Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Cryptococcus neoformans”

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 181 records · Page 10Linked to original sources

Isolation and characterisation of the phospholipase B gene of Cryptococcus neoformans var. gattii.

Cryptococcus neoformans var. gattii (serotypes B and C) is a human pathogen, ecologically, biochemically, clinically and genetically different from C. neoformans var. grubii (serotype A) and C. neoformans var. neoformans (serotype D). The phospholipase B (PLB1) gene from serotypes B and C was isolated and characterised. It resembled the serotype A and D genes, with an overall sequence homology of more than 85%. The respective open reading frames were 2236 bp (serotype B) and 2239 bp (serotype C) in length. Each contained six introns and encoded a 68-kDa protein destined for secretion. PLB1 was located on the second smallest chromosome in both serotypes. Gene expression, measured as mRNA, was not regulated by temperature, pH or exogenous nutrients.

Amino Acid Sequence↗

Ultrastructure of the mitotic apparatus in Cryptococcus neoformans.

Mitosis in Cryptococcus neoformans was examined by electron microscopy. Observation of serial sections showed that the separation of chromosomes occurred in the karyokinetic nucleus in the bud, that the microtubule organizing center (MTOC) was composed of two globular elements and a bridged middle piece, and that the nuclear envelope of the karyokinetic nucleus was partially destroyed during mitosis. These findings are similar to those reported in the heterobasidiomycetous yeasts. In addition, some of the prophase cells showed extension of the karyokinetic nucleus into the bud unaccompanied by the MTOC and swelling of the middle piece of the MTOC.

Anaphase↗

Production and characterization of monoclonal antibodies specific for Cryptococcus neoformans capsular polysaccharide.

Cryptococcus neoformans is surrounded by a capsular polysaccharide. There are at least four known serotypes of the polysaccharide. The objective of this study was to produce monoclonal antibodies (MAbs) that could be used to study the distribution of epitopes among the serotypes of C. neoformans. BALB/c mice were immunized with cryptococcal polysaccharides of serotype A or D that were coupled to sheep erythrocytes. Splenocytes were isolated, and hybridomas secreting MAbs specific for cryptococcal polysaccharides were isolated. Two hybridomas, designated MAbs 439 and 1255, were produced from mice immunized with serotype A polysaccharide. One hybridoma, designated MAb 302, was produced from mice immunized with serotype D polysaccharide. All three antibodies were of the immunoglobulin G1 isotype. MAb 302 showed a specificity for serotypes A and D in Ouchterlony diffusion, agglutination, and opsonophagocytosis assays. MAb 1255 was reactive with polysaccharides and cells of serotypes A, B, and D. MAb 439 was reactive with polysaccharides and cells of serotypes A, B, C, and D. The reactivity of these MAbs closely matched the distribution of epitopes among cryptococcal polysaccharides predicted in previous studies of polyclonal antibodies reactive with cryptococcal polysaccharides. The ability to produce a MAb against an epitope shared by all four serotypes may have value for the detection of cryptococcal antigens in body fluids.

Agglutination↗

5-fluorocytosine resistance in Cryptococcus neoformans.

Isolates of Cryptococcus neoformans from six patients were obtained before and after unsuccessful therapy with 5-fluorocytosine (5-FC). Post-therapy isolates exhibited massive and stable 5-FC resistance. The frequency of drug-resistant mutants in susceptible isolates of C. neoformans was <0.001% (70.4 +/- 17.9 per 10(7) cryptococci), whereas mutant frequencies in resistant isolates approached 100%. Non-drug-induced, spontaneously appearing 5-FC resistant mutants were documented in four susceptible isolates of C. neoformans by use of the statistical method of fluctuation analysis. Mutation rates on these same four isolates ranged from 1.2 x 10(-7) to 4.8 x 10(-7). Total intracellular uptake and incorporation of cytosine-5-(3)H (CyH(3)) and 5-fluorocytosine-2-(14)C (5-FC(14)) into a trichloroacetic acid-insoluble fraction were markedly reduced in six isolates with in vivo-acquired resistance when compared with susceptible pretreatment strains from the same patients. Five of these six isolates also had acquired massive resistance to 5-fluorouracil (5-FU), suggesting that a mutation in the uridine-5'-monophosphate pyrophosphorylase was responsible for drug resistance. The sixth isolate, which remained susceptible to 5-FU, appeared to have a defect in a cytosine-specific permease accounting for 5-FC resistance. A single isolate with in vitro-acquired 5-FC and 5-FU resistance had no reduction in uptake or incorporation of CyH(3) or 5-FC(14). The mechanism of resistance in this isolate is discussed.

