Glutathione peroxidases (GPxs) form a broad family of antioxidant proteins essential for maintaining redox homeostasis in eukaryotic cells. In this study, we used an integrative approach that combines bioinformatics, molecular biology, and biochemistry to investigate the role of GPxs in reactive oxygen species detoxification in the unicellular eukaryotic model organism Tetrahymena thermophila. Both phylogenetic and mechanistic empirical model analyses provided indications about the evolutionary relationships among the GPXs of Tetrahymena and the orthologous enzymes of phylogenetically related species. In-silico gene characterization and text mining were used to predict the functional relationships between GPxs and other physiologically-relevant processes. The GPx genes contain conserved transcriptional regulatory elements in the promoter region, which suggest that transcription is under tight control of specialized signaling pathways. The bioinformatic findings were next experimentally validated by studying the time course of gene transcription and enzymatic activity after copper (Cu) exposure. Results emphasize the role of GPxs in the detoxification pathways that, by complex regulation of GPx gene expression, enable Tethraymena to survive in high Cu concentrations and the associated redox environment.
Molecular Characterization, Protein-Protein Interaction Network, and Evolution of Four Glutathione Peroxidases from Tetrahymena thermophila.
四膜虫(Tetrahymena thermophila)四种谷胱甘肽过氧化物酶的分子特征、蛋白质-蛋白质相互作用网络和进化
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作者:Ferro Diana, Bakiu Rigers, Pucciarelli Sandra, Miceli Cristina, Vallesi Adriana, Irato Paola, Santovito Gianfranco
| 期刊: | Antioxidants | 影响因子: | 6.600 |
| 时间: | 2020 | 起止号: | 2020 Oct 2; 9(10):949 |
| doi: | 10.3390/antiox9100949 | 研究方向: | 其它 |
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