free cells. The antiphagocytic activity of CPS did not correlate with the ability to bind to capsule-free mutant but was somewhat related to the capsule size of the strain from which the CPS was isolated.

Animals↗

Microreview: capsule-associated genes of Cryptococcus neoformans.

Cryptococcosis, caused by Cryptococcus neoformans is a common systemic mycosis in man and animals, particularly immunocompromised patients. This pathogenic fungus produces a thick extracellular polysaccharide capsule. Four capsule-associated genes (CAP10, CAP59, CAP60, CAP64) were cloned and sequenced, and proved to be essential for capsule synthesis. However biochemical functions of CAP gene products have not been clarified yet. Recently, the relatedness of the polysaccharide capsule and four capsule-associated genes has partly been elucidated. Nucleotide sequence of four CAP gene fragments was analyzed for phylogenetic relationships, and they were in agreement with the conventional classification of varieties and serotypes within C. neoformans. Expression of four CAP genes and capsule size were examined using two media containing different amount of glucose, and the results indicated that CAP genes might play important roles in elaboration of extracellular polysaccharide capsule. Furthermore, analyses of CAP genes in various clinical samples would give the useful information to diagnose cryptococcosis in human and animals.

Animals↗

Production of nitric oxide by rat alveolar macrophages stimulated by Cryptococcus neoformans or Aspergillus fumigatus.

Cryptococcus neoformans and Aspergillus fumigatus are airborne fungi and the alveolar macrophages (AM) constitute a first line of host defence against both pathogens. We investigated the ability of rat AM to produce nitric oxide (NO) when challenged in vitro with C. neoformans, A. fumigatus conidia or inert silica particles alone and together with interferon gamma (IFN-Gamma). The role of NO in the killing of C. neoformans as well as the relationship between phagocytosis of the yeast or A. fumigatus conidia and NO production by AM were studied. Both fungi, but not the inert particles induced a small but significant increase in NO production by AM. A synergistically enhanced NO production by AM was observed when each fungus, but not silica particles, were incubated together with IFN-Gamma. AM treated with IFN-Gamma and challenged with C. neoformans showed higher killing activity than untreated AM, a finding that correlated with increased NO production by AM. Both effects were reduced by an inhibitor of NO synthesis. Increased NO production by IFN-Gamma activated AM was found together with an increased accumulated attachment of A. fumigatus conidia and serum opsonized, but not unopsonized C. neoformans. The IFN-Gamma dependent increase in accumulated attachment of the fungi might be responsible for the synergistic effect of the fungi and IFN-Gamma on the NO production. Our data suggest that activated rat AM might efficiently use the antimicrobial nitric oxide system in the defence against these pathogens in the normal host.

Animals↗

Characterization of the CNRE-1 family of repetitive DNA elements in Cryptococcus neoformans.

The pathogenic yeast Cryptococcus neoformans contains 10-20 dispersed repetitive elements that hybridize to clone CNRE-1.0. Screening of a genomic library with probes derived from CNRE-1.0 identified five phages with restriction maps that overlapped CNRE-1.0 and three additional phages that belonged to two distinct groups. Sequencing of internal 3.5-kb SstI fragments from two CNRE-1-like elements revealed 95% homology, as well as a conserved open reading frame. A PCR-RFLP assay was developed that can distinguish different subfamilies of CNRE-1-like elements.

Base Sequence↗

In vitro phagocytosis and intracellular fate of variously encapsulated strains of Cryptococcus neoformans.

Five isolates of Cryptococcus neoformans type A with stable capsular thicknesses were used. Three of the isolates had capsules of medium size, one had a minimal capsule, and the other, a large capsule. Peritoneal exudate cells from Lewis rats were cultured on cover slips in Leighton tubes containing medium 199 and 20% fresh, isologous normal rat serum. Yeast cells were added to the Leighton tube cultures, and, 2 hr later, the extracellular yeasts were rinsed out. Cover slips were removed from some tubes for Wright staining and measurement of both phagocytosis and loss of macrophages. The remaining tubes were reincubated and sampled at 24 or 48 hr. To determine fate of yeast cells after ingestion, washed cover slips were inverted onto agar slide cultures, and specific macrophages were observed in situ for subsequent multiplication of their intracellular yeasts. More than half of the macrophages survived 24 to 48 hr of exposure to different strains of C. neoformans, with small, medium, or large capsules. Phagocytic activity was dependent upon a heat-labile factor in normal rat serum. The number of yeast ingested by macrophages was inversely proportional to the capsular size. Although most of the ingested yeasts were resistant to intracellular killing, the agar culture technique clearly demonstrated that many were unable to multiply, presumably dead. Three of the isolates were more susceptible than the other two, and the fate of these yeasts after engulfment was not correlated with their capsular size.

Animals↗

Cloning, expression, and characterization of Cryptococcus neoformans dihydrofolate reductase.

The Cryptococcus neoformans dihydrofolate reductase (DHFR) gene has been isolated from cDNA and genomic DNA libraries. The 690-base pair coding sequence codes for a 25,152-Da protein, which is the largest monofunctional DHFR yet reported. The gene contains two introns, and several putative regulatory sequences have been identified. The coding sequence was placed in a pUC-based expression vector, which expresses C. neoformans DHFR in Escherichia coli at a level of about 5% of the total soluble extract. The expressed DHFR was purified to homogeneity by methotrexate-Sepharose affinity chromatography, followed by anion exchange chromatography on Q-Sepharose. On SDS-polyacrylamide gel electrophoresis, the purified enzyme migrates as a single protein with apparent mass of 28 kDa. The molecular weight, as determined by electrospray mass spectral analysis, and the amino-terminal sequence are in accord with what was predicted from the DNA sequence. Steady state kinetic parameters, effects of pH, salts, and inhibition constants of several anti-folates have been determined.

Amino Acid Sequence↗

The in vivo incorporation of [32P]-labeled orthophosphate into pyrophosphatidic acid and other phospholipids of Cryptococcus neoformans through cell growth.

Cryptococcus neoformans was cultured in a liquid medium containing [32P]-orthophosphate and harvested at various stages of cell growth. An aliquot of the [32P]-labeled cells was transferred to a nonradioactive medium, and the culture was continued again for some hours. The [32P]-radioactivity composition and the phosphorus composition of individual phospholipids relative to the total phospholipid through the incubation periods were estimated. Although levels of major phospholipids remained constant throughout the cell growth, the distribution pattern of the [32P]-radioactivity of individual phospholipids changed remarkably along with the progress of cell growth. The changing patterns of the specific radioactivities of individual phospholipids through the growth phase demonstrated that phosphatidic acid was one of the most active metabolites in phospholipids and that pyrophosphatidic acid was also metabolically active.

Cryptococcus↗

Fluconazole tolerance in clinical isolates of Cryptococcus neoformans.

Eleven isolates of Cryptococcus neoformans were investigated to determine the biochemical basis of their tolerance to fluconazole. The MICs of fluconazole for three isolates with low-level resistance were 3- to 6-fold higher than those for sensitive isolates, while the MICs for four isolates with high-level resistance were 100- to 200-fold higher than those for sensitive isolates. The level of ergosterol present in the isolates varied, and those which had relatively low levels of ergosterol were resistant to amphotericin B. Changes in the affinity of the target enzyme (sterol 14alpha-demethylase) and decreases in the cellular content of fluconazole seemed to be responsible for the resistance in isolates with low-level and high-level resistance, respectively.

Amphotericin B↗