29.12.2012 Views

Growth, Differentiation and Sexuality

Growth, Differentiation and Sexuality

Growth, Differentiation and Sexuality

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

Saporito-Irwin SM, Birse CE, Sypherd PS, Fonzi WA (1995)<br />

PHR1, a pH-regulated gene of C<strong>and</strong>ida albicans, is<br />

required for morphogenesis. Mol Cell Biol 15:601–<br />

613<br />

Schaefer HP (1977) An alkali-soluble polysaccharide from<br />

the cell walls of Coprinus lagopus. ArchMicrobiol<br />

113:79–82<br />

Schmidt M (2004) Survival <strong>and</strong> cytokinesis of Saccharomyces<br />

cerevisiae in the absence of chitin.<br />

Microbiology 150:3253–3260<br />

Schmidt A, Hall A (2002) Guanine nucleotide exchange factors<br />

for Rho GTPases: turning on the switch. Genes<br />

Dev 16:1587–1609<br />

Schmidt M, Bowers B, Varma A, Roh DH, Cabib E (2002)<br />

In budding yeast, contraction of the actomyosin ring<br />

<strong>and</strong> formation of the primary septum at cytokinesis<br />

depend on each other. J Cell Sci 115:293–302<br />

Schoffelmeer EA, Klis FM, Sietsma JH, Cornelissen BJ (1999)<br />

ThecellwallofFusarium oxysporum. Fungal Genet Biol<br />

27:275–282<br />

Sekiya-Kawasaki M, Abe M, Saka A, Watanabe D, Kono K,<br />

Minemura-Asakawa M, Ishihara S, Watanabe T, Ohya Y<br />

(2002) Dissection of upstream regulatory components<br />

of the Rho1p effector, 1,3-β-glucan synthase, in Saccharomyces<br />

cerevisiae. Genetics 162:663–676<br />

Selvaggini S, Munro CA, Paschoud S, Sanglard D, Gow NA<br />

(2004) Independent regulation of chitin synthase <strong>and</strong><br />

chitinase activity in C<strong>and</strong>ida albicans <strong>and</strong> Saccharomyces<br />

cerevisiae. Microbiology 150:921–928<br />

Shahinian S, Bussey H (2000) β-1,6-Glucan synthesis in Saccharomyces<br />

cerevisiae. Mol Microbiol 35:477–489<br />

Shahinian S, Dijkgraaf GJ, Sdicu AM, Thomas DY,<br />

Jakob CA, Aebi M, Bussey H (1998) Involvement of<br />

protein N-glycosyl chain glucosylation <strong>and</strong> processing<br />

in the biosynthesis of cell wall β-1,6-glucan of<br />

Saccharomyces cerevisiae. Genetics 149:843–856<br />

Shaw JA, Mol PC, Bowers B, Silverman SJ, Valdivieso MH,<br />

Duran A, Cabib E (1991) The function of chitin synthases<br />

2 <strong>and</strong> 3 in the Saccharomyces cerevisiae cell cycle.<br />

J Cell Biol 114:111–123<br />

Sietsma JH, Wessels JG (1977) Chemical analysis of the hyphal<br />

wall of Schizophyllum commune. Biochim Biophys<br />

Acta 496:225–239<br />

Sietsma JH, Wessels JGH (1979) Evidence for covalent linkages<br />

between chitin <strong>and</strong> β-glucaninafungalwall.JGen<br />

Microbiol 1979:99–108<br />

Sietsma JH, Wessels JG (1981) Solubility of (1,3)-β-D/(1,6)β-D-glucan<br />

in fungal walls: importance of presumed<br />

linkage between glucan <strong>and</strong> chitin. J Gen Microbiol<br />

125:209–212<br />

Sikkema WD, Lovett JS (1984) Cell wall composition of the<br />

aquatic fungus Blastocladiella emersonii. ExpMycol<br />

8:225–237<br />

Singh P, Chauhan N, Ghosh A, Dixon F, Calderone R (2004)<br />

SKN7 of C<strong>and</strong>ida albicans: mutant construction <strong>and</strong><br />

phenotype analysis. Infect Immun 72:2390–2394<br />

Skucas GP (1967) Structure <strong>and</strong> composition of the resistant<br />

sporangial wall in the fungus allomyces. Am J Bot<br />

54:1152–1158<br />

Smits GJ, Kapteyn JC, van den Ende H, Klis FM (1999) Cell<br />

wall dynamics in yeast. Curr Opin Microbiol 2:348–352<br />

Sprague GF, Cullen PJ, Goehring AS (2004) Yeast signal<br />

transduction: regulation <strong>and</strong> interface with cell biology.<br />

Adv Exp Med Biol 547:91–105<br />

Fungal Cell Wall 103<br />

Spreghini E, Davis DA, Subaran R, Kim M, Mitchell AP<br />

(2003) Roles of C<strong>and</strong>ida albicans Dfg5p <strong>and</strong> Dcw1p<br />

