非洲刺槐豆种子罗丹斯的动力学特性

A. Ehigie, M. Abdulrasak, F. Ojeniyi, Ehigie Ol
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引用次数: 2

摘要

非洲刺槐豆(Parkia biglobosa)是一种可以加工成调味品的豆类。罗丹斯是一种硫转移酶。它催化氰化物降解为毒性较小的代谢物硫氰酸盐。本研究进行了罗丹斯纯化和生化表征。研究了该酶的活性和罗丹斯酶反应动力学,包括pH和温度曲线、底物特异性和金属离子的影响。从其他体系中得到的罗丹斯酶的研究结果与本研究的结果进行了比较。Rhodanese从Parkia biglobosa中分离得到,采用硫酸铵沉淀、CM-Sephadex和活性蓝2-琼脂糖柱层析纯化。纯化后的酶比活性为3.69 RU/mg,产率为0.20%。KCN为底物时Km和Vmax分别为7.61 mM和0.65 RU/ml/min, Na2S2O3为底物时Km和Vmax分别为11.59 mM和0.57 RU/ml/min。在巯基乙醇(HOCH2CH2SH)、硫酸铵(NH4)2S2O8)、硫酸铵(NH4)2SO4)、硫酸钠(Na2SO4)、焦亚硫酸钠(Na2SO5)等不同底物中,该酶表现出对硫代硫酸钠(Na2S2O3)的偏好。最佳温度和pH值为50?分别得到C和8。除HgCl2和MnCl2外,氯化盐在1 mM浓度下几乎没有抑制作用。而在10 mM浓度下,二价金属;MnCl2、HgCl2、CaCl2、BaCl2对酶有抑制作用。本研究表明刺槐豆种子含有一种具有适当动力学性质的氰化物解毒酶,可安全食用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetic properties of Rhodanese from African locust bean seeds (Parkia biglobosa)
African locust bean (Parkia biglobosa) is a legume which can be processed into condiment. Rhodanese is a sulphurtransferase enzyme. It catalyses the degradation of cyanide to a less toxic metabolite, thiocyanate. Rhodanese purication and biochemical characterization were carried out in this study. The activity of this enzyme from Parkia biglobosa was evaluated and the kinetics of the rhodanese enzyme reaction, including pH and temperature profiles, substrate specificity and effects of metal ions were assessed. Studies on the rhodanese enzyme from other systems have been compared with the results of this study. Rhodanese was isolated from Parkia biglobosa and purified using ammonium sulphate precipitation, CM-Sephadex, and Reactive Blue 2-agarose column chromatography. The purified enzyme has a specific activity of 3.69 RU/mg with a percent yield of 0.20. Km and Vmax values of 7.61 mM and 0.65 RU/ml/min were obtained respectively when KCN was used as a substrate while values of 11.59 mM and 0.57 RU/ml/min was obtained with Na2S2O3. The enzyme showed preference for sodium thiosulphate (Na2S2O3) among different substrates tested namely Mercapto-ethanol (HOCH2CH2SH), Ammonium per sulphate (NH4)2S2O8), Ammonium sulphate (NH4)2SO4), Sodium sulphate (Na2SO4), Sodium metabisulphite (Na2SO5). Optimum temperature and pH of 50?C and 8 were obtained respectively. Chloride salts tested showed little or no inhibitory effect at 1 mM concentration with the exception of HgCl2 and MnCl2. However at 10 mM concentration, the divalent metals; MnCl2 HgCl2, CaCl2, BaCl2 inhibited the enzyme. The present study showed that locust bean seeds possess a cyanide detoxifying enzyme with suitable kinetic properties which renders it safe for consumption.
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