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Baillie,G.S. and Douglas,L.J. (1998). Iron-limited biofilms of Candida albicans and their susceptibility to amphotericin B. Antimicrob. Agents Chemother. 42, 2146-2149.

Beck-Sague,C. and Jarvis,W.R. (1993). Secular trends in the epidemiology of nosocomial fungal infections in the United States, 1980-1990. National Nosocomial Infections Surveillance System. J. Infect. Dis. 167, 1247-1251.

Bensen,E.S., Martin,S.J., Li,M., Berman,J., and Davis,D.A. (2004). Transcriptional profiling in Candida albicans reveals new adaptive responses to extracellular pH and functions for Rim101p. Mol. Microbiol. 54, 1335-1351.

Berman,J. and Sudbery,P.E. (2002). Candida Albicans: a molecular revolution built on lessons from budding yeast. Nat. Rev. Genet. 3, 918-930.

Bussemaker,H.J., Li,H., and Siggia,E.D. (2001). Regulatory element detection using correlation with expression. Nat. Genet. 27, 167-171.

Calderone,R.A. and Fonzi,W.A. (2001). Virulence factors of Candida albicans. Trends Microbiol.

9, 327-335.

Cao,F., Lane,S., Raniga,P.P., Lu,Y., Zhou,Z., Ramon,K., Chen,J., and Liu,H. (2006). The Flo8 transcription factor is essential for hyphal development and virulence in Candida albicans.

Mol. Biol. Cell. 17, 295-307.

Chattopadhyay,A., Gray,L.R., Patton,L.L., Caplan,D.J., Slade,G.D., Tien,H.C., and Shugars,D.C.

(2004). Salivary secretory leukocyte protease inhibitor and oral candidiasis in human immunodeficiency virus type 1-infected persons. Infect. Immun. 72, 1956-1963.

Chen,C.G., Yang,Y.L., Cheng,H.H., Su,C.L., Huang,S.F., Chen,C.T., Liu,Y.T., Su,I.J., and Lo,H.J. (2006). Non-lethal Candida albicans cph1/cph1 efg1/efg1 transcription factor mutant establishing restricted zone of infection in a mouse model of systemic infection.

International Journal of Immunopathology and Pharmacology In press.

Chen,C.G., Yang,Y.L., Shih,H.I., Su,C.L., Lo,H.J., and . (2004). CaNdt80 is involved in drug resistance in Candida albicans by regulating CDR1. Antimicrob. Agents Chemother. 48, 4505-4512.

Churchill,G.A. (2002). Fundamentals of experimental design for cDNA microarrays. Nat. Genet.

32 Suppl:490-5., 490-495.

Csank,C., Costanzo,M.C., Hirschman,J., Hodges,P., Kranz,J.E., Mangan,M., O'Neill,K., Robertson,L.S., Skrzypek,M.S., Brooks,J., and Garrels,J.I. (2002). Three yeast proteome databases: YPD, PombePD, and CalPD (MycoPathPD). Methods Enzymol. 350:347-73., 347-373.

De,B., Magee,P.T., and Pla,J. (2000). Recent developments in molecular genetics of Candida albicans. Annu. Rev. Microbiol. 54:463-98., 463-498.

Dudoit,S. and Speed,T.P. (2000). A score test for the linkage analysis of qualitative and quantitative traits based on identity by descent data from sib-pairs. Biostatistics. 1, 1-26.

Edwards,E.J.J. (1990). Candida species. In Prinicples and Practice of Infectious Diseases.

G.L.Mandell, R.G.douglas, and J.E.Bennett, eds. (New York: pp. 1943-1958.

Eisen,M.B., Spellman,P.T., Brown,P.O., and Botstein,D. (1998). Cluster analysis and display of genome-wide expression patterns. Proc. Natl. Acad. Sci U. S. A. 95, 14863-14868.

Ernst,J.F. (2000). Transcription factors in Candida albicans - environmental control of morphogenesis. Microbiology. 146, 1763-1774.

Fang,F.C. (2004). Antimicrobial reactive oxygen and nitrogen species: concepts and controversies. Nat. Rev. Microbiol. 2, 820-832.

Fratti,R.A., Belanger,P.H., Ghannoum,M.A., Edwards,J.E., Jr., and Filler,S.G. (1998).

Endothelial cell injury caused by Candida albicans is dependent on iron. Infect. Immun. 66, 191-196.

