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Interorganellar communication: altered nuclear gene expression profiles in a yeast mitochondrial DNA mutant (CROSBI ID 481754)

Prilog sa skupa u zborniku | sažetak izlaganja sa skupa | međunarodna recenzija

Traven, Ana ; Wong, Johnson ; Xu, Deming ; Ingles, C. James ; Sopta, Mary Interorganellar communication: altered nuclear gene expression profiles in a yeast mitochondrial DNA mutant // EMBO Lecture Course : Cellular Signalling in development and disease : Abstracts / Terzić, J. ; Dikić, I. ; Čikeš, V. (ur.). Split, 2001. str. 41-41

Podaci o odgovornosti

Traven, Ana ; Wong, Johnson ; Xu, Deming ; Ingles, C. James ; Sopta, Mary

engleski

Interorganellar communication: altered nuclear gene expression profiles in a yeast mitochondrial DNA mutant

Communication between mitochondria and the nucleus is important for a variety of cellular processes such as carbohydrate and nitrogen metabolism, mating and sporulation and cell growth and morphogenesis. It has long been known that the functional state of mitochondria can influence nuclear gene expression> For example, in yeast cells lacking the mitochondrial genome, the expression of several nuclear genes, such as CIT2 (citrate synthase), MRP13 (mitochondrial ribosomal protein) and DLD3 (d-lactate dehydrogenase) has been reported to be altered. Here we show by microarray analysis of the genome-wide transcription profile of Saccharomyces cerevisiae that yeast petite mutants lacking mitochondrial DNA induce genes coding for mitochondrial proteins, enzymes of the glycolytic pathway and the citric acid cycle, cell wall components, membrane transporters and genes normally induced by nutrient deprivation and a variety of stresses. Consistent with the observed induction of genes related to stress and those encoding membrane transporters, yeast petite cells showed increased resistance to severe heat shock and exhibited a multidrug resistance phenotype. The observed changes in nuclear gene expression in cells lacking mitochondrial DNA may have implications for the role of mitochondria in processes such as carcinogenesis and aging.

yeast; mitochondria; microarray; multi-drug resistance

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

Podaci o prilogu

41-41.

2001.

objavljeno

Podaci o matičnoj publikaciji

EMBO Lecture Course : Cellular Signalling in development and disease : Abstracts

Terzić, J. ; Dikić, I. ; Čikeš, V.

Split:

Podaci o skupu

EMBO Lecture Course : Cellular Signalling in development and disease

predavanje

21.09.2001-27.09.2001

Split, Hrvatska

Povezanost rada

Biologija