Antifungal Agents↗

Use of a suspension array for rapid identification of the varieties and genotypes of the Cryptococcus neoformans species complex.

Cryptococcus neoformans is an encapsulated fungal pathogen known to cause severe disease in immunocompromised patients. The disease, cryptococcosis, is mostly acquired by inhalation and can result in a chronic meningoencephalitis, which can be fatal. Here, we describe a molecular method to identify the varieties and genotypic groups within the C. neoformans species complex from culture-based assays. The method employs a novel flow cytometer with a dual laser system that allows the simultaneous detection of different target sequences in a multiplex and high-throughput format. The assay uses a liquid suspension hybridization format with specific oligonucleotide probes that are covalently bound to the surface of fluorescent color-coded microspheres. Biotinylated target amplicons, which hybridized to their complementary probe sequences, are quantified by the addition of the conjugate, streptavidin R-phycoerythrin. In this study we developed and validated eight probes derived from sequence analysis of the intergenic spacer region of the rRNA gene region. The assay proved to be specific and sensitive, allowed discrimination of a 1-bp mismatch with no apparent cross-reactivity, and detected 10(1) to 10(3) genome copies. The described protocol, which can be used directly with yeast cells or isolated DNA, can be undertaken in less than 1 h following PCR amplification and permits identification of species in a multiplex format. In addition to a multiplex capability, the assay allows the simultaneous detection of target sequences in a single reaction. The accuracy, speed, flexibility, and sensitivity of this technology are a few of the advantages that will make this assay useful for the diagnosis of human cryptococcal infections and other pathogenic diseases.

Cryptococcus neoformans↗

Molecular analysis of CPRalpha, a MATalpha-specific pheromone receptor gene of Cryptococcus neoformans.

The putative Cryptococcus neoformans pheromone receptor gene CPRalpha was isolated and studied for its role in mating and filamentation. CPRalpha is MATalpha specific and located adjacent to STE12alpha at the MATalpha locus. It encodes a protein which possesses high sequence similarity to the seven-transmembrane class of G-protein-coupled pheromone receptors reported for other basidiomycetous fungi. Strains containing a deletion of the CPRalpha gene exhibited drastic reductions in mating efficiency but were not completely sterile. Delta cpr alpha cells displayed wild-type mating efficiency when reconstituted with the wild-type CPRalpha gene. Hyphal production on filament agar was not affected in the delta cpr alpha strain, indicating no significant role for CPRalpha in sensing environmental cues during haploid fruiting. The wild-type MATalpha CPRalpha strain produced abundant hyphae in response to synthetic MATa pheromone; however, the hyphal response to pheromone by delta cpr alpha cells was significantly reduced. Exposure of wild-type cells to synthetic MATa pheromone for 2 h induced MFalpha pheromone expression, whereas unexposed cells showed only basal levels of the MFalpha transcript. The delta cpr alpha cells, however, exhibited only basal levels of MFalpha message with or without pheromone exposure, suggesting that CPRalpha and MFalpha are components of the same signaling pathway.

Amino Acid Sequence↗

Anti-glucuronoxylomannan IgG1 specific antibodies production in Cryptococcus neoformans resistant mice.

BACKGROUND: Cryptococcus neoformans is a widely disseminated fungus shown to be responsible for infections in individuals with impaired cell mediated immunity, such as patients with human immunodeficiency virus (HIV). Cryptococcus neoformans has a polysaccharide capsule composed of glucuronoxylomannan (GXM), which acts as a major virulence factor and is considered to be a thymus independent type-2 antigen (TI-2). OBJECTIVE: In the current study, the production kinetics were evaluated for IgG subclasses specific for GXM, and assessed with the cross reactive antibodies to Streptococcus pneumoniae polysaccharide. In addition, spleen B cell subpopulations were quantified in murine models of cryptococcosis with different susceptibilities to the infection. MATERIALS AND METHODS: Antibodies were detected by ELISA at different time intervals after C. neoformans infection in moderately resistant (Balb/c), highly resistant (CBA/j) and susceptible (C57BL/6) mouse strains. B cells subpopulations were determined by flow cytometry analysis. RESULTS: Early production of IgG1, described as protector antibodies, coincided with a decrease of the number of C. neoformans colony forming units in the lungs. Polysaccharide cross-reactive antibodies were detected in each of the three mouse strains. Antibody titers were highest in the susceptible strain (C57BL/6), a strain which also showed the highest proportion of splenic CD5+ B lymphocytes. In contrast, CBA/J mice showed the highest levels of CD43+ B. CONCLUSIONS: These findings suggest that IgG1 antibodies specific for GXM, are implicated in host protection against C. neoformans infection and may be regulated by CD43+ cells. They also suggest that cross reactivity antibodies are not important in the protection against C. neoformans infection.

