National Botanical Research Institute (Council of Scientific & Industrial Research), Rana Pratap Marg, Lucknow, 226001, Uttar Pradesh, India.
Appl Biochem Biotechnol. 2011 Sep;165(1):47-68. doi: 10.1007/s12010-011-9232-0. Epub 2011 Apr 6.
Sterols are important components of cell membranes, hormones, signalling molecules and defense-related biotic and abiotic chemicals. Sterol glycosyltransferases (SGTs) are enzymes involved in sterol modifications and play an important role in metabolic plasticity during adaptive responses. The enzymes are classified as a subset of family 1 glycosyltransferases due to the presence of a signature motif in their primary sequence. These enzymes follow a compulsory order sequential mechanism forming a ternary complex. The diverse applications of sterol glycosides, like cytotoxic and apoptotic activity, anticancer activity, medicinal values, anti-stress roles and anti-insect and antibacterial properties, draws attention towards their synthesis mechanisms. Many secondary metabolites are derived from sterol pathways, which are important in defense mechanisms against pathogens. SGTs in plants are involved in changed sensitivity to stress hormones and their agrochemical analogs and changed tolerance to biotic and abiotic stresses. SGTs that glycosylate steroidal hormones, such as brassinosteroids, function as growth and development regulators in plants. In terms of metabolic roles, it can be said that SGTs occupy important position in plant metabolism and may offer future tools for crop improvement.
甾醇是细胞膜、激素、信号分子以及与生物和非生物防御相关的化学物质的重要组成部分。甾醇糖基转移酶(SGTs)是参与甾醇修饰的酶,在适应反应过程中的代谢可塑性中发挥重要作用。由于其一级序列中存在特征基序,这些酶被归类为家族 1 糖基转移酶的一个子集。这些酶遵循强制性顺序连续机制形成三元复合物。甾醇糖苷的多种应用,如细胞毒性和凋亡活性、抗癌活性、药用价值、抗应激作用以及抗昆虫和抗菌特性,引起了人们对其合成机制的关注。许多次生代谢产物来源于甾醇途径,这些途径在抵御病原体的防御机制中很重要。植物中的 SGTs 参与对应激激素及其农用化学品类似物的敏感性变化以及对生物和非生物胁迫的耐受性变化。糖基化甾体激素(如油菜素内酯)的 SGTs 在植物的生长和发育调节中发挥作用。就代谢作用而言,可以说 SGTs 在植物代谢中占据重要地位,并且可能为未来的作物改良提供工具。