Gerami-Nejad,M., Berman,J., and Gale,C.A. (2001). Cassettes for PCR-mediated construction of green, yellow, and cyan fluorescent protein fusions in Candida albicans. Yeast 18, 859-864.

Gow,N.A., Brown,A.J., and Odds,F.C. (2002). Fungal morphogenesis and host invasion. Curr.

Opin. Microbiol. 5, 366-371.

Heymann,P., Gerads,M., Schaller,M., Dromer,F., Winkelmann,G., and Ernst,J.F. (2002). The siderophore iron transporter of Candida albicans (Sit1p/Arn1p) mediates uptake of ferrichrome-type siderophores and is required for epithelial invasion. Infect. Immun. 70, 5246-5255.

Jain,A.N., Tokuyasu,T.A., Snijders,A.M., Segraves,R., Albertson,D.G., and Pinkel,D. (2002).

Fully automatic quantification of microarray image data. Genome Res. 12, 325-332.

Jamieson,D.J., Stephen,D.W., and Terriere,E.C. (1996). Analysis of the adaptive oxidative stress response of Candida albicans. FEMS Microbiol. Lett. 138, 83-88.

Jones,T., Federspiel,N.A., Chibana,H., Dungan,J., Kalman,S., Magee,B.B., Newport,G.,

Thorstenson,Y.R., Agabian,N., Magee,P.T., Davis,R.W., and Scherer,S. (2004). The diploid genome sequence of Candida albicans. Proc. Natl. Acad. Sci U. S. A. 101, 7329-7334.

Jong,A.Y., Chen,S.H., Stins,M.F., Kim,K.S., Tuan,T.L., and Huang,S.H. (2003). Binding of Candida albicans enolase to plasmin(ogen) results in enhanced invasion of human brain microvascular endothelial cells. J Med. Microbiol. 52, 615-622.

Kendziorski,C., Irizarry,R.A., Chen,K.S., Haag,J.D., and Gould,M.N. (2005). On the utility of pooling biological samples in microarray experiments. Proc. Natl. Acad. Sci U. S. A. 102, 4252-4257.

Laibe,S., Bard,E., Biichle,S., Vielle,J., Millon,L., Drobacheff,C., Seilles,E., and Meillet,D. (2003).

New sensitive method for the measurement of lysozyme and lactoferrin to explore mucosal innate immunity. Part II: time-resolved immunofluorometric assay used in HIV patients with oral candidiasis. Clin. Chem. Lab Med. 41, 134-138.

Lan,C.Y., Newport,G., Murillo,L.A., Jones,T., Scherer,S., Davis,R.W., and Agabian,N. (2002).

Metabolic specialization associated with phenotypic switching in Candida albicans. Proc.

Natl. Acad. Sci. U. S. A 99, 14907-14912.

Lan,C.Y., Rodarte,G., Murillo,L.A., Jones,T., Davis,R.W., Dungan,J., Newport,G., and

Agabian,N. (2004). Regulatory networks affected by iron availability in Candida albicans.

Mol. Microbiol. 53, 1451-1469.

Lesuisse,E., Horion,B., Labbe,P., and Hilger,F. (1991). The plasma membrane ferrireductase

activity of Saccharomyces cerevisiae is partially controlled by cyclic AMP. Biochem. J. 280, 545-548.

Lo,H.J., Kohler,J.R., DiDomenico,B., Loebenberg,D., Cacciapuoti,A., and Fink,G.R. (1997).

Nonfilamentous C. albicans mutants are avirulent. Cell 90, 939-949.

Lo,H.J., Wang,J.S., Lin,C.Y., Chen,C.G., Hsiao,T.Y., Hsu,C.T., Su,C.L., Fann,M.J., Ching,Y.T., and Yang,Y.L. (2005). Efg1 involved in drug resistance by regulating the expression of ERG3 in Candida albicans. Antimicrob. Agents Chemother. 49, 1213-1215.

Lorenz,M.C., Bender,J.A., and Fink,G.R. (2004). Transcriptional response of Candida albicans upon internalization by macrophages. Eukaryot. Cell. 3, 1076-1087.

Lupetti,A., Brouwer,C.P., Dogterom-Ballering,H.E., Senesi,S., Campa,M., Van Dissel,J.T., and Nibbering,P.H. (2004). Release of calcium from intracellular stores and subsequent uptake by mitochondria are essential for the candidacidal activity of an N-terminal peptide of human lactoferrin. J Antimicrob. Chemother. 54, 603-608.

