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MHC class II-positive perivascular microglial cells mediate resistance to Cryptococcus neoformans brain infection.

Acquired resistance to the CNS pathogen Cryptococcus neoformans is mediated by CD4(+) T lymphocytes primed by exposure to antigen in the context of major histocompatibility class II (MHC II) molecules. In mouse brain, parenchymal and perivascular microglial cells may express interferon-gamma (IFN-gamma)-inducible MHC class II marker and thus interact with CD4(+) T cells. Primed effector T cells are retained in the infected CNS if antigen is encountered in proper MHC context and may deliver signals that potentiate microglia to enhanced fungistasis. Vaccinated C57BL6/J mice resist an ordinarily lethal C. neoformans rechallenge, but identically treated congenic Abeta(o/o) mice (MHC class II-deficient; CD4(+) T-cell-deficient) do not. Nor can Abeta(o/o) mice be adoptively immunized by infusion of lymphocytes from vaccinated C57BL6/J donors, as are severe combined immunodeficient (SCID) mice (MHC class II-intact, lymphocyte-deficient). Chimeric (C57BL/6J:Abeta(o/o)) mice with class II expression likely on perivascular microglia only were, like SCID mice, capable of adoptive immunization against C. neoformans brain infection. To the contrary, chimeric mice with class II expression likely only on parenchymal microglia were not capable of effective adoptive immunization against C. neoformans brain infection. Therefore, in order to mediate resistance to infection, primed CD4(+) T cells must interact with the replenishable perivascular microglial subset that lies in close proximity to cerebral vasculature. Although T cells may supply help in the form of inflammatory cytokines to parenchymal microglia, expression of class II on these cells appears unnecessary for antifungal activity.

Animals↗

Antifungal drug combinations for Cryptococcus neoformans and Prototheca spp.

Seventy-one isolates of Cryptococcus neoformans and 5 isolates of Prototheca spp. were tested for in vitro susceptibility against amphotericin B alone and against the combination of amphotericin B with each clinically relevant concentration of flucytosine (5-FC) and rifampin by broth dilution methods. The combinations of amphotericin B and rifampin produced greater effect on reduction of the minimal inhibition concentration (MIC) of amphotericin B than did either drug used individually. Flucytosine combined with amphotericin B produced little or no reduction of the MIC compared with amphotericin B alone.

Amphotericin B↗

An ultrastructural analysis of protoplast-spheroplast induction in Cryptococcus neoformans.

Protoplasts-spheroplasts of a human isolate of Cryptococcus neoformans were prepared using the gut enzyme of Helix pomatia. The induction process, as studied by transmission electron microscopy, occurred in two stages. Early in the induction process, protoplasts-spheroplasts emerged from whole cells through a break in the cell wall-capsule envelope. Later, a gradual dissolution of the entire cell wall occurred releasing the intact protoplast-spheroplast. A comparison of protoplasts-spheroplasts with normal untreated cells revealed that the degree of cellular vacuolation as well as the resolution of cellular organelles was similar.

Cell Wall↗

Rapid and easy method to extract and preserve DNA from Cryptococcus neoformans and other pathogenic yeasts.

The mucopolysaccharide capsule of Cryptococcus neoformans and other pathogenic yeasts prevent the extraction of DNA from these important zoonotic agents. We report that the use of a lysis buffer containing a high concentration of urea is an easy, efficient and time-saving technique to obtain high yields of good-quality DNA for molecular diagnosis. The use of urea also prevents the degradation of DNA during storage of samples at room temperature for up to 6 months.

Cryptococcus neoformans↗

Cryptococcus neoformans antibody levels in patients with AIDS.

Anti-Cryptococcus neoformans capsular polysaccharide (CPS) antibodies were measured by ELISA in patients with AIDS related complex or AIDS without a known history of cryptococcosis and in heterosexual healthy controls. Total and IgG anti-CPS antibody activity was rarely detected in patients, with mean levels lower than in controls, whereas IgM antibody activity was similar in the 3 groups. Since both humoral and cellular immunity appear to be of great importance during cryptococcosis, the inability of AIDS patients to synthetize specific IgG antibodies could impair an alternative host defence mechanism to cellular immunity.

