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1.
Candida albicans undergoes reversible morphogenetic transitions between budding, pseudohyphal and hyphal growth forms that promote the virulence of this pathogenic fungus. The regulatory networks that control morphogenesis are being elucidated; however, the primary signals that trigger morphogenesis remain obscure, and the physiological outputs of these networks are complex. 相似文献
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The septin proteins function in the formation of septa, mating projections, and spores in Saccharomyces cerevisiae, as well as in cell division and other processes in animal cells. Candida albicans septins were examined in this study for their roles in morphogenesis of this multimorphic, opportunistically pathogenic fungus, which can range from round budding yeast to elongated hyphae. C. albicans green fluorescent protein labeled septin proteins localized to a tight ring at the bud and pseudohyphae necks and as a more diffuse array in emerging germ tubes of hyphae. Deletion analysis demonstrated that the C. albicans homologs of the S. cerevisiae CDC3 and CDC12 septins are essential for viability. In contrast, the C. albicans cdc10Delta and cdc11Delta mutants were viable but displayed conditional defects in cytokinesis, localization of cell wall chitin, and bud morphology. The mutant phenotypes were not identical, however, indicating that these septins carry out distinct functions. The viable septin mutants could be stimulated to undergo hyphal morphogenesis but formed hyphae with abnormal curvature, and they differed from wild type in the selection of sites for subsequent rounds of hyphal formation. The cdc11Delta mutants were also defective for invasive growth when embedded in agar. These results further extend the known roles of the septins by demonstrating that they are essential for the proper morphogenesis of C. albicans during both budding and filamentous growth. 相似文献
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A new minimal synthetic medium, with low amount of glucose, without aminoacids, vitamins and neutral pH, which induces germ-tubes production in Candida albicans, is reported in this work. The results indicate a perfect agreement between the germ-tube test performed with the standard method in human or animal serum and this test performed in minimal synthetic medium. In this medium the germ-tube test for the presumptive identification of Candida albicans can be performed with the same formality, time and reproducibility as those in human or animal serum. This constitutes an interesting finding because it is easy to prepare, to store and is highly reproducible. 相似文献
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Martins LF Montero-Lomelí M Masuda CA Fortes FS Previato JO Mendonça-Previato L 《FEMS yeast research》2008,8(4):615-621
Hyphal development in Candida albicans contributes to virulence, and inhibition of filamentation is a target for the development of antifungal agents. Lithium is known to impair Saccharomyces cerevisiae growth in galactose-containing media by inhibition of phosphoglucomutase, which is essential for galactose metabolism. Lithium-mediated phosphoglucomutase inhibition is reverted by Mg(2+). In this study we have assessed the effect of lithium upon C. albicans and found that growth is inhibited preferentially in galactose-containing media. No accumulation of glucose-1-phosphate or galactose-1-phosphate was detected when yeasts were grown in the presence of galactose and 15 mM LiCl, though we observed that in vitro lithium-mediated phosphoglucomutase inhibition takes place with an IC(50) of 2 mM. Furthermore, growth inhibition by lithium was not reverted by Mg(2+). These results show that lithium-mediated inhibition of growth in a galactose-containing medium is not due to inhibition of galactose conversion to glucose-6-phosphate but is probably due to inhibition of a signaling pathway. Deletion of the Ser-Thr protein phosphatase SIT4 and treatment with rapamycin have been shown to inhibit filamentous differentiation. We observed that C. albicans filamentation was inhibited by lithium in solid medium containing either galactose as the sole carbon source or 10% fetal bovine serum. These results suggest that suppression of hyphal outgrowth by lithium could be related to inhibition of the target of rapamycin (TOR) pathway. 相似文献
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Temporal studies of germ-tube forming yeast cells of Candida albicans by scanning and transmission electron microscopy indicate that extensive vacuolation and possibly also cell wall changes may cause walls of the parent yeast cell to collapse during specimen preparation. This collapse does not occur in cells which have been grown in conditions that suppress germ tube formation and have undergone the same preparative treatment. 相似文献
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Induced chromosome rearrangements and morphologic variation in Candida albicans. 总被引:2,自引:0,他引:2 下载免费PDF全文
