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来自印度人参(Withania somnifera (L))的3β-羟基特异性甾醇葡萄糖基转移酶的纯化、物理动力学特性及其应激反应

Purification and physico-kinetic characterization of 3beta-hydroxy specific sterol glucosyltransferase from Withania somnifera (L) and its stress response.

作者信息

Madina Bhaskara Reddy, Sharma Lokendra Kumar, Chaturvedi Pankaj, Sangwan Rajender Singh, Tuli Rakesh

机构信息

National Botanical Research Institute, Rana Pratap Marg, Lucknow-226001, (U.P.) India.

出版信息

Biochim Biophys Acta. 2007 Mar;1774(3):392-402. doi: 10.1016/j.bbapap.2006.12.009. Epub 2007 Jan 8.

DOI:10.1016/j.bbapap.2006.12.009
PMID:17293176
Abstract

Sterol glycosyltransferases catalyze the synthesis of diverse glycosteroids in plants, leading to a change in their participation in cellular metabolism. Withania somnifera is a medically important plant, known for a variety of pharmacologically important withanolides and their glycosides. In this study, a cytosolic sterol glucosyltransferase was purified 3406 fold to near homogeneity from W. somnifera leaves and studied for its biochemical and kinetic properties. The purified enzyme was active with UDP-glucose but not with UDP-galactose as sugar donor. It exhibited broad sterol specificity by glucosylating a variety of sterols and phytosterols with 3beta-OH group. It showed a low level of activity with flavonoids and isoflavonoids. The enzyme gave maximum K(cat)/K(m) value (0.957) for 24-methylenecholesterol that resembles aglycone structure of pharmacologically important sitoindosides VII and VIII from W. somnifera. The enzyme follows ordered sequential bisubstrate mechanism of reaction, in which UDP-glucose and sterol are the first and second binding substrates. This is the first detailed kinetic study on purified plant cytosolic sterol glucosyltransferases. Results on peptide mass fingerprinting and substrate specificity suggested that the enzyme belongs to the family of secondary metabolite glucosylating glucosyltransferases. The enzyme activity exhibited a rapid in vivo response to high temperature and salicylic acid treatment of plants, suggesting its physiological role in abiotic and biotic stress.

摘要

甾醇糖基转移酶催化植物中多种糖甾体的合成,从而改变它们在细胞代谢中的参与情况。印度人参是一种具有重要医学价值的植物,以多种具有药理学重要性的睡茄内酯及其糖苷而闻名。在本研究中,从印度人参叶片中纯化出一种胞质甾醇葡萄糖基转移酶,纯化倍数达3406倍,接近均一性,并对其生化和动力学特性进行了研究。纯化后的酶以UDP-葡萄糖作为糖供体时具有活性,而以UDP-半乳糖作为糖供体时无活性。它通过将多种具有3β-OH基团的甾醇和植物甾醇糖基化,表现出广泛的甾醇特异性。它对黄酮类化合物和异黄酮类化合物的活性较低。该酶对24-亚甲基胆固醇的K(cat)/K(m)值最高(0.957),24-亚甲基胆固醇类似于印度人参中具有药理学重要性的睡茄吲哚苷VII和VIII的苷元结构。该酶遵循有序顺序双底物反应机制,其中UDP-葡萄糖和甾醇是第一和第二结合底物。这是对纯化的植物胞质甾醇糖基转移酶的首次详细动力学研究。肽质量指纹图谱和底物特异性结果表明,该酶属于次生代谢物糖基化糖基转移酶家族。该酶活性在植物经高温和水杨酸处理后在体内表现出快速响应,表明其在非生物和生物胁迫中的生理作用。

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