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Purification and Characterization of a Novel (R)-Mandelonitrile Lyase from the Fern Phlebodium aureum.

机译:一种来自金黄色蕨菌的新型(R)-扁桃腈裂解酶的纯化和表征。

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摘要

Using high-performance liquid chromatography and nuclear magnetic resonance we identified vicianin as the cyanogenic compound of Phlebodium aureum. The (R)-hydroxynitrile lyase involved during cyanogenesis in the catabolism of the aglycon ([R]-mandelonitrile) was purified to apparent homogeneity. The purified holoenzyme is a homomultimer with subunits of Mr = 20,000. At least three isoforms of the enzyme exist. In contrast to other hydroxynitrile lyases, mandelonitrile lyase (MDL) from P. aureum was not inhibited by sulfhydryl- or hydroxyl-modifying reagents, suggesting a different catalytic mechanism. The enzyme is active over a broad temperature range, with maximum activity between 35 and 50[deg]C, and a pH optimum at 6.5. In contrast to (R)-MDLs isolated from several species of the Rosaceae family, (R)-MDL from P. aureum is not a flavoprotein. The substrate specificity was investigated using immobilized enzyme and diisopropyl ether as solvent. The addition of cyanide to aromatic and heterocyclic carbonyls is catalyzed by this (R)-MDL, whereas aliphatic carbonyls are poorly converted.
机译:使用高效液相色谱和核磁共振,我们确定了vicianin是金黄色梭菌的生氰化合物。将在发生氰基的糖苷配基([R]-扁桃腈)的分解代谢过程中涉及的(R)-羟基腈裂解酶纯化至明显的均质性。纯化的全酶是具有Mr = 20,000的亚基的同型多聚体。该酶至少存在三种同工型。与其他羟腈裂解酶相反,来自金黄色葡萄球菌的扁桃腈裂解酶(MDL)不受巯基或羟基修饰试剂的抑制,表明存在不同的催化机理。该酶在很宽的温度范围内具有活性,最大活性在35至50℃之间,最适pH为6.5。与从蔷薇科家族的几个物种分离的(R)-MDL相反,来自金黄色葡萄球菌的(R)-MDL不是黄素蛋白。使用固定化酶和二异丙基醚作为溶剂研究底物特异性。 (R)-MDL催化将氰化物加到芳族和杂环羰基上,而脂肪族羰基的转化率很低。

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