We have isolated a mutant of Candida albicans that switches between colony morphologies at high frequencies in a strain with several genetic markers. This strain, 1183, has an altered karyotype with two extra chromosomes. The 1183 karyotype is unstable upon passage. Using DNA transformation with the URA3 gene flanked by sequences from the C. albicans repeat sequence 27A, we have marked individual chromosomes of 1183 and 1161, a related smooth, stable strain. Many transformants contained one or more extra chromosomes, ranging in size from 150 kb to 2.1 Mb. Most were less than 800 kb and appeared to be fragments of a single chromosome. All fragments tested derive from one of the two smallest chromosomes. Six of 13 fragments contained the URA3 gene. In some cases, URA3 was located at the end of a fragment with adjacent telomere repeats. The integrated copy of URA3 was unstable in some 1183 transformants. Our results suggest that 1183 has a mutation affecting genomic stability. A connection between karyotypic changes and morphologic variation has been suggested from studies of several C. albicans strains; however, we find that gross karyotypic and morphological changes are separable processes. 相似文献
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Involvement of calcium, calmodulin and protein phosphorylation in morphogenesis of Candida albicans 总被引:2,自引:0,他引:2
N-Acetyl-D-glucosamine-induced germ tube formation in Candida albicans at 37 degrees C was accompanied by an increase in the rate of protein phosphorylation. The calmodulin antagonist trifluoperazine and the Ca2+ ionophore A23187, which inhibited germ tube formation, also reduced the rate of phosphorylation. The rate of phosphorylation was also reduced when cells were incubated at 25 degrees C, which favoured yeast-phase growth. Two-dimensional SDS-PAGE analysis of phosphoproteins from germ-tube-forming and yeast cells revealed two germ-tube-specific and three yeast-specific phosphoproteins. Germ tubes and hyphae had more calmodulin activity than yeast cells, irrespective of the germ-tube-inducing condition used. As a first step towards understanding the inhibitory effect of trifluoperazine on germ tube formation, calmodulin from C. albicans was purified to homogeneity. It was heat stable, and displayed a pronounced Ca2(+)-induced shift in electrophoretic mobility. 相似文献
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PHR1, a pH-regulated gene of Candida albicans, is required for morphogenesis. 总被引:9,自引:0,他引:9 下载免费PDF全文
S M Saporito-Irwin C E Birse P S Sypherd W A Fonzi 《Molecular and cellular biology》1995,15(2):601-613
Candida albicans, like many fungi, exhibits morphological plasticity, a property which may be related to its biological capacity as an opportunistic pathogen of humans. Morphogenesis and alterations in cell shape require integration of many cellular functions and occur in response to environmental signals, most notably pH and temperature in the case of C. albicans. In the course of our studies of differential gene expression associated with dimorphism of C. albicans, we have isolated a gene, designated PHR1, which is regulated in response to the pH of the culture medium. PHR1 expression was repressed at pH values below 5.5 and induced at more alkaline pH. The predicted amino acid sequence of the PHR1 protein was 56% identical to that of the Saccharomyces cerevisiae Ggp1/Gas1 protein, a highly glycosylated cell surface protein attached to the membrane via glycosylphosphatidylinositol. A homozygous null mutant of PHR1 was constructed and found to exhibit a pH-conditional morphological defect. At alkaline pH, the mutant, unlike the parental type, was unable to conduct apical growth of either yeast or hyphal growth forms. This morphological aberration was not associated with defective cytoskeletal polarization or secretion. The results suggest that PHR1 defines a novel function required for apical cell growth and morphogenesis. 相似文献
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Kelly MT MacCallum DM Clancy SD Odds FC Brown AJ Butler G 《Molecular microbiology》2004,53(3):969-983
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The pathogenic yeast Candida albicans, a member of the mucosal microbiota, is responsible for a large spectrum of infections, ranging from benign thrush and vulvovaginitis in both healthy and immunocompromised individuals to severe, life-threatening infections in immunocompromised patients. A striking feature of C. albicans is its ability to grow as budding yeast and as filamentous forms, including hyphae and pseudohyphae. The yeast-to-hypha transition contributes to the overall virulence of C. albicans and may even constitute a target for the development of antifungal drugs. Indeed, impairing morphogenesis in C. albicans has been shown to be a means to treat candidiasis. Additionally, a large number of small molecules such as farnesol, fatty acids, rapamycin, geldanamycin, histone deacetylase inhibitors, and cell cycle inhibitors have been reported to modulate the yeast-to-hypha transition in C. albicans. In this minireview, we take a look at molecules that modulate morphogenesis in this pathogenic yeast. When possible, we address experimental findings regarding their mechanisms of action and their therapeutic potential. We discuss whether or not modulating morphogenesis constitutes a strategy to treat Candida infections. 相似文献
