Investigations in Yeast Functional Genomics and Molecular Biology

Investigations in Yeast Functional Genomics and Molecular Biology

Eckwahl, Matthew

Apple Academic Press Inc.

03/2021

412

Mole

Inglês

9781774633311

15 a 20 dias

760

Descrição não disponível.
Introduction. Cell Polarity, Growth, and Cell Cycle. Daughter-Specific Transcription Factors Regulate Cell Size Control in Budding Yeast. Modeling Robustness Tradeoffs in Yeast Cell Polarization Induced by Spatial Gradients. Multisite Phosphorylation of the Guanine Nucleotide Exchange Factor Cdc24 during Yeast Cell Polarization. Yeast Regulatory Circuits. Roles of Candida albicans Gat2, a GATA-Type Zinc Finger Transcription Factor, in Biofilm Formation, Filamentous Growth and Virulence. Deciphering Human Heat Shock Transcription Factor 1 Regulation via Post-Translational Modification in Yeast. Environmental Regulation of Prions in Yeast. Heterologous Gln/Asn-Rich Proteins Impede the Propagation of Yeast Prions by Altering Chaperone Availability. Gene Expression and Trait Locus Analysis. Strategy of Transcription Regulation in the Budding Yeast. A Screen for RNA-Binding Proteins in Yeast Indicates Dual Functions for Many Enzymes. Genetic Landscape of Open Chromatin in Yeast. Comparative Genomics. High Quality de novo Sequencing and Assembly of the Saccharomyces arboricolus Genome. Comparative Gene Expression Between Two Yeast Species. Whole-Genome Comparison Reveals Novel Genetic Elements That Characterize the Genome of Industrial Strains of Saccharomyces cerevisiae. Index.
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Yeast Prions;Heat Shock Transcription Factor;gene;HSF1 Activity;expression;Heat Shock;strains;Additional Fi Le;s303;S303 Phosphorylation;phosphorylation;Budding Yeast;cells;Gat2 Mutant;cell;Text S1;cycle;Gene Expression Traits;cerevisiae;PB1 Domain;genome;Trp1-289 Ura3-52;QTL Mapping;Filamentous Growth;Yeast Prion Proteins;PrP;Prion Protein;Upstream Sequence Conservation;RNA Bind Protein;GEF Cdc24;Sensu Stricto Species;Prion Domain;High Molecular Weight Genomic DNA;Fi Lamentous Growth;RNA Bind Motif