Animals↗

In vitro and in vivo efficacies of the azole SCH56592 against Cryptococcus neoformans.

Multiple isolates of Cryptococcus neoformans were tested to compare the in vitro activity of a new triazole, SCH56592, with those of amphotericin B, fluconazole, and itraconazole, MICs of each drug were determined, and minimum fungicidal concentrations of SCH56592 and amphotericin B were measured. MICs of SCH56592 were lower than those of amphotericin B and fluconazole but not those of itraconazole. Minimum fungicidal concentrations of SCH56592 were lower than those of amphotericin B. SCH56592 in the presence of human serum produces an in vitro fungicidal effect for Cryptococcus neoformans. The data indicate that SCH56592 might exert fungicidal as well as inhibitory properties in vivo. On the basis of these results, SCH56592 was evaluated with a rabbit model of experimental cryptococcal meningitis; SCH56592 treatment was compared with treatment with fluconazole. Despite no detectable drug concentrations in the cerebrospinal fluid, the activity of SCH56592 against C. neoformans infection was equivalent to that of fluconazole. SCH56592 has potent in vitro activity against C. neoformans and compares favorably to treatment with fluconazole for a central nervous system infection. SCH56592 should be studied for use in humans with cryptococcal infections.

Amphotericin B↗

The pathology of human and murine pulmonary infection with Cryptococcus neoformans var. gattii.

Human infection by Cryptococcus neoformans var. neoformans is well characterised and usually occurs in immunocompromised patients. Less is known about infection by Cryptococcus neoformans var. gattii, which usually produces disease in previously normal individuals. In two cases of human pulmonary infection by Cryptococcus neoformans var. gattii, we observed a mixed inflammatory pattern, including granulomas associated with numerous T lymphocytes and a lymphocytic interstitial pneumonitis with B lymphocytes and formation of follicles. We also established a murine model of pulmonary infection by Cryptococcus neoformans var. gattii, which reproduced most of these features. This model is likely to prove useful in studies of the pathogenesis of this infection.

Animals↗

Meiosis-specific genes play roles in ploidy reduction in Cryptococcus neoformans titan cells.

Cryptococcus neoformans is a fungal pathogen of humans that causes life-threatening meningoencephalitis. During infection, enlarged, polyploid titan cells are produced that promote survival, evade immune cells, and generate diverse progeny. These titan cells divide to produce haploid, aneuploid or diploid daughter cells with enhanced stress tolerance; however, how ploidy reduction occurs is poorly understood. Here, we show that titan cells developed from diploid strains predominantly produce diploid daughter cells with haploid daughters observed infrequently. We further demonstrate that meiosis-specific genes, including DMC1 and SPO11, are critical for stable inheritance of a diploid genome in the daughter cells. Specifically, deletion of these genes in a heterozygous diploid background results in: 1) titan cells with a significantly reduced capacity to produce daughter cells; 2) increased phenotypic variation among daughter cells produced by the titan cells, including traits that could be relevant to cell growth and viability; and 3) daughter cells produced by the titan cells exhibiting high levels of loss of heterozygosity (LOH) and aneuploidy, suggested elevated genome instability. Taken together, these findings demonstrate the importance of meiosis-specific genes in the ploidy reduction process of titan cells derived from a heterozygous diploid background in an important human fungal pathogen.

Dmc1↗

Response of congenitally athymic (nude) and phenotypically normal mice to Cryptococcus neoformans infection.

