Gupta Deena Nath, Rani Ruchi, Kokane Amol D, Ghosh Dilip Kumar, Tomar Shailly, Sharma Ashwani Kumar
Department of Biosciences and Bioengineering, Indian Institute of Technology Roorkee, Roorkee 247 667, India.
Plant Virology Laboratory, ICAR-Central Citrus Research Institute, Nagpur, India.
Int J Biol Macromol. 2022 Jun 1;209(Pt A):1088-1099. doi: 10.1016/j.ijbiomac.2022.04.086. Epub 2022 Apr 19.
In present work, the recombinant cytoplasmic 2-Cys peroxiredoxin from Citrus sinensis (CsPrx) was purified and characterized. The peroxidase activity was examined with different substrates using DTT, a non-physiological electron donor. The conformational studies, in oxidized and reduced states, were performed using circular dichroism (CD) and fluorescence measurement. The CD analysis showed higher α-helical content for reduced state of the protein. The thermal stability studies of CsPrx by Differential Scanning Calorimetry (DSC) showed that oxidized state is more stable as compared to the reduced state of CsPrx. In vitro studies showed that the CsPrx provides a protective shield against ROS and free radicals that participate in the degradation of plasmid DNA. The pre-treatment of 10 μM CsPrx provide almost 100% protection against peroxide-mediated cell killing in the Vero cells. CsPrx showed significant cell proliferation and wound healing properties. The superior morphology of viable cells and wound closure was found at 20 μM CsPrx treated for 12 h. The results demonstrated that CsPrx is a multifaceted protein with a significant role in cell proliferation, wound healing and protection against hydrogen peroxide-induced cellular damage. This could be the first report of a plant peroxiredoxin being characterized for biomedical applications.
在本研究中,对来自甜橙的重组细胞质2-半胱氨酸过氧化物酶(CsPrx)进行了纯化和表征。使用非生理性电子供体二硫苏糖醇(DTT),以不同底物检测过氧化物酶活性。利用圆二色性(CD)和荧光测量对氧化态和还原态的构象进行了研究。CD分析表明,该蛋白还原态的α-螺旋含量更高。通过差示扫描量热法(DSC)对CsPrx进行热稳定性研究表明,与CsPrx的还原态相比,氧化态更稳定。体外研究表明,CsPrx可提供针对参与质粒DNA降解的活性氧(ROS)和自由基的保护屏障。10 μM CsPrx预处理可对Vero细胞中过氧化物介导的细胞杀伤提供几乎100%的保护。CsPrx表现出显著的细胞增殖和伤口愈合特性。在20 μM CsPrx处理12小时后,发现活细胞的形态良好且伤口闭合。结果表明,CsPrx是一种多面蛋白,在细胞增殖、伤口愈合以及抵抗过氧化氢诱导的细胞损伤方面发挥着重要作用。这可能是关于植物过氧化物酶用于生物医学应用表征的首篇报道。