Magee,P.T., Gale,C., Berman,J., and Davis,D. (2003). Molecular genetic and genomic approaches to the study of medically important fungi. Infect. Immun. 71, 2299-2309.

Miller,L.G., Hajjeh,R.A., and Edwards,J.E., Jr. (2001). Estimating the cost of nosocomial candidemia in the united states. Clin. Infect. Dis. 32, 1110.

Murillo,L.A., Newport,G., Lan,C.Y., Habelitz,S., Dungan,J., and Agabian,N.M. (2005).

Genome-wide transcription profiling of the early phase of biofilm formation by Candida albicans. Eukaryot. Cell. 4, 1562-1573.

Naglik,J., Albrecht,A., Bader,O., and Hube,B. (2004). Candida albicans proteinases and host/pathogen interactions. Cell Microbiol. 6, 915-926.

Nantel,A., Dignard,D., Bachewich,C., Harcus,D., Marcil,A., Bouin,A.P., Sensen,C.W.,

Hogues,H., van het,H.M., Gordon,P., Rigby,T., Benoit,F., Tessier,D.C., Thomas,D.Y., and Whiteway,M. (2002). Transcription profiling of Candida albicans cells undergoing the yeast-to-hyphal transition. Mol. Biol. Cell 13, 3452-3465.

Nathan,C. and Shiloh,M.U. (2000). Reactive oxygen and nitrogen intermediates in the

relationship between mammalian hosts and microbial pathogens. Proc. Natl. Acad. Sci U. S.

A. 97, 8841-8848.

Niimi,M., Cannon,R.D., and Monk,B.C. (1999). Candida albicans pathogenicity: a proteomic perspective. Electrophoresis. 20, 2299-2308.

Okutomi,T., Tanaka,T., Yui,S., Mikami,M., Yamazaki,M., Abe,S., and Yamaguchi,H. (1998).

Anti-Candida activity of calprotectin in combination with neutrophils or lactoferrin.

Microbiol. Immunol. 42, 789-793.

Paul,T.R., Smith,S.N., and Brown,M.R. (1989). Effect of iron depletion on cell-wall antigens of Candida albicans. J Med. Microbiol. 28, 93-100.

Paul,T.R., Smith,S.N., and Brown,M.R.W. (1991). Influence of iron depletion and antifungal antibiotics on cell surface hydrophobicity of Candida albicans. Mycol. Res. 95, 1312-1314.

Ramanan,N. and Wang,Y. (2000). A high-affinity iron permease essential for Candida albicans virulence. Science. 288, 1062-1064.

Raychaudhuri,S., Stuart,J.M., and Altman,R.B. (2000). Principal components analysis to

summarize microarray experiments: application to sporulation time series. Pac. Symp.

Biocomput. :455-66., 455-466.

Reuss,O., Vik,A., Kolter,R., and Morschhauser,J. (2004). The SAT1 flipper, an optimized tool for gene disruption in Candida albicans. Gene. 341:119-27., 119-127.

Robertson,L.S., Causton,H.C., Young,R.A., and Fink,G.R. (2000). The yeast A kinases

differentially regulate iron uptake and respiratory function. Proc. Natl. Acad. Sci U. S. A. 97, 5984-5988.

Samaranayake,Y.H., Samaranayake,L.P., Pow,E.H., Beena,V.T., and Yeung,K.W. (2001).

Antifungal effects of lysozyme and lactoferrin against genetically similar, sequential

Candida albicans isolates from a human immunodeficiency virus-infected southern Chinese cohort. J Clin. Microbiol. 39, 3296-3302.

Santos,R., Buisson,N., Knight,S., Dancis,A., Camadro,J.M., and Lesuisse,E. (2003). Haemin uptake and use as an iron source by Candida albicans: role of CaHMX1-encoded haem oxygenase. Microbiology. 149, 579-588.

Satyanarayana,J., Situ,H., Narasimhamurthy,S., Bhayani,N., Bobek,L.A., and Levine,M.J. (2000).

Divergent solid-phase synthesis and candidacidal activity of MUC7 D1, a 51-residue

histidine-rich N-terminal domain of human salivary mucin MUC7. J Pept. Res. 56, 275-282.

