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Items: 1 to 20 of 29

1.

Proteomic insights into adaptive responses of Saccharomyces cerevisiae to the repeated vacuum fermentation.

Cheng JS, Zhou X, Ding MZ, Yuan YJ.

Appl Microbiol Biotechnol. 2009 Jul;83(5):909-23. doi: 10.1007/s00253-009-2037-1. Epub 2009 Jun 2.

PMID:
19488749
2.

Stress-tolerance of baker's-yeast (Saccharomyces cerevisiae) cells: stress-protective molecules and genes involved in stress tolerance.

Shima J, Takagi H.

Biotechnol Appl Biochem. 2009 May 29;53(Pt 3):155-64. doi: 10.1042/BA20090029. Review.

PMID:
19476439
3.

Mechanisms of ethanol tolerance in Saccharomyces cerevisiae.

Ma M, Liu ZL.

Appl Microbiol Biotechnol. 2010 Jul;87(3):829-45. doi: 10.1007/s00253-010-2594-3. Epub 2010 May 13. Review.

PMID:
20464391
4.

Oxidative stress responses of the yeast Saccharomyces cerevisiae.

Jamieson DJ.

Yeast. 1998 Dec;14(16):1511-27. Review.

5.

New aspects on phosphate sensing and signalling in Saccharomyces cerevisiae.

Mouillon JM, Persson BL.

FEMS Yeast Res. 2006 Mar;6(2):171-6. Review.

6.

Yeast responses to stresses associated with industrial brewery handling.

Gibson BR, Lawrence SJ, Leclaire JP, Powell CD, Smart KA.

FEMS Microbiol Rev. 2007 Sep;31(5):535-69. Epub 2007 Jul 20. Review.

7.

Detecting nitrated proteins by proteomic technologies.

Butt YK, Lo SC.

Methods Enzymol. 2008;440:17-31. doi: 10.1016/S0076-6879(07)00802-6. Review.

PMID:
18423209
8.

Metabolic engineering for pentose utilization in Saccharomyces cerevisiae.

Hahn-Hägerdal B, Karhumaa K, Jeppsson M, Gorwa-Grauslund MF.

Adv Biochem Eng Biotechnol. 2007;108:147-77. Review.

PMID:
17846723
9.

Proteomic analysis of Saccharomyces cerevisiae.

Pham TK, Wright PC.

Expert Rev Proteomics. 2007 Dec;4(6):793-813. Review.

PMID:
18067417
10.

[Alternative ways of stress regulation in cells of Saccharomyces cerevisiae: transcriptional activators Msn2 and Msn4].

Erkina TI, Lavrova MV, Erkin AM.

Tsitologiia. 2009;51(3):271-8. Review. Russian.

PMID:
19435282
11.

Post-transcriptional regulation of gene expression in response to iron deficiency: co-ordinated metabolic reprogramming by yeast mRNA-binding proteins.

Vergara SV, Thiele DJ.

Biochem Soc Trans. 2008 Oct;36(Pt 5):1088-90. doi: 10.1042/BST0361088. Review.

PMID:
18793194
12.

Stress tolerance: the key to effective strains of industrial baker's yeast.

Attfield PV.

Nat Biotechnol. 1997 Dec;15(13):1351-7. Review.

PMID:
9415886
13.

Genomics in the detection of damage in microbial systems: cell wall stress in yeast.

Arroyo J, Bermejo C, García R, Rodríguez-Peña JM.

Clin Microbiol Infect. 2009 Jan;15 Suppl 1:44-6. doi: 10.1111/j.1469-0691.2008.02676.x. Review.

14.

[The stress response in the yeast Saccharomyces cerevisiae].

Folch-Mallol JL, Garay-Arroyo A, Lledías F, Covarrubias Robles AA.

Rev Latinoam Microbiol. 2004 Jan-Jun;46(1-2):24-46. Review. Spanish.

PMID:
17061523
15.

Molecular mechanisms of the yeast adaptive response and tolerance to stresses encountered during ethanol fermentation.

Auesukaree C.

J Biosci Bioeng. 2017 Aug;124(2):133-142. doi: 10.1016/j.jbiosc.2017.03.009. Epub 2017 Apr 17. Review.

PMID:
28427825
16.

Fungal heat-shock proteins in human disease.

Burnie JP, Carter TL, Hodgetts SJ, Matthews RC.

FEMS Microbiol Rev. 2006 Jan;30(1):53-88. Review.

17.

Nutrient signals driving cell growth.

Dechant R, Peter M.

Curr Opin Cell Biol. 2008 Dec;20(6):678-87. doi: 10.1016/j.ceb.2008.09.009. Epub 2008 Nov 1. Review.

PMID:
18930818
18.

Drug:H+ antiporters in chemical stress response in yeast.

Sá-Correia I, dos Santos SC, Teixeira MC, Cabrito TR, Mira NP.

Trends Microbiol. 2009 Jan;17(1):22-31. doi: 10.1016/j.tim.2008.09.007. Epub 2008 Dec 4. Review.

PMID:
19062291
19.

Coping with oxidative stress. The yeast model.

de la Torre-Ruiz MA, Pujol N, Sundaran V.

Curr Drug Targets. 2015;16(1):2-12. Review.

PMID:
25330032
20.

The genes and enzymes involved in the biosynthesis of thiamin and thiamin diphosphate in yeasts.

Kowalska E, Kozik A.

Cell Mol Biol Lett. 2008;13(2):271-82. Epub 2008 Apr 10. Review.

PMID:
18161008

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