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Items: 1 to 20 of 166

1.

A novel calcineurin-independent activity of cyclosporin A in Saccharomyces cerevisiae.

Singh-Babak SD, Shekhar T, Smith AM, Giaever G, Nislow C, Cowen LE.

Mol Biosyst. 2012 Oct;8(10):2575-84. doi: 10.1039/c2mb25107h.

PMID:
22751784
2.

Hsp90 governs echinocandin resistance in the pathogenic yeast Candida albicans via calcineurin.

Singh SD, Robbins N, Zaas AK, Schell WA, Perfect JR, Cowen LE.

PLoS Pathog. 2009 Jul;5(7):e1000532. doi: 10.1371/journal.ppat.1000532. Epub 2009 Jul 31.

3.

Synergy of the antibiotic colistin with echinocandin antifungals in Candida species.

Zeidler U, Bougnoux ME, Lupan A, Helynck O, Doyen A, Garcia Z, Sertour N, Clavaud C, Munier-Lehmann H, Saveanu C, d'Enfert C.

J Antimicrob Chemother. 2013 Jun;68(6):1285-96. doi: 10.1093/jac/dks538. Epub 2013 Feb 1.

5.

A genome-wide screening of potential target genes to enhance the antifungal activity of micafungin in Schizosaccharomyces pombe.

Zhou X, Ma Y, Fang Y, gerile W, Jaiseng W, Yamada Y, Kuno T.

PLoS One. 2013 May 30;8(5):e65904. doi: 10.1371/journal.pone.0065904. Print 2013.

7.

The pleitropic drug ABC transporters from Saccharomyces cerevisiae.

Rogers B, Decottignies A, Kolaczkowski M, Carvajal E, Balzi E, Goffeau A.

J Mol Microbiol Biotechnol. 2001 Apr;3(2):207-14. Review.

PMID:
11321575
8.

New Fks hot spot for acquired echinocandin resistance in Saccharomyces cerevisiae and its contribution to intrinsic resistance of Scedosporium species.

Johnson ME, Katiyar SK, Edlind TD.

Antimicrob Agents Chemother. 2011 Aug;55(8):3774-81. doi: 10.1128/AAC.01811-10. Epub 2011 May 16.

9.

The yeast FKS1 gene encodes a novel membrane protein, mutations in which confer FK506 and cyclosporin A hypersensitivity and calcineurin-dependent growth.

Eng WK, Faucette L, McLaughlin MM, Cafferkey R, Koltin Y, Morris RA, Young PR, Johnson RK, Livi GP.

Gene. 1994 Dec 30;151(1-2):61-71.

PMID:
7530227
10.

Functional characterization of the regulators of calcineurin in Candida glabrata.

Miyazaki T, Izumikawa K, Nagayoshi Y, Saijo T, Yamauchi S, Morinaga Y, Seki M, Kakeya H, Yamamoto Y, Yanagihara K, Miyazaki Y, Kohno S.

FEMS Yeast Res. 2011 Dec;11(8):621-30. doi: 10.1111/j.1567-1364.2011.00751.x. Epub 2011 Sep 19.

11.
13.

The ATP-binding cassette multidrug transporter Snq2 of Saccharomyces cerevisiae: a novel target for the transcription factors Pdr1 and Pdr3.

Mahé Y, Parle-McDermott A, Nourani A, Delahodde A, Lamprecht A, Kuchler K.

Mol Microbiol. 1996 Apr;20(1):109-17.

PMID:
8861209
14.

Differential expression and function of two homologous subunits of yeast 1,3-beta-D-glucan synthase.

Mazur P, Morin N, Baginsky W, el-Sherbeini M, Clemas JA, Nielsen JB, Foor F.

Mol Cell Biol. 1995 Oct;15(10):5671-81.

15.

Genetic and genomic architecture of the evolution of resistance to antifungal drug combinations.

Hill JA, Ammar R, Torti D, Nislow C, Cowen LE.

PLoS Genet. 2013 Apr;9(4):e1003390. doi: 10.1371/journal.pgen.1003390. Epub 2013 Apr 4.

17.

Membrane-active compounds activate the transcription factors Pdr1 and Pdr3 connecting pleiotropic drug resistance and membrane lipid homeostasis in saccharomyces cerevisiae.

Schüller C, Mamnun YM, Wolfger H, Rockwell N, Thorner J, Kuchler K.

Mol Biol Cell. 2007 Dec;18(12):4932-44. Epub 2007 Sep 19.

18.

Metabolic control of antifungal drug resistance.

Robbins N, Collins C, Morhayim J, Cowen LE.

Fungal Genet Biol. 2010 Feb;47(2):81-93. doi: 10.1016/j.fgb.2009.07.004. Epub 2009 Jul 10.

PMID:
19595784
19.

Pdr1 regulates multidrug resistance in Candida glabrata: gene disruption and genome-wide expression studies.

Vermitsky JP, Earhart KD, Smith WL, Homayouni R, Edlind TD, Rogers PD.

Mol Microbiol. 2006 Aug;61(3):704-22. Epub 2006 Jun 27.

20.
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