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Biomedical subjects

W L Chaffin

Publications and source records attributed to W L Chaffin.

At least 19 recordsLinked to original sources

Adherence of germ tubes of Candida albicans to tissues from immunocompromised mice.

The influence of immune status of the host on binding of germ tubes of Candida albicans to murine tissue sections in an ex vivo assay was examined. Generally, germ tubes appeared randomly adhered to the tissues examined and binding was unaffected by immunodeficiency induced by treatment with cyclophosphamide and cortisone acetate. Adherence was somewhat reduced in spleen and kidney sections or increased in liver sections and unchanged in lymph node sections from treated mice compared to sections from control animals. Scanning electron micrographs showed organisms appeared to be loosely or tightly bound to the surface or partially embedded in spleen sections from both control and treated mice. These observations suggested that qualitative and quantitative difference in adhesion of germ tubes to various tissues may contribute little to the susceptibility of the immunodeficient animal to candidal infection.

Animals

Adhesion of Candida albicans to brain tissue of Macaca mulata in an ex vivo assay.

An ex vivo adhesion assay was used to examine adhesion of Candida albicans yeast cells to brain tissue of the primate Macaca mulata. Tissues from frontal lobes and striatum (caudate, putamen, and portions of the globus pallidus) were used in the assay. Yeast cells adhered to gray matter at about six times the level of adhesion to white matter. The fungus was able to bind to different cell types within the cortex, basal ganglia, and white matter. Binding to neurons, small neurons or glia, endothelial cells, and neuropil was observed.

Adhesiveness

Identification of germ tube cell wall antigens of Candida albicans.

The reactivity of affinity-purified antibody to two components of germ tube cell wall extracts of Candida albicans showed that the components shared a common determinant(s). Surface expression of at least one of these determinants was demonstrated by indirect immunofluorescence where antibody binding was observed only on the hyphal extension of the organism.

Antigens, Fungal

Cell wall glycoproteins of Candida albicans as released by different methods.

Different methods of extraction frequently used in other studies were used to release glycoproteins from both intact cells and isolated cell walls of yeast and hyphal forms of Candida albicans. Extracts were obtained from whole cells by treatment (i) with 2-mercaptoethanol (beta ME) at pH 8.6 and 37 C degrees and (ii) with zymolyase after treatment with beta ME. Extracts were obtained from isolated and washed cell walls (i) by boiling with beta ME and sodium dodecyl sulphate (SDS), (ii) by boiling with SDS and (iii) by treatment with zymolyase after SDS. The extracts were separated by SDS-polyacrylamide gel electrophoresis and analysed by Western blotting with four reagents. Analysis with concanavalin A (ConA) revealed different glycoprotein populations depending on the treatment. Three possible germ-tube-specific constituents were observed; and 80 kDa component released by beta ME from both intact cells and cell walls, and 47 kDa and 43 kDa moieties released by zymolyase only from intact cells. MAb 4C12, specific for the protein portion of a large germ tube constituent, recognized polydisperse material which just entered the gel in beta ME extracts and in the region extending up from 200 kDa to near the top of the gel in zymolyase extracts. MAb 24.17, specific for a carbohydrate determinant of yeast phase cells, reacted with disperse material in the region from the top of the gel to one-third to two-thirds the distance to the 220 kDa mass marker. Antiserum specific for the serotype A determinant of mannan reacted with large disperse component(s) migrating in the region from the top of the gel to about two-thirds the distance to the 220 kDa mass marker and with a 180 kDa component. The components recognized by MAb 4C12, but not those recognised by MAb 24.17 and serotype A antiserum, were effected by treatment with endo-beta-N-acetylglucosamidase H. The various analyses revealed that the method of extraction affected the composition and size of the constituents recognized by the reagents.

Antibodies, Monoclonal

Phosphate-containing proteins and glycoproteins of the cell wall of Candida albicans.