cell surface proteins in growth <strong>and</strong> hypha formation.<br />

Eukaryot Cell 2:746–755<br />

Steinbach WJ, Singh N, Miller JL, Benjamin DK Jr,<br />

Schell WA, Heitman J, Perfect JR (2004) In vitro<br />

interactions between antifungals <strong>and</strong> immunosuppressants<br />

against Aspergillus fumigatus isolates from<br />

transplant <strong>and</strong> nontransplant patients. Antimicrob<br />

Agents Chemother 48:4922–4925<br />

Stolz J, Munro S (2002) The components of the Saccharomyces<br />

cerevisiae mannosyltransferase complex M-<br />

Pol I have distinct functions in mannan synthesis. J Biol<br />

Chem 277:44801–44808<br />

Sugawara T, Takahashi S, Osumi M, Ohno N (2004) Refinement<br />

of the structures of cell-wall glucans of Schizosaccharomyces<br />

pombe by chemical modification <strong>and</strong> NMR<br />

spectroscopy. Carbohydr Res 339:2255–2265<br />

Sugiura R, Sio S, Shuntoh H, Kuno T (2002) Calcineurin<br />

phosphatase in signal transduction: lessons from fission<br />

yeast. Genes Cells 7:619–627<br />

Surarit R, Gopal PK, Shepherd MG (1988) Evidence for a glycosidic<br />

linkage between chitin <strong>and</strong> glucan in the cell<br />

wall of C<strong>and</strong>ida albicans. J Gen Microbiol 134:1723–<br />

1730<br />

Tada T, Ohmori M, Iida H (2003) Molecular dissection of<br />

the hydrophobic segments H3 <strong>and</strong> H4 of the yeast Ca 2+<br />

channel component Mid1. J Biol Chem 278:9647–9654<br />

Takaya N, Yamazaki D, Horiuchi H, Ohta A, Takagi M (1998)<br />

Cloning <strong>and</strong> characterization of a chitinase-encoding<br />

gene (chiA) fromAspergillus nidulans, disruptionof<br />

which decreases germination frequency <strong>and</strong> hyphal<br />

growth. Biosci Biotechnol Biochem 62:60–65<br />

Takeshita N, Ohta A, Horiuchi H (2002) csmA,ageneencoding<br />

a class V chitin synthase with a myosin motor-like<br />

domain of Aspergillus nidulans,istranslatedasasingle<br />

polypeptide <strong>and</strong> regulated in response to osmotic conditions.<br />

Biochem Biophys Res Commun 298:103–109<br />

Tatebayashi K, Takekawa M, Saito H (2003) A docking<br />

site determining specificity of Pbs2 MAPKK for<br />

Ssk2/Ssk22 MAPKKKs in the yeast HOG pathway.<br />

EMBO J 22:3624–3634<br />

Thompson JR, Douglas CM, Li W, Jue CK, Pramanik B,<br />

Yuan X, Rude TH, Toffaletti DL, Perfect JR, Kurtz M<br />

(1999) A glucan synthase FKS1 homolog in Cryptococcus<br />

neoformans is single copy <strong>and</strong> encodes an essential<br />

function. J Bacteriol 181:444–453<br />

Tominaga Y, Tsujisaka Y (1981) Investigations of the structure<br />

of Rhizopus cell wall with lytic enzymes. Agric<br />

Biol Chem 45:1569–1575<br />

Torosantucci A, Chiani P, de Bernardis F, Cassone A,<br />

Calera JA, Calderone R (2002) Deletion of the twocomponent<br />

histidine kinase gene (CHK1) ofC<strong>and</strong>ida<br />

albicans contributes to enhanced growth inhibition<br />

<strong>and</strong> killing by human neutrophils in vitro. Infect<br />

Immun 70:985–987<br />

Tougan T, Chiba Y, Kakihara Y, Hirata A, Nojima H (2002)<br />

Meu10 is required for spore wall maturation in<br />

Schizosaccharomyces pombe. Genes Cells 7:217–231<br />

Traxler P, Gruner J, Auden JA (1977) Papulac<strong>and</strong>ins, a new<br />

family of antibiotics with antifungal activity. I. Fermentation,<br />

isolation, chemical <strong>and</strong> biological characterization<br />

of papulac<strong>and</strong>ins A, B, C, D <strong>and</strong> E. J Antibiot<br />

(Tokyo) 30:289–296

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!