In the yeast Kluyveromyces lactis, the inactivation of structural or regulatory glycolytic and fermentative genes generates obligate respiratory mutants which can be characterized by sensitivity to the mitochondrial drug antimycin A on glucose medium (Rag(-) phenotype). Rag(-) mutations can occasionally be generated by the inactivation of genes not evidently related to glycolysis or fermentation. One such gene is the hypoxic regulatory gene KlMGA2. In this work, we report a study of the many defects, in addition to the Rag(-) phenotype, generated by KlMGA2 deletion. We analyzed the fermentative and respiratory metabolism, mitochondrial functioning and morphology in the Klmga2Δ strain. We also examined alterations in the regulation of the ex...
In Saccharomyces cerevisiae, HSL1 (NIK1) encodes a serine-threonine protein kinase involved in cell ...
In the recent past, through advances in development of genetic tools, the budding yeast Kluyveromyce...
KlADH3 and KlADH4 are Kluyveromyces lactis genes encoding the two mitochondrial alcohol dehydrogenas...
Glucose repression is not the predominant regulation of carbon metabolism in K. lactis: regulation o...
Glucose repression is not the predominant regulation of carbon metabolism in K. lactis: regulation o...
In the respiratory yeast Kluyveromyces lactis, little is known about the factors regulating the meta...
The unicellular yeasts are suitable models to study the correlations between oxygen and glucose sens...
Hypoxia is defined as the decline of oxygen availability, depending on environmental supply and cell...
Functional properties of cell membranes depend on their composition, particularly on the relative am...
Functional properties of cell membranes depend on their composition, particularly on the relative am...
Functional properties of cell membranes depend on their composition, particularly on the relative am...
Yeasts belonging to the lineage that underwent whole-genome duplication (WGD) possess a good ferment...
Null mutations in the structural gene encoding phosphoglucose isomerase completely abolish activity ...
In yeast the P-type Ca2+-ATPase of the Golgi apparatus, Pmr1p, is the most important player in calci...
Abstract A lot of studies have been carried out on Saccharomyces cerevisiae, an yeast with a predomi...
In Saccharomyces cerevisiae, HSL1 (NIK1) encodes a serine-threonine protein kinase involved in cell ...
In the recent past, through advances in development of genetic tools, the budding yeast Kluyveromyce...
KlADH3 and KlADH4 are Kluyveromyces lactis genes encoding the two mitochondrial alcohol dehydrogenas...
Glucose repression is not the predominant regulation of carbon metabolism in K. lactis: regulation o...
Glucose repression is not the predominant regulation of carbon metabolism in K. lactis: regulation o...
In the respiratory yeast Kluyveromyces lactis, little is known about the factors regulating the meta...
The unicellular yeasts are suitable models to study the correlations between oxygen and glucose sens...
Hypoxia is defined as the decline of oxygen availability, depending on environmental supply and cell...
Functional properties of cell membranes depend on their composition, particularly on the relative am...
Functional properties of cell membranes depend on their composition, particularly on the relative am...
Functional properties of cell membranes depend on their composition, particularly on the relative am...
Yeasts belonging to the lineage that underwent whole-genome duplication (WGD) possess a good ferment...
Null mutations in the structural gene encoding phosphoglucose isomerase completely abolish activity ...
In yeast the P-type Ca2+-ATPase of the Golgi apparatus, Pmr1p, is the most important player in calci...
Abstract A lot of studies have been carried out on Saccharomyces cerevisiae, an yeast with a predomi...
In Saccharomyces cerevisiae, HSL1 (NIK1) encodes a serine-threonine protein kinase involved in cell ...
In the recent past, through advances in development of genetic tools, the budding yeast Kluyveromyce...
KlADH3 and KlADH4 are Kluyveromyces lactis genes encoding the two mitochondrial alcohol dehydrogenas...