The Role of Glucose-6-phosphate Dehydrogenase in the Wine Yeast Hanseniaspora uvarum .
Jürgen J HeinischAndrea MurraLucía Fernández MurilloHans-Peter SchmitzPublished in: International journal of molecular sciences (2024)
Hanseniaspora uvarum is the predominant yeast species in the majority of wine fermentations, which has only recently become amenable to directed genetic manipulation. The genetics and metabolism of H. uvarum have been poorly studied as compared to other yeasts of biotechnological importance. This work describes the construction and characterization of homozygous deletion mutants in the HuZWF1 gene, encoding glucose-6-phosphate dehydrogenase (G6PDH), which provides the entrance into the oxidative part of the pentose phosphate pathway (PPP) and serves as a major source of NADPH for anabolic reactions and oxidative stress response. Huzwf1 deletion mutants grow more slowly on glucose medium than wild-type and are hypersensitive both to hydrogen peroxide and potassium bisulfite, indicating that G6PDH activity is required to cope with these stresses. The mutant also requires methionine for growth. Enzyme activity can be restored by the expression of heterologous G6PDH genes from other yeasts and humans under the control of a strong endogenous promoter. These findings provide the basis for a better adaptation of H. uvarum to conditions used in wine fermentations, as well as its use for other biotechnological purposes and as an expression organism for studying G6PDH functions in patients with hemolytic anemia.
Keyphrases
- saccharomyces cerevisiae
- wild type
- hydrogen peroxide
- poor prognosis
- genome wide
- blood glucose
- nitric oxide
- dna methylation
- copy number
- chronic kidney disease
- gene expression
- long non coding rna
- transcription factor
- blood pressure
- metabolic syndrome
- reactive oxygen species
- skeletal muscle
- weight loss
- solid state
- genetic diversity