AIDS-Related Complex↗

Calcineurin-binding protein Cbp1 directs the specificity of calcineurin-dependent hyphal elongation during mating in Cryptococcus neoformans.

Mating and virulence of the human fungal pathogen Cryptococcus neoformans are controlled by calcineurin, a serine-threonine-specific calcium-activated phosphatase that is the target of the immunosuppressive drugs cyclosporine A and FK506. In previous studies, a calcineurin binding protein (Cbp1, Rcn1, Dscr1/Csp1-3/MCIP1-3) that is conserved from yeasts to humans has been identified, but whether this protein functions to regulate calcineurin activity or facilitate calcineurin function as a signaling effector has been unclear. Here we show that, like calcineurin, Cbp1 is required for mating in C. neoformans. By contrast, Cbp1 plays no role in promoting calcineurin-dependent growth at 37 degrees C and is not essential for haploid fruiting. Site-directed mutagenesis studies provide evidence that tandem phosphorylation and dephosphorylation of two serine residues in the conserved SP repeat motif are critical for Cbp1 function. Epistasis analysis supports models in which Cbp1 functions coordinately with calcineurin to direct hyphal elongation during mating. Taken together, these findings provide insights into the roles of Cbp1 as an accessory subunit or effector of calcineurin-specific signaling pathways, which may be features conserved among the calcipressins to govern calcineurin signaling in immune cells, cardiomyocytes, and neurons of multicellular eukaryotes.

Calcineurin↗

Genetic study of oxygen resistance and melanization in Cryptococcus neoformans.

Genetic analysis of oxygen-sensitive mutants of Cryptococcus neoformans revealed two loci (oxy1 and oxy2) linking hyperoxia sensitivity to production of melanin, a known virulence factor. Hyperoxia-sensitive strain 562 (oxy1 oxy2) is albino and avirulent. oxy2-defective strains lacking the oxy1 defect are melanin deficient but show normal hyperoxia resistance. Mutants defective at three additional mapped melanin loci fail to show hyperoxia sensitivity in the oxy1 background. Revertants of strain 562, which regain the ability to synthesize melanin by mutation at suppressor sites unlinked to oxy2, retain the oxygen sensitivity conferred by their oxy1 and oxy2 defects. These data identify the melanin gene oxy2 as unique in its association of hyperoxia resistance and melanization.

Chromosome Mapping↗

Isolation of a Cryptococcus neoformans serotype A MATa strain from the Italian environment.

Cryptococcus neoformans is a heterothallic basidiomycete which possesses a bipolar mating system based on two mating type alleles, MATa and MATalpha. In the type variety, C. neoformans var. neoformans, both mating types have been found among strains of one serotype, serotype D, whereas only MATalpha was identified after extensive survey of serotype A strains. Serotype A MA Ta appeared to be extinct or to exist only in a vestigial, non-functional form. We report the isolation of a C. n. var. neoformans serotype A MATa strain from the Italian environment. The strain was serotyped by slide agglutination test, genotyped by polymerase chain reaction (PCR) fingerprinting using the (GACA)4 primer, and its haploid state was determined by flow cytometry. The mating type was identified by PCR amplification of the pheromone a gene. In addition, the amplification of the four STE20 alleles, specific for the mating type of serotypes A and D, showed that the strain contains only the MATa locus. By crossing experiments the strain was found to be fertile. The interest in the finding of this fertile isolate is related to the possibility to construct a congenic pair of serotype A MATa/MATalpha strains to be used in genetic and pathogenesis studies.

Cryptococcus neoformans↗

Mitochondrial kinetics during mitosis in Cryptococcus neoformans--an ultrastructural study.

