Background: Functional genomics has received considerable attention in the post-genomic era, as it aims to identify function(s) for different genes. One way to study gene function is to investigate the alterations in the responses of deletion mutants to different stimuli. Here we investigate the genetic profile of yeast non-essential gene deletion array (yGDA, ∼4700 strains) for increased sensitivity to paromomycin, which targets the process of protein synthesis. Results: As expected, our analysis indicated that the majority of deletion strains (134) with increased sensitivity to paromomycin, are involved in protein biosynthesis. The remaining strains can be divided into smaller functional categories: metabolism (45), cellular component bio...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
Four recent \u27chemical genomic\u27 studies, using genome-scale collections of yeast gene deletions...
Genome-metabolism interactions enable cell growth. To probe the extent of these interactions and del...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
AbstractGene deletion studies in yeast have shown that only ∼18% of its genes are essential for surv...
Extreme overproduction of gratuitous proteins can overload cellular protein production resources, le...
AbstractNearly 20% of yeast genes are required for viability, hindering genetic analysis with knocko...
The budding yeast Saccharomyces cerevisiae is the most well characterized model organism for systema...
AbstractStudy of mutant phenotypes is a fundamental method for understanding gene function. The cons...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
The budding yeast Saccharomyces cerevisiae is the most well characterized model organism for systema...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
AbstractStudy of mutant phenotypes is a fundamental method for understanding gene function. The cons...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
Four recent \u27chemical genomic\u27 studies, using genome-scale collections of yeast gene deletions...
Genome-metabolism interactions enable cell growth. To probe the extent of these interactions and del...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
AbstractGene deletion studies in yeast have shown that only ∼18% of its genes are essential for surv...
Extreme overproduction of gratuitous proteins can overload cellular protein production resources, le...
AbstractNearly 20% of yeast genes are required for viability, hindering genetic analysis with knocko...
The budding yeast Saccharomyces cerevisiae is the most well characterized model organism for systema...
AbstractStudy of mutant phenotypes is a fundamental method for understanding gene function. The cons...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
The budding yeast Saccharomyces cerevisiae is the most well characterized model organism for systema...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
AbstractStudy of mutant phenotypes is a fundamental method for understanding gene function. The cons...
Determining the effect of gene deletion is a fundamental approach to understanding gene function. Co...
Four recent \u27chemical genomic\u27 studies, using genome-scale collections of yeast gene deletions...
Genome-metabolism interactions enable cell growth. To probe the extent of these interactions and del...