A Cryptococcus neoformans infection in congenitally athymic (nude) mice and phenotypically normal heterozygote BALB/c mice was used to determine how T lymphocyte-deficient mice compared with normal mice in restricting proliferation of C. neoformans and to determine whether a correlation exists between delayed-type hypersensitivity and resistance to C. neoformans. Although nude mice displayed the ability to maintain cryptococcal population levels lower than did the phenotypically normal animals during the first 14 days of infection, the resistance was not sufficient to control the infection during the remainder of the 35-day experimental period. Heterozygote mice began to demonstrate positive delayed-type hypersensitivity responses by day 14 postinfection; however, nude mice were unable to mount delayed-type hypersensitivity responses. The appearance of the delayed-type hypersensitivity response in the heterozygote mice was concomitant with the reduced rate of proliferation of C. neoformans observed in those animals from days 14 to 35. Because anticryptococcal antibody titers and cryptococcal antigen levels were equivalent in both groups of mice, T-lymphocyte function was considered to be responsible for the resistance observed in the heterozygote mice. The mechanism by which cryptococcal populations were reduced was not addressed; however, the mouse model system used in these studies would be an ideal tool for studying those mechanisms. Nude mice were able to produce antibodies against cryptococcal cells, indicating that at least one component of C. neoformans is a T-independent antigen. The antibody response was predominantly immunoglobulin M in nude and heterozygote mice. Cryptococcal antigen levels were extremely high in both groups of animals and appeared to increase as C. neoformans cell numbers increased.

Animals↗

[Isolation of specific DNA probes from Cryptococcus neoformans].

OBJECTIVE: To construct plasmid library and screen specific DNA probes for Cryptococcus neoformans. METHODS: Serotype A Cryptococcus neoformans was used as the study strain, plasmid pUC18 as vector, and Escherichia coli JM103 as host cell. The plasmid library of cryptococcus neoformans was constructed (pCN). Other pathogenes causing affection diseases which should be distinguished from cryptococcusis clinically, and other fungi similar to Cryptococcus neoformans with physiological and biochemical characteristics were used as a distinguishing system, specific colonies were screened by hibridization in double steps. RESULTS: The inserts of the library were 280 to 1800 base pairs and 580 base pairs in average length. Repeated sequence was 32.43% and single copy sequence was 67.57% in genome of cryptococcus neoformans respectively. Three specific colonies were isolated from the library. Colony pCNII A6 was serotype A specific, pCNII B5 species specific and pCNIII G1-specific for var. neoformans. CONCLUSION: A rapid diagnosis of Cryptococcus neoformans infection at early stage can be made by using species-specific probe, and serotype and variaty of neoformans and gattii be distinguished in epidemic study.

Cloning, Molecular↗

Comparison of serological and chemical characteristics of capsular polysaccharides of Cryptococcus neoformans var. neoformans serotype A and Cryptococcus albidus var. albidus.

The antigenic formula and chemical structure of capsular polysaccharide (CPS) of Cryptococcus albidus var. albidus (C. albidus) were studied in relation to those of C. neoformans var. neoformans serotype A (C. neoformans A). The results of slide agglutination tests with factor sera and reciprocal adsorption experiments showed that antigenic formula of C. albidus was the same as that of C. neoformans A. The soluble CPSs from the two species were obtained from culture supernatants by precipitation with ethanol followed by purification by chromatography on DEAE-cellulose column. The structural analyses of such CPSs from the two species showed that the antigenic CPS fractions consisted of a backbone of alpha(1-3)-linked D-mannopyranosyl residues with a single branch of beta(1-2)-xylose or glucuronic acid, and mostly with O-acetyl groups, in which side chains and O-acetyl groups were responsible for antigenic specificity. It was found that there was a minor difference between the CPS of C. neoformans A and that of C. albidus; in the former, unsubstituted mannose residues existed in a low frequency, but in the latter none. Moreover, the 1H-nuclear magnetic resonance spectra of partially hydrolyzed acidic fragments of the two CPSs indicated that two xylose side chains were present between glucuronic acid side chains. Taken together, it was suggested that these two species of C. neoformans A and C. albidus are closely related to each other in their CPSs.

Animals↗

Occurrence and significance of Cryptococcus neoformans in vegetables and fruits.

Cryptococcus neoformans was isolated from three of 437 (0.6%) samples of a wide variety of vegetables collected from a number of markets in Delhi. The vegetables yielding C. neoformans were tomato, Lycopersicon esculentum (1/70), 'vegetable sponge', Luffa cylindrica (1/56) and brinjal, Solanum melongena (1/55). Only solitary samples of these three vegetables were found to be positive. In vitro studies at 25 degrees C revealed that a reference C. neoformans isolate readily colonized, as did Candida albicans and Candida viswanathii (controls), sterilized slices of almost all the test vegetables and fruits (cut or uncut surface) which included tomato, 'vegetable sponge', brinjal, potato, carrot, radish, apple, guava, pineapple, pear, papaya, banana and mango. Sterilized juices of the same vegetables and fruits also supported adequate growth of the reference C. neoformans isolate as well as of C. albicans and C. viswanathii. However, the growth of C. neoformans on the afore-mentioned vegetables and fruits was rapidly masked by miscellaneous molds and bacteria if the test samples had not been sterilized prior to inoculation. Cryptococcus neoformans was not found in any of the 275 fruit samples investigated from the same markets. The results indicate that vegetables and fruits are unsuitable as natural habitats for C. neoformans although it may be sporadically isolated from these sources.

