| Literature DB >> 26843371 |
Sung Hyun Hong1,2, Seung Sik Lee1, Jeong Min Chung3, Hyun Suk Jung3, Sudhir Singh1, Suvendu Mondal1, Ho Hee Jang4, Jae-Young Cho5, Hyeun-Jong Bae2, Byung Yeoup Chung6.
Abstract
Yeast peroxiredoxin II (yPrxII) is an antioxidant enzyme that plays a protective role against the damage caused by reactive oxygen species (ROS) in Saccharomyces cerevisiae. This enzyme consists of 196 amino acids containing 2-Cys Prx with highly conserved two active cysteine residues at positions 48 and 171. The yPrxII has dual enzymatic functions as a peroxidase and molecular chaperone. To understand the effect of additional cysteine residues on dual functions of yPrxII, S79C-yPrxII and S109C-yPrxII, the substitution of Ser with Cys residue at 79 and 109 positions, respectively, was generated. S109C-yPrxII and S79C-yPrxII showed 3.7- and 2.7-fold higher chaperone and peroxidase activity, respectively, than the wild type (WT). The improvement in enzyme activity was found to be closely associated with structural changes in proteins. S109C-yPrxII had increased β-sheet in its secondary structure and formed high-molecular-weight (HMW) as well as low-molecular-weight (LMW) complexes, but S79C-yPrxII formed only LMW complexes. HMW complexes predominantly exhibited a chaperone function, and LMW complexes showed a peroxidase function. In addition, transgenic yeast cells over-expressing Cys-substituted yPrxII showed greater tolerance against heat and oxidative stress compared to WT-yPrxII.Entities:
Keywords: 2-Cys peroxiredoxin; Heat tolerance; Molecular chaperone; Oxidative stress; Peroxidase; Site-directed mutagenesis
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Year: 2016 PMID: 26843371 DOI: 10.1007/s00709-016-0948-0
Source DB: PubMed Journal: Protoplasma ISSN: 0033-183X Impact factor: 3.356