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Candida albicans is a polymorphic fungus that has the ability to rapidly switch between yeast and filamentous forms. The morphological transition appears to be a critical virulence factor of this fungus. Recent studies have elucidated the signal transduction pathways and quorum sensing molecules that affect the morphological transition of C. albicans. The metabolic mechanisms that recognize, and respond to, such signaling molecules and promote the morphological changes at a system level, however, remain unknown. Here we review the metabolic basis of C. albicans morphogenesis and we discuss the role of primary metabolic pathways and quorum sensing molecules in the morphogenetic process. We have reconstructed, in silico, the central carbon metabolism and sterol biosynthesis of C. albicans based on its genome sequence, highlighting the metabolic pathways associated with the dimorphic transition and virulence as well as pathways involved in the biosynthesis of important quorum sensing molecules. 相似文献
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D W Mackenzie 《Sabouraudia》1965,4(2):126-130
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Valerio Vidotto Laura Guevara Ochoa Juan Michea Cortes Massimo Bruatto 《Mycopathologia》1991,113(3):139-142
Candida albicans strain B 311-10 with and without starvation was cultivated in the minimal synthetic medium of Shepherd et al. [18], modified without biotin, aminoacids, low glucose concentration [20] and with decreasing amounts of (NH4)2SO4, to determine the optimal growth requirement for this strain. All the experiments were carried out under sterile conditions at 25 °C in a thermostat with initial O.D.s (675 nm) of 0.500 and 0.100. Cell growth was generally monitored everyday for six days with a spectrophotometer by determining the absorbance of the cultures at 675 nm. All the experiments were repeated three times and a statistical analysis of the data with a probability of 99% and 1% of error was performed to confirm the validity of the results. Best growth was obtained with starved cells at an initial O.D. of 0.100 and with a 0.1 g/L concentration of (NH4)2SO4. At this concentration, the growth of C. albicans B 311-10 was best between the first and the fourth day with the maximum at the third day. With (NH4)2SO4 concentrations of 0.05 and 0.5 g/L, cell growth was the same. 相似文献
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Induction and morphogenesis of chlamydospores in an agerminative variant of Candida albicans 总被引:1,自引:0,他引:1
A strain of Candida albicans that did not form germ tubes was endowed with a pronounced ability for massive production of chlamydospores under appropriate environmental conditions. Development of chlamydospores was induced by N-acetyl hexosamines, especially N-acetyl-D-glucosamine, and this induction did not depend on non-specific utilization of N-acetyl hexosamines as metabolic sources nor did it correlate with induction of germ-tube formation. Formation of chlamydospores in N-acetyl hexosamine-agar medium occurs through a multiplication stage (10-12 h) consisting of a few cycles of budding leading to short, "pseudo-hypha-like" structures, followed by progressive differentiation of most cells into young chlamydospores (16-18 h) which go to complete maturation in 36-48 h. There were marked differences in chlamydospore formation among different strains of C. albicans but, when induced, the morphology and kinetics of sporulation were identical in all strains. This study shows that chlamydospore formation is not necessarily associated with the mycelial phase and suggests that N-acetyl hexosamines may induce sporulation by controlling endogenous metabolism rather than through products of their own metabolism. 相似文献
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Candida albicans is the most prominent opportunistic fungal pathogen in humans. Multiple factors are associated with the virulence of C. albicans, including morphogenesis, cell wall organization and growth rate. Here, we describe the identification and functional characterization of CaECM25, a gene that has not been reported before. We constructed Caecm25?/? mutants and investigated the role of the gene in morphogenesis, cell wall organization and virulence. CaECM25 deletion resulted in defects in cell separation, a slower growth rate, reduced filamentous growth and attenuated adherence to plastic surfaces. The Caecm25?/? mutant was also significantly less virulent than wild type when tested for systemic infection in mice. Therefore, CaECM25 plays important roles in morphogenesis, cell wall organization and virulence. 相似文献
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Growth and phase conversion of Candida albicans in Dubos medium 总被引:1,自引:0,他引:1