Cryptococcosis↗

In vivo and in vitro studies with an atypical, rhinotropic isolate of Cryptococcus neoformans.

An atypical isolate of Cryptococcus neoformans was investigated because of its consistent and reproducible production of gross nasal pathology following i.v. injection in Swiss albino mice. Dose response to graded concentrations ranging from 1 X 10(2)-1 X 10(7) cells/mouse yielded an LD50 of 1.4 X 10(3) cells/mouse for the atypical rhinotropic strain H140 which was significantly less virulent (p less than 0.01) than our reference strain of Cryptococcus neoformans. There was no significant difference in mortality following the injection of in vitro vs. in vivo passed inoculum. As early as two weeks after inoculation, this strain produced gross nasal enlargement to approximately 2-3 X normal dimensions with granulomatous and ulcerated lesions. The LD60 resulted in the greatest percentage of nasal involvement (85%). C. neoformans was demonstrated by culture and histopathology in the noses, brains, lungs, livers and kidneys. A temperature selection was indicated by findings of a lower temperature minimum for subcultures isolated from the noses relative to those isolated from the brain, and by the fact that the most densely populated organs following intraperitoneal injection were the testes. This route of inoculation resulted in cutaneous nasal involvement in a manner analogous to that following i.v. injection. The atypical isolate was unable to assimilate trehalose or raffinose but otherwise was entirely consistent with identification as C. neoformans and produced characteristic CNS and general organ system disease in addition to the rhinotropic cutaneous manifestations. The model characterized here in normal mice may be of value in studies of fungal dermotropism.

Animals↗

Split marker transformation increases homologous integration frequency in Cryptococcus neoformans.

Gene disruption in Cryptococcus neoformans can be problematic due to high frequencies of ectopic integration and telomerization. To improve the frequency of homologous integration, a transformation strategy was employed called split marker, which utilizes a mixture of DNAs comprised of overlapping truncations of the selectable marker. Five genes were compared for homologous integration frequencies using various constructs. Homologous integration was highest when the split marker approach was used, with rates as high as 60% depending on target gene. A second factor that contributed to an increased homologous integration frequency was strain background, which was highest when a double auxotroph was used as a host. The split marker strategy was combined with an ura-blaster construct, which has been used in other fungi to recycle ura5 or ura3 mutations. When a hisG-URA5-hisG cassette was successfully integrated at the target locus, the URA5 gene could be easily evicted by plating onto 5-FOA agar. The cassette was then successfully used for a second cycle of transformation-eviction. The effectiveness of the split marker disruption strategy suggests that continued investigation and modification of traditional molecular techniques could increase the efficiency of C. neoformans molecular manipulation.

Cryptococcus neoformans↗

Comparison of broth macrodilution, broth microdilution and E-test susceptibility tests of Cryptococcus neoformans for fluconazole.

Forty Cryptococcus neoformans strains isolated from cerebral spinal fluid specimens collected from 39 patients were included in the study. The MICs for fluconacole were determined by YNB macrodilution test, microdilution tests using both RPMI1640 and YNB medium and E-tests on solidified RPMI1640 medium, Casitone and YNB agar. In comparison with the reference macrodilution method NCCLS M27-P both the microdilution as well as the E-test techniques can be used for fluconacole susceptibility testing of Cr. neoformans.

Antifungal Agents↗

Melanization decreases the susceptibility of Cryptococcus neoformans to enzymatic degradation.

Cryptococcus neoformans is a free-living fungus that is primarily found in soils contaminated with avian excreta. Recent studies have shown that C. neoformans can synthesize melanins or melanin-like compounds in avian excreta. Melanization has been associated with protection of C. neoformans against harsh environmental conditions, such as ultraviolet radiation and extremes of temperature. In this study we examined whether melanization can protect C. neoformans against enzymatic degradation. Our results demonstrated that in vitro melanization decreases the susceptibility of C. neoformans to hydrolytic enzymes. This suggests a role for melanin in protection of C. neoformans against enzymatic degradation by antagonistic microbes in the environment.

Cryptococcus neoformans↗