Department of Biotechnology, Heritage Institute of Technology, Chowbaga Road, Anandapur. P.O. East Kolkata Township, Kolkata, 700107, India.
Mol Cell Biochem. 2010 Mar;336(1-2):109-26. doi: 10.1007/s11010-010-0384-y. Epub 2010 Feb 5.
Glutathione acts as a protein disulphide reductant, which detoxifies herbicides by conjugation, either spontaneously or by the activity of one of a number of glutathione-S-transferases (GSTs), and regulates gene expression in response to environmental stress and pathogen attack. GSTs play roles in both normal cellular metabolisms as well as in the detoxification of a wide variety of xenobiotic compounds, and they have been intensively studied with regard to herbicide detoxification in plants. A newly discovered plant GST subclass has been implicated in numerous stress responses, including those arising from pathogen attack, oxidative stress and heavy-metal toxicity. In addition, plants GSTs play a role in the cellular response to auxins and during the normal metabolism of plant secondary products like anthocyanins and cinnamic acid. The present work involves two in silico analytical approaches-general secondary structure prediction studies of the proteins and detailed signature pattern studies of some selected GST classes in Arabdiopsis thaliana, mustard, maize and bread wheat by standard Bioinformatics tools; structure prediction tools; signature pattern tools; and the evolutionary trends were analyzed by ClustalW. For this purpose, sequences were obtained from standard databases. The work reveals that these proteins are mainly alpha helical in nature with specific signature pattern similar to phosphokinase C, tyrosine kinase and casein kinase II proteins, which are closely related to plant oxidative stress. This study aims to comprehend the relationship of GST gene family and plant oxidative stress with respect to certain specific conserved motifs, which may help in future studies for screening of biomodulators involved in plant stress metabolism.
谷胱甘肽作为一种蛋白质二硫键还原剂,通过与多种谷胱甘肽-S-转移酶(GSTs)的活性或自发共轭,来解毒除草剂,并调节基因表达以应对环境胁迫和病原体攻击。GSTs 在正常细胞代谢以及各种外源化合物的解毒中都发挥作用,并且在植物除草剂解毒方面已经进行了深入研究。一个新发现的植物 GST 亚类参与了许多应激反应,包括病原体攻击、氧化应激和重金属毒性引起的应激反应。此外,植物 GSTs 在植物生长素的细胞反应以及花色苷和肉桂酸等植物次生产物的正常代谢中发挥作用。本工作涉及两种计算分析方法——对蛋白质的一般二级结构预测研究和通过标准生物信息学工具对拟南芥、芥菜、玉米和普通小麦中的某些 GST 类别的详细特征模式研究;结构预测工具;特征模式工具;并通过 ClustalW 分析进化趋势。为此,从标准数据库中获取了序列。这项工作表明,这些蛋白质主要是α螺旋结构,具有与磷酸激酶 C、酪氨酸激酶和酪蛋白激酶 II 蛋白相似的特定特征模式,这些蛋白与植物氧化应激密切相关。本研究旨在了解 GST 基因家族与植物氧化应激的关系,特别是某些特定的保守基序,这可能有助于未来筛选参与植物应激代谢的生物调节剂。