The yeast peroxiredoxin Tsa1 protects against protein-aggregate-induced oxidative stress
about
Microbial 2-Cys Peroxiredoxins: Insights into Their Complex Physiological RolesNonlinear feedback drives homeostatic plasticity in H2O2 stress response.Responses of yeast biocontrol agents to environmental stress.Transcriptome and network analyses in Saccharomyces cerevisiae reveal that amphotericin B and lactoferrin synergy disrupt metal homeostasis and stress response.ER stress causes widespread protein aggregation and prion formation.The frequency of yeast [PSI+] prion formation is increased during chronological ageing.Revealing oxidative damage to enzymes of carbohydrate metabolism in yeast: An integration of 2D DIGE, quantitative proteomics, and bioinformatics.Distinct stress conditions result in aggregation of proteins with similar properties.An interdomain network: the endobacterium of a mycorrhizal fungus promotes antioxidative responses in both fungal and plant hosts.Exposure to selenomethionine causes selenocysteine misincorporation and protein aggregation in Saccharomyces cerevisiae.Sequestration of Ribosome during Protein Aggregate Formation: Contribution of ribosomal RNALoss of mRNA surveillance pathways results in widespread protein aggregation.Asymmetric damage segregation at cell division via protein aggregate fusion and attachment to organelles.
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The yeast peroxiredoxin Tsa1 protects against protein-aggregate-induced oxidative stress
description
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name
The yeast peroxiredoxin Tsa1 protects against protein-aggregate-induced oxidative stress
@en
type
label
The yeast peroxiredoxin Tsa1 protects against protein-aggregate-induced oxidative stress
@en
prefLabel
The yeast peroxiredoxin Tsa1 protects against protein-aggregate-induced oxidative stress
@en
P2860
P356
P1476
The yeast peroxiredoxin Tsa1 protects against protein-aggregate-induced oxidative stress
@en
P2093
Alan J Weids
P2860
P304
P356
10.1242/JCS.144022
P407
P577
2014-01-14T00:00:00Z