Mitochondrial kinetics during mitosis in Cryptococcus neoformans was examined with ultrathin serial sections using a computer-aided three-dimensional reconstruction technique. The number of mitochondria varied during mitosis: there was an increase in prophase to telophase cells and a decrease in interphase cells. No appreciable differences in the form and number of mitochondria were found between the cells in the logarithmic growth phase and stationary phase. Fluctuations in the ratio of mitochondrial volume/total cytoplasmic volume were minimum during mitosis. However, the ratio was affected by the growth condition of the cells; that is, the ratio in the logarithmic growth cells was significantly higher than that in stationary cells. A giant mitochondrion, which is composed of a coalescence of all the mitochondria in a cell, was not found in this study.

Computer Simulation↗

Rapid methods to extract DNA and RNA from Cryptococcus neoformans.

Extraction of nucleic acids from the pathogenic yeast Cryptococcus neoformans is normally hampered by a thick and resistant capsule, accounting for at least 70% of the whole cellular volume. This paper presents procedures based on mechanical cell breakage to extract DNA and RNA from C. neoformans and other capsulated species. The proposed system for DNA extraction involves capsule relaxation by means of a short urea treatment and bead beating. These two steps allow a consistent extraction even from strains resistant to other procedures. Yield and quality of DNA obtained with the proposed method were higher than those obtained with two earlier described methods. This protocol can be extended to every yeast species and particularly to those difficult to handle for the presence of a capsule. RNA purification is accomplished using an original lysing matrix and the FastPrep System (Bio101) after a preliminary bead beating treatment. Yields range around 1 mg RNA from 15 ml overnight culture (10(9) cells), RNA appears undegraded, making it suitable for molecular manipulations.

Centrifugation↗

Determination of ploidy in Cryptococcus neoformans by flow cytometry.

We determined the ploidy of Cryptococcus neoformans (28 strains) isolated from patients and nature. The cellular DNA content of these strains, which stained with propidium iodide in comparison to that of two authentic haploid strains, was determined by flow cytometry. All the strains exhibited diphasic histograms. In case of the authentic haploid strains, the first peak was centred around channel 9, and the second peak around channel 18. Most strains exhibited this type of histogram. Some strains exhibited another type of histogram: the first peak was centred around channel 18, and the second one around channel 35. In flow cytometry, the channel number is correlated with the intensity of fluorescence, namely, in proportion to the channel number the DNA content in the cells increases. The cellular DNA content of the second type of histograms showed twice that of the authentic haploid strains, and thus, five of 28 isolates were concluded to be diploid, and the others haploid.

Cryptococcosis↗

PRODUCTION OF DELAYED HYPERSENSITIVITY TO CRYPTOCOCCUS NEOFORMANS IN EXPERIMENTAL ANIMALS.

Lomanitz, Rachel (University of Oklahoma School of Medicine, Oklahoma City) and John M. Hale. Production of delayed hypersensitivity to Cryptococcus neoformans in experimental animals. J. Bacteriol. 86:505-509. 1963.-Rabbits and guinea pigs have been sensitized to somatic, as well as whole-cell, antigens of a small-capsuled variant of Cryptococcus neoformans ODH-DV. Rabbits have also been sensitized to soma and to whole cells of a large-capsuled patient isolate. The time required for appearance of skin reactivity, after intracutaneous injection of antigenic material, indicated that the hypersensitivity developed was of the delayed type. This was subsequently demonstrated in both rabbits and guinea pigs by passive transfer of the hypersensitivity to normal animals. Efforts to transfer the skin sensitivity to normal rabbits with serum from sensitized animals were unsuccessful, indicating that humoral antibodies are not involved. Preliminary studies suggest that the sensitizing antigen resides in the cell wall and is highly specific.

Animals↗

Effect of the laccase gene CNLAC1, on virulence of Cryptococcus neoformans.

