Investigation of structural and functional consequences of T44 and R146 substitutions in Saccharomyces cerevisiae Thiol specific antioxidant 1 protein (Tsa 1p) (2011)
- Authors:
- Autor USP: NETTO, LUIS EDUARDO SOARES - IB
- Unidade: IB
- Subjects: SACCHAROMYCES; ANTIOXIDANTES; PROTEÍNAS
- Language: Inglês
- Imprenta:
- Source:
- Título do periódico: Program Book Proceedings
- Conference titles: São Paulo Advanced School on Redox Processes in Biomedicine
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ABNT
BAGINI, R. H.; CARLOS, A. T Jr.; NETTO, Luis Eduardo Soares; OLIVEIRA, M. A. Investigation of structural and functional consequences of T44 and R146 substitutions in Saccharomyces cerevisiae Thiol specific antioxidant 1 protein (Tsa 1p). Anais.. São Pedro: [s.n.], 2011. -
APA
Bagini, R. H., Carlos, A. T. J., Netto, L. E. S., & Oliveira, M. A. (2011). Investigation of structural and functional consequences of T44 and R146 substitutions in Saccharomyces cerevisiae Thiol specific antioxidant 1 protein (Tsa 1p). In Program Book Proceedings. São Pedro. -
NLM
Bagini RH, Carlos ATJ, Netto LES, Oliveira MA. Investigation of structural and functional consequences of T44 and R146 substitutions in Saccharomyces cerevisiae Thiol specific antioxidant 1 protein (Tsa 1p). Program Book Proceedings. 2011 ; -
Vancouver
Bagini RH, Carlos ATJ, Netto LES, Oliveira MA. Investigation of structural and functional consequences of T44 and R146 substitutions in Saccharomyces cerevisiae Thiol specific antioxidant 1 protein (Tsa 1p). Program Book Proceedings. 2011 ; - Thiol specificity in Ohr/OhrR pathway, a major Organic Hydroperoxide response system in bacteria
- Regulation of genes encoding organic hydroperoxide resistance (Ohr) proteins in Chromobacterium violaceum
- The involvement of 8-oxoguanine repair in the adaptive response of yeast to oxidative stress
- Papel da Tiorredoxina Peroxidase Ahp1 de S. cerevisiae na proteção contra dados oxidativos em células sem o gene da catalase peroxissomal (CTA1)
- Structural and biochemical characterization of peroxiredoxin Qβ from Xylella fastidiosa: catalytic mechanism and high reactivity
- S-Glutathionylation of the 20S proteasome increases degradation of oxidized proteins in the yeast Saccharomyces cerevisiae
- Glutaredoxin 2 dethiolic activity upon the S-Glutathionylated 20S proteasome
- Conformational changes between reduced and oxidized states of the reductase thioredoxin (TrxR1) from Saccharomices cerevisae: insights in Thioredoxin system evolution
- Peroxiredoxin: structure, function and regulation of gene expression
- Mithochondrial thioredoxin peroxidase is reduced by ascorbate
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