The distribution of phosphate, carbohydrate, and protein in the cell wall components extracted from intact yeast cells of Candida albicans by beta-mercaptoethanol (beta ME) at pH 8.6 was examined by analysis of the material separated by DEAE-cellulose chromatography. All protein peaks did not coincide with peaks of both carbohydrate and phosphate. Subsequent analysis was performed on material obtained from yeast cells and germ tubes which were grown in medium containing [32P]phosphate. Two extracts were obtained by treating cells with beta ME or with zymolyase following beta ME. The extracts were analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, followed by autoradiography. beta ME-extracted material contained high-molecular-mass (HMM), greater than or equal to 200 kDa, polydisperse material and a major and minor band of 19 to 20 kDa, Zymolyase extracts contained (i) three components of less than or equal to 40 kDa, one of which may correspond to the major beta ME band; (ii) four bands within the HMM region which may correspond to previously reported bands; and (iii) one band of 100 to 120 kDa. After longer exposures, additional midrange bands were detected in the zymolyase extract. In extracts treated with endo-beta-N-acetylglucosaminidase H, the HMM polydisperse material increased in mobility although retaining sufficient radiolabel for detection. Western immunoblot analysis of extracts with germ tube-specific antiserum and a germ tube-specific monoclonal antibody and concanavalin A showed that not all components contained detectable phosphate, not all glycoproteins contained detectable phosphate, and at least one 19- to 20-kDa protein may be phosphorylated in the absence of carbohydrate.

Acetylglucosaminidase

Fab fragments from a monoclonal antibody against a germ tube mannoprotein block the yeast-to-mycelium transition in Candida albicans.

Fab fragments prepared from the immunoglobulin G monoclonal antibody (MAb) 4C12, which reacts with a determinant expressed on the hyphal extension of germ tubes of Candida albicans, inhibited germ tube formation, but intact MAb 4C12 did not. Indirect immunofluorescence showed a punctate binding pattern on cells incubated with Fab fragments but a confluent binding on cells incubated with intact MAb 4C12.

Antibodies, Monoclonal

Two screening methods show different antigen recognition patterns for four monoclonal antibodies to Candida albicans cell surface.

Four murine monoclonal antibodies (mAbs) showing similar reactivity with a cell-wall extract and mannan preparation obtained from Candida albicans were examined for epitope specificity. An enzyme-linked immunosorbent assay (ELISA) was used to determine total mAb binding to extracted cell-wall antigen when each mAb was reacted alone or in competition with a second mAb. This analysis suggested that three mAbs recognized the same determinant, which differed from that recognized by the fourth. The reactivity of these mAbs was also examined by indirect immunofluorescence assay with both yeast and germ tube forms of the dimorphic fungus. The three mAbs assigned the same epitope-specificity by ELISA showed two different patterns of reactivity with immunofluorescence. This discrepancy is discussed with respect to the postulated structure of mannan and the method of analysis.

Animals

Effect of glutaraldehyde fixation on cell surface binding capacity of Candida albicans.

The ability of viable and glutaraldehyde-fixed, stationary-phase yeast cells of Candida albicans to bind concanavalin A and monospecific antiserum for antigenic factor 1 was examined. Both fluorescence flow cytometric analysis and transmission electron microscopy indicated that glutaraldehyde-fixed cells bound less of the two reagents than did unfixed viable cells.

Aldehydes

Interactions of monospecific antisera with cell surface determinants of Candida albicans.

Flow cytometric analysis of indirect immunofluorescence showed that surface determinants recognized by antisera (Candida Check; Iatron Laboratories, Tokyo, Japan) for factors 1, 4, 5, and 6 were expressed to the same extent by all cells of Candida albicans under each growth condition and for each morphology examined. Fluorescence intensity increased with increasing cell size.

Antibodies, Fungal

Variable expression of a surface determinant during proliferation of Candida albicans.

The surface expression of an antigenic determinant that is present in the cell wall of Candida albicans was investigated with monoclonal antibody 24 (MAb24), an immunoglobulin M MAb. The proportion of the cell population that expressed the epitope under different growing conditions was determined by indirect immunofluorescence microscopy. More than 90% of stationary-phase yeast cells of strain B311 grown at 28 degrees C expressed the antigen. Less than 50% of yeast cells grown exponentially at 28 degrees C or either growing or stationary-phase yeast cells cultivated at 37 degrees C expressed the epitope. Germ tubes, which were induced at 37 degrees C from stationary-phase yeast cells grown at 28 degrees C, expressed the determinant on the parent yeast but not the hyphal portion of the germ tube. The change in antigen expression by stationary-phase cells grown at 28 degrees C, when they resumed growth by bud formation, suggested that antigen expression was lost by cells in the inoculum prior to the first cell division. By using the same assay, strong positive reactions were observed in stationary-phase cultures of other isolates of C. albicans, C. guilliermondii, C. stellatoidea, and C. tropicalis, but not with isolates of C. krusei, C. parapsilosis, or Torulopsis glabrata. The identification of the antigenic determinant as a carbohydrate was based on three observations: (i) interaction with a mannan preparation from the same organism, (ii) sensitivity of the antigen to periodate but not proteases, and (iii) coincidence of the migration of antigen during electrophoresis with material which stained intensely with carbohydrate but not with protein reagents. These observations suggest that the expression of the antigenic determinant of MAb24 is dependent on the growth conditions, growth state, and morphology of the cell and that the topography of the cell surface is dynamic.