To assess the relationship between melanin production by Cryptococcus neoformans and virulence on a molecular basis, we asked: (a) is CNLAC1, the laccase structural gene of C. neoformans, expressed in vivo?; (b) can mouse virulence be restored to cnlac1 (Mel-) mutants by complementation with CNLAC1?; and (c) will targeted gene deletion of CNLAC1 decrease virulence for mice? Melanin is produced when cryptococcal laccase catalyzes the oxidation of certain aromatic compounds, including L-dopa, to quinones, which then polymerize to melanin. To assess CNLAC1 transcription, RNA was extracted from C. neoformans in cerebrospinal fluid of infected rabbits. Reverse transcriptase-polymerase chain reaction detected CNLAC1 transcript, indicating that laccase may be produced in the infected host. To assess the effect of CNLAC1 deletion on virulence, a Mel- mutant (10S) was obtained by disruption of the 5' end of the gene. After multiple backcrosses with a parental strain to remove unintended genetic defects introduced by the transformation process, a Mel- progeny was tested and found to be much less virulent for mice than a Mel+ progeny. Another Mel- strain (mel2), obtained from J.C. Edman (University of California at San Francisco, CA), produced CNLAC1 transcript but no detectable melanin. Characterization of this mutant revealed a base substitution in CNLAC1 that changed a histidine to tyrosine in a putative copper-binding site. When this base change was introduced into CNLAC1 by site-directed mutagenesis, it no longer transformed mel2 to Mel+, indicating the importance of this histidine in laccase activity. Complementation of a mel2-derived mutant with CNLAC1 restored the Mel+ phenotype and increased virulence. These results support the concept that the CNLAC1 gene product has a role in virulence.

Animals↗

The mouse antibody response to infection with Cryptococcus neoformans: VH and VL usage in polysaccharide binding antibodies.

Cryptococcus neoformans is a ubiquitous fungus that can cause serious infections in humans. The fungus has a polysaccharide (C. neoformans capsular polysaccharide; CNPS) capsule that contributes to its pathogenicity and can elicit an antibody response. Nevertheless, only 4 of 60 BALB/c mice chronically infected with C. neoformans had a detectable increase in serum anti-CNPS. The sera of three responder mice contained both IgM and IgG anti-CNPS antibody, and the titers of lambda and kappa anti-CNPS antibody were approximately equal. Eight IgM and one IgG3 monoclonal antibodies (mAbs) were generated from the spleen of one responder mouse, and one IgA was generated from the spleen of another mouse. Seven of the IgMs, the IgG3, and the IgA mAb had lambda light chains and were specific for serotype D CNPS. Molecular analysis confirmed that this was a highly restricted antibody response. All of the D-specific antibodies used VH441, JH3, and either V lambda 2/J lambda 2 or V lambda 1/J lambda 1, and all had the same heavy chain CDR3 amino acid sequence, even though there were differences in the nucleotide sequence of the N/D segment. One IgM mAb reacted with both serotype A and D CNPS, and this mAb used different VH and JH genetic elements and had kappa light chains. All the anti-CNPS mAbs used J proximal VH gene elements that have previously been shown to bind dextran and other polysaccharides. Sequence and Southern blot analysis indicate that the serotype-D CNPS-specific mAbs arose from only a few precursor B cells.

Amino Acid Sequence↗

Antigenic and biological characteristics of mutant strains of Cryptococcus neoformans lacking capsular O acetylation or xylosyl side chains.

