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首页> 外文期刊>Saudi Journal of Biological Sciences >Purification and characterisation of alliinase produced by Cupriavidus necator and its application for generation of cytotoxic agent: Allicin
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Purification and characterisation of alliinase produced by Cupriavidus necator and its application for generation of cytotoxic agent: Allicin

机译:Cupriavidus necator产生的蒜氨酸酶的纯化,表征及其在细胞毒剂蒜素中的应用

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Allicin, an extremely active constituent of freshly crushed garlic, is produced upon reaction of alliin with the enzyme alliinase (EC 4.4.1.4). A bacterium Cupriavidus necator with the ability of alliinase production was isolated from a soil sample and was identified by morphological, biochemical and 16S rRNA sequence. Alliinase production was optimised and it was further purified to apparent homogeneity with 103-fold purification and specific activity of 209 U/mg of protein by using DEAE Cellulose and Sephadex G-100 chromatography. The enzyme is a homodimer of molecular weight 110 kDa with two subunits of molecular weight 55 kDa each. The optimum activity of the purified enzyme was found at pH 7 and the optimum temperature was 35 °C. The enzyme exhibited maximum reaction rate ( V max) at 74.65 U/mg and Michaelis–Menten constant ( K m) was determined to be 0.83 mM when alliin was used as a substrate. The cytotoxic activity of in-situ generated allicin using purified alliinase and alliin was assessed on MIA PaCa-2 cell line using MTT assay and Acridine orange–ethidium bromide staining. This approach of in-situ allicin generation suggests a novel therapeutic strategy wherein alliin and alliinase work together synergistically to produce cytotoxic agent allicin.
机译:蒜素与蒜素酶(EC 4.4.1.4)反应后,会产生蒜素(大蒜素的一种极活泼的成分)。从土壤样品中分离出具有蒜氨酸酶生产能力的细菌铜尿杆菌,并通过形态,生化和16S rRNA序列进行鉴定。优化了蒜酶的生产,并通过使用DEAE纤维素和Sephadex G-100色谱法将其进一步纯化至表观同质,纯化率达到103倍,比活为209 U / mg蛋白质。该酶是分子量为110 kDa的同型二聚体,每个具有两个分子量为55 kDa的亚基。发现纯化的酶的最佳活性在pH 7且最适温度为35°C。该酶在74.65 U / mg的条件下显示出最大反应速率(V max),当以蒜氨酸为底物时,米氏-米森常数(K m)被确定为0.83 mM。使用MTT测定法和A啶橙-溴化乙锭染色法,在MIA PaCa-2细胞系上评估了使用纯化的蒜素酶和蒜素原位生成的蒜素的细胞毒活性。这种原位蒜素生成方法提出了一种新颖的治疗策略,其中蒜素和蒜素酶协同作用共同产生细胞毒剂蒜素。

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