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Items: 9

1.

The 'scavenger' m7GpppX pyrophosphatase activity of Dcs1 modulates nutrient-induced responses in yeast.

Malys N, Carroll K, Miyan J, Tollervey D, McCarthy JE.

Nucleic Acids Res. 2004 Jul 7;32(12):3590-600. Print 2004.

2.

Molecular biology of trehalose and the trehalases in the yeast Saccharomyces cerevisiae.

Nwaka S, Holzer H.

Prog Nucleic Acid Res Mol Biol. 1998;58:197-237. Review.

PMID:
9308367
3.

Acid trehalase in yeasts and filamentous fungi: localization, regulation and physiological function.

Parrou JL, Jules M, Beltran G, Fran├žois J.

FEMS Yeast Res. 2005 Apr;5(6-7):503-11. Review.

4.

Glucose-stimulated cAMP-protein kinase A pathway in yeast Saccharomyces cerevisiae.

Tamaki H.

J Biosci Bioeng. 2007 Oct;104(4):245-50. Review.

PMID:
18023794
5.

Control of mRNA turnover as a mechanism of glucose repression in Saccharomyces cerevisiae.

Scheffler IE, de la Cruz BJ, Prieto S.

Int J Biochem Cell Biol. 1998 Nov;30(11):1175-93. Review.

PMID:
9839444
6.

The hexokinase 2-dependent glucose signal transduction pathway of Saccharomyces cerevisiae.

Moreno F, Herrero P.

FEMS Microbiol Rev. 2002 Mar;26(1):83-90. Review.

7.

Reserve carbohydrates metabolism in the yeast Saccharomyces cerevisiae.

Fran├žois J, Parrou JL.

FEMS Microbiol Rev. 2001 Jan;25(1):125-45. Review.

8.

Diacylglycerol pyrophosphate phosphatase in Saccharomyces cerevisiae.

Oshiro J, Han GS, Carman GM.

Biochim Biophys Acta. 2003 Nov 30;1635(1):1-9. Review.

PMID:
14642771
9.

Trehalases and trehalose hydrolysis in fungi.

Jorge JA, Polizeli ML, Thevelein JM, Terenzi HF.

FEMS Microbiol Lett. 1997 Sep 15;154(2):165-71. Review.

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