Antibodies, Monoclonal

Effect of tunicamycin on germ tube and yeast bud formation in Candida albicans.

Tunicamycin is an antimicrobial agent which inhibits the first reaction of the dolichol pathway leading to N-glycosylation of proteins. The effect of tunicamycin on the growth of the dimorphic fungus Candida albicans differed depending on the growth phase of the organism. Addition of tunicamycin to stationary phase yeast cells inhibited the resumption of growth of those cells in either morphology, as cultures failed to initiate either yeast bud or germ tube formation. When tunicamycin was added to growing cells, growth was inhibited but not immediately. When it was added to germ tube cultures, nuclear division and septum formation continued for some time before ceasing. Addition of the drug to exponential phase yeast cultures resulted in an approximately 45% increase in cell number before cell division ceased and yeast accumulated in both budded and unbudded stages of the cell cycle. Accumulation of trichloroacetic acid precipitable radiolabelled protein and nucleic acid continued unchanged for some time following addition of tunicamycin; however, after a while a reduced rate of accumulation was noted.

Candida albicans

The relationship between yeast cell size and cell division in Candida albicans.

The mean size and percentage of budded and unbudded cells of Candida albicans grown in batch culture over a wide range of doubling times have been measured. Cell volume decreased with increased doubling time and a nonlinear approach to an asymptotic minimum was observed. When cells were separated by age according to bud scars, each age showed a similar decrease. During each cell division cycle, size increased slowly during both budded and unbudded periods so that each generation was significantly larger than the preceding. There was no difference in size between the parent portion of budded cells and unbudded cells of the same age. Time-lapse photomicroscopy of cells growing on solid medium showed that cells divide asymmetrically with larger parents having a shorter subsequent cycle time than the smaller daughter, although the time utilized for bud formation was similar. When cells were shifted from a medium supporting a low growth rate and small size to a medium supporting a faster growth rate and larger size, both budded and unbudded cells increased significantly in size. As the doubling time increased, both the budded and unbudded portions of parental and daughter cycles increased.

Candida albicans

Effect of yeast growth conditions on yeast-mycelial transition in Candida albicans.

When grown and induced to form germ tubes in liquid defined media, yeast cells of Candida albicans must reach stationary phase before acquiring ability to carry out the yeast-mycelial transition. This study examined the effect of the carbon source utilized for yeast growth on the inducibility of stationary phase yeast. When grown to the same stationary phase cell density as glucose cultures, cultures grown on citrate were fully inducible while cultures grown on galactose and mannose showed a small reduction. Cultures grown on ethanol were reduced 80% in morphological conversion. When glucose grown cells were induced in the presence of these carbon sources, hexoses supported full induction while ethanol reduced induction 80%. Induction in the presence of carboxylic acids was similar to induction in the absence of added carbon source. When induced on the same source used in yeast growth, germ tube formation was reduced for all carbon sources except hexoses. When induced in the absence of added carbon source, yeasts grown on citrate and ethanol were inhibited 80-100%. Cultures starved for glucose were more inhibited than cultures starved for NH4Cl when induced without added carbon source. These observations suggest that the metabolic state of the stationary phase cell is an important factor in the ability to respond to conditions inducing germ tube formation.

Candida albicans

Cell wall proteins of Candida albicans.