Sigle,H.C., Thewes,S., Niewerth,M., Korting,H.C., Schafer-Korting,M., and Hube,B. (2005).

Oxygen accessibility and iron levels are critical factors for the antifungal action of ciclopirox against Candida albicans. J Antimicrob. Chemother. 55, 663-673.

Soll,D.R. (2002). Candida commensalism and virulence: the evolution of phenotypic plasticity.

Acta Trop. 81, 101-110.

Soll,D.R. (1997). Gene regulation during high-frequency switching in Candida albicans.

Microbiology. 143, 279-288.

Stehr,F., Felk,A., Gacser,A., Kretschmar,M., Mahnss,B., Neuber,K., Hube,B., and Schafer,W.

(2004). Expression analysis of the Candida albicans lipase gene family during experimental infections and in patient samples. FEMS Yeast Res. 4, 401-408.

Sundstrom,P. (2002). Adhesion in Candida spp. Cell Microbiol. 4, 461-469.

Sweet,S.P. and Douglas,L.J. (1991). Effect of iron deprivation on surface composition and virulence determinants of Candida albicans. J Gen. Microbiol. 137, 859-865.

Tamayo,P., Slonim,D., Mesirov,J., Zhu,Q., Kitareewan,S., Dmitrovsky,E., Lander,E.S., and Golub,T.R. (1999). Interpreting patterns of gene expression with self-organizing maps:

methods and application to hematopoietic differentiation. Proc. Natl. Acad. Sci U. S. A. 96, 2907-2912.

Tavazoie,S., Hughes,J.D., Campbell,M.J., Cho,R.J., and Church,G.M. (1999). Systematic determination of genetic network architecture. Nat. Genet. 22, 281-285.

Theiss,S., Ishdorj,G., Brenot,A., Kretschmar,M., Lan,C.Y., Nichterlein,T., Hacker,J., Nigam,S., Agabian,N., and Kohler,G.A. (2006). Inactivation of the phospholipase B gene PLB5 in wild-type Candida albicans reduces cell-associated phospholipase A(2) activity and attenuates virulence. Int. J Med. Microbiol. ..

Tusher,V.G., Tibshirani,R., and Chu,G. (2001). Significance analysis of microarrays applied to

the ionizing radiation response. Proc. Natl. Acad. Sci U. S. A. 98, 5116-5121.

Van der,S.D., Rodrigues-Pousada,R.A., Goodman,H.M., and Van Montagu,M. (1991). Plant enolase: gene structure, expression, and evolution. Plant Cell 3, 719-735.

Vazquez-Torres,A. and Balish,E. (1997). Macrophages in resistance to candidiasis. Microbiol.

Mol. Biol. Rev. 61, 170-192.

White,T.C., Marr,K.A., and Bowden,R.A. (1998). Clinical, cellular, and molecular factors that contribute to antifungal drug resistance. Clin. Microbiol. Rev. 11, 382-402.

Wilson,R.B., Davis,D., Enloe,B.M., and Mitchell,A.P. (2000). A recyclable Candida albicans URA3 cassette for PCR product-directed gene disruptions. Yeast 16, 65-70.

Wilson,R.B., Davis,D., and Mitchell,A.P. (1999). Rapid hypothesis testing with Candida

albicans through gene disruption with short homology regions. J Bacteriol. 181, 1868-1874.

Wolfinger,R.D., Gibson,G., Wolfinger,E.D., Bennett,L., Hamadeh,H., Bushel,P., Afshari,C., and Paules,R.S. (2001). Assessing gene significance from cDNA microarray expression data via mixed models. J Comput. Biol. 8, 625-637.

Yang,Y.L. (2003). Virulence factors of Candida species. J Microbiol. Immunol. Infect. 36, 223-228.

Yang,Y.L., Chen,H.F., Kuo,T.J., and Lin,C.Y. (2006). Mutations on CaENO1 in Candida albicans inhibit cell growth in the presence of glucose. J Biomed. Sci. 13, 313-321.

Yang,Y.L. and Lo,H.J. (2001). Mechanisms of antifungal agent resistance. J Microbiol Immunol Infect 34, 79-86.

Zhao,R., Daniels,K.J., Lockhart,S.R., Yeater,K.M., Hoyer,L.L., and Soll,D.R. (2005). Unique aspects of gene expression during Candida albicans mating and possible G(1) dependency.

Eukaryot. Cell. 4, 1175-1190.

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