Cryptococcus neoformans is surrounded by an antiphagocytic polysaccharide capsule whose primary constituent is glucuronoxylomannan (GXM). Three prominent structural features of GXM are single xylosyl and glucuronosyl side chains and O acetylation of the mannose backbone. Isogenic pairs of O-acetyl-positive and O-acetyl-negative strains (cas1 Delta) as well as xylose-positive and xylose-negative strains (uxs1 Delta) of serotype D have been reported. The cas1 Delta strains were hypervirulent, and the uxs1 Delta strains were avirulent. The goal of this study was to examine the effects of the cas1 Delta and uxs1 Delta mutations on the following: (i) binding of anti-GXM monoclonal antibodies (MAbs) in capsular quellung reactions, (ii) activation of the complement system and binding of C3, (iii) phagocytosis by neutrophils, and (iv) clearance of GXM in vivo. The results showed that loss of O acetylation produced dramatic changes in the reactivities of five of seven anti-GXM MAbs. In contrast, loss of xylosylation produced a substantive alteration in the binding behavior of only one MAb. O-acetyl-negative strains showed no alteration in activation and binding of C3 from normal serum. Xylose-negative strains exhibited accelerated kinetics for C3 deposition. Loss of O acetylation or xylosylation had no effect on phagocytosis of serum-opsonized yeast cells by human neutrophils. Finally, loss of O acetylation or xylosylation altered the kinetics for clearance of GXM from serum and accumulation of GXM in the liver and spleen. These results show that O acetylation and/or xylosylation are important for binding of anti-GXM MAbs, for complement activation, and for tissue accumulation of GXM but do not impact phagocytosis by neutrophils.

Acetylation↗

Structural variability in the glucuronoxylomannan of Cryptococcus neoformans serotype A isolates determined by 13C NMR spectroscopy.

Cryptococcus neoformans, the etiologic agent of cryptococcal meningoencephalitis, produces glucuronoxylomannan (GXM) as the major capsule component. Purified GXMs obtained from eight serotype A isolates of C. neoformans were treated by ultrasonic irradiation and then O-deacetylated prior to their comprehensive chemical analysis by GLC, GLC-MS, and 13C NMR spectroscopy. The average xylose: mannose: glucuronic acid molar ratio of the eight isolates is 1.96 +/- 0.25: 3.00: 0.58 +/- 0.10. Methylation analyses and 13C NMR spectroscopy show a general structure for GXM that is comprised of a linear (1----3)-alpha-D-mannopyranan substituted with beta-D-GlcpA and with beta-D-Xylp at O-2. Variable quantities of unsubstituted (1----3)-alpha-D-Manp were observed between the eight isolates studied. In several isolates some of the (1----3)-alpha-D-Manp residues are disubstituted with beta-D-GlcpA at O-2 and with beta-D-Xylp at O-4; this type of substitution was not previously thought to occur in serotype A isolates. Heterogeneity, between isolates, in the disposition of the substituents along the mannopyranan backbone was revealed by 13C NMR spectroscopy. The eight isolates, and three isolates previously studied, were each assigned to one of four distinct groups based on the 13C NMR chemical shifts of the anomeric carbons. Six of the eleven isolates gave identical spectra (Group I). The six major anomeric resonances from Group I were assigned to specific glycosidic linkages present in GXM. The remaining five isolates gave more complex spectra that are indicative of additional linkages and comprise the remaining three groups. Three of these five isolates contain substantial amounts of linkages previously thought to be distinctive of serotypes B and C, i.e., Manp residues that are 4-O-glycosylated with beta-D-Xylp. Methylation analyses only predicted an average repeating unit, whereas 13C NMR spectroscopy demonstrated that GXM from each isolate may be categorized into four groups by the occurrence of distinct sequences of carbohydrate residues.

Carbohydrate Sequence↗

Primary cryptococcal cellulitis caused by Cryptococcus neoformans var. gattii in an immunocompetent host.

Primary cutaneous cryptococcal infection is uncommon. The cutaneous manifestations are most often the result of dissemination from the central nervous system or lung, usually in an immunocompromised host; cellulitis is regarded as the rarest cutaneous form. Primary cutaneous cryptococcosis has occasionally been reported in the immunocompetent, the causative organism being Cryptococcus neoformans var. neoformans. We present a case of cellulitis of the right arm in a 75-year-old man caused by Cryptococcus neoformans var. gattii, a fungus which is endemic in Australia and an important cause of infection in the immunocompetent. This is the first case described of a primary cutaneous infection due to Cryptococcus neoformans var. gattii. The interesting ecology of this organism is discussed.

Aged↗