Proteins were solubilized from cell wall fractions of Candida albicans and separated by polyacrylamide gel electrophoresis. Cell walls were isolated from 25 and 37 degrees C growing and stationary phase yeast cultures and from germ tubes. The 42 protein bands detected by dye binding were observed in all wall extracts, regardless of the temperature, growth state, or morphology of the culture. The carbohydrate content of most bands was below the detectable limit of the periodic acid Schiff reagent. The protein complement revealed by autoradiography of radiolabeled proteins was half that detected by staining. Two bands showed greater intensity from cultures grown at 37 degrees C. The radio-labeled pattern was similar with both [35S]methionine-and [14C]leucine-labeled proteins and either pulse- or continuous-labeled proteins.

Candida albicans

Morphological commitment in Candida albicans.

Stationary phase yeast cells of the dimorphic fungus albicans can reinitiate growth under appropriate conditions either as yeasts through bud formation or as hyphae through germ tube formation and elongation. Stationary phase yeast cells resuspended in fresh medium at 37 degrees C form germ tubes and those resuspended at 25 degrees C form buds. Temperature shift experiments have been used to observe when cells become committed to germ tube formation and yeast budding growth under conditions favorable to each form. The two commitment processes appear to be independent and, once initiated, occur at characteristic rates with commitment to germ tube formation preceding commitment to yeast bud formation. The rate of commitment to germ tube formation was consistent with a random process or first-order kinetics. A relationship between cell volume and commitment to yeast growth and bud emergence was consistent with observations of cell volume distribution both in stationary phase cultures and between budded and unbudded cells during resumption of growth at 25 degrees C.

Candida albicans

Differential expression of cytoplasmic proteins during yeast bud and germ tube formation in Candida albicans.

Changes in the identity and quantity of proteins synthesized during morphogenesis may result from alterations in gene expression in the dimorphic yeast Candida albicans. Stationary phase yeast cells, upon resuming growth at 25 degrees C, form budding yeast and at 37 degrees C form germ tubes. In order to identify proteins associated with morphogenesis, we compared cytoplasmic proteins synthesized during germ tube and bud formation. Proteins synthesized during this period were labeled at four intervals with either [3H]leucine or [35S]methionine and separated by two-dimensional polyacrylamide gel electrophoresis. This study shows that, of the 230 proteins resolved on each gel, 5 were specific to the yeast morphology and 2 proteins showed reduction in net synthesis in the mycelial phase. There were, however, no mycelium-specific proteins at any labeling period. The majority of proteins were common to both morphologies and showed no major shift in number during resumption of growth. The observations reported here suggest that differential gene expression occurs during morphogenesis of C. albicans.

Candida albicans

Nutrient-limited yeast growth in Candida albicans: effect on yeast-mycelial transition.

The yeast-mycelial transition in Candida albicans can be induced from yeast cells grown on minimal defined medium only in stationary phase. This study examined the inducibility of cultures in which growth was limited by the availability of the nutrients, glucose, NH4Cl, or galactose. The results showed that neither stationary phase nor cell cycle stage alone was a sufficient condition to support subsequent germ tube formation. In addition, final cell concentration alone was not a factor in inducibility. When a hundredfold decrease in growth was obtained by limiting any of the nutrients, a loss in inducibility was observed. However, the loss of inducibility differed with the limiting nutrient. Galactose, NH4Cl, and glucose-limited cultures showed respectively 15, 30, and 80% loss of inducibility. Thus the effect was associated with both carbon/energy and nitrogen-limited cells; however, glucose appeared to have a specific effect. These observations suggest that the metabolic state of the stationary phase yeast cell was an important factor in the subsequent ability to respond to conditions inducing germ tube formation.

Ammonium Chloride

Nicotinamide adenine dinucleotide metabolism in Candida albicans.

The functional pathways of nicotinamide adenine dinucleotide (NAD) biosynthesis and their regulation were studied in the dimorphic fungus Candida albicans. The presence of a functional endogenous pathway of NAD biosynthesis from tryptophan was demonstrated. In addition, nicotinamide served as an efficient salvage precursor for NAD biosynthesis but nicotinate was not utilized. The pathway for nicotinamide utilization involved nicotinate and nicotinate nucleotides as intermediates, suggesting that the failure to utilize nicotinate involves a transport defect. The mechanisms that regulate NAD levels during exponential growth operated to maintain constant NAD levels when NAD biosynthesis occurred exclusively from endogenous or salvage pathways or from a combination of the two. The regulation also operated such that the salvage pathway was preferentially utilized.

Biological Transport