Cokesa Zeljko, Lakner Silvia, Knackmuss Hans-Joachim, Rieger Paul-Gerhard
Institut für Mikrobiologie der Universität Stuttgart, Allmandring 31, 70569 Stuttgart, Germany.
Biodegradation. 2004 Aug;15(4):229-39. doi: 10.1023/b:biod.0000042903.04718.f6.
Following biodegradation tests according to the OECD guidelines for testing of chemicals 301F different degradation rates were observed for the three stereoisomers of iminodisuccinate (IDS). A strain was isolated from activated sludge, which used two of three isomers, R,S-IDS and S,S-IDS, as sole source of carbon, nitrogen, and energy. The isolated strain was identified by 16S-rDNA and referred to as Ralstonia sp. SLRS7. An IDS-degrading lyase was isolated from the cell-free extract. The enzyme was purified by three chromatographic steps, which included anion-exchange chromatography, hydrophobic interaction chromatography and gel filtration. The lyase catalysed the non-hydrolytic cleavage of IDS without requirement of any cofactors. Cleavage of S,S-IDS led to the formation of fumaric acid and L-aspartic acid. Interestingly R,S-IDS yielded only D-aspartic acid besides fumaric acid. R,R-IDS was not transformed. Thus, the IDS-degrading enzyme is a carbon-nitrogen lyase attacking only the asymmetric carbon atom exhibiting the S-configuration. Besides S,S-IDS and R,S-IDS cleavage, the lyase catalysed also the transformation of certain S,S-IDS metal complexes, namely Ca(2+)-, Mg(2+)- and Mn(2+)-IDS. The maximum enzyme activity was found at pH 8.0-8.5 and 35 degrees C. SDS-PAGE analysis revealed a single 57-kDa protein band. The native enzyme was estimated to be around 240 kDa indicating a homotetramer enzyme.
根据经合组织化学品测试指南301F进行生物降解测试后,观察到亚氨基二琥珀酸(IDS)的三种立体异构体具有不同的降解速率。从活性污泥中分离出一种菌株,该菌株将三种异构体中的两种,即R,S-IDS和S,S-IDS,用作碳、氮和能量的唯一来源。通过16S-rDNA对分离出的菌株进行鉴定,并将其称为罗尔斯通氏菌属SLRS7。从无细胞提取物中分离出一种IDS降解裂解酶。该酶通过三步色谱法进行纯化,包括阴离子交换色谱法、疏水相互作用色谱法和凝胶过滤法。该裂解酶催化IDS的非水解裂解反应,无需任何辅助因子。S,S-IDS的裂解导致富马酸和L-天冬氨酸的形成。有趣的是,除富马酸外,R,S-IDS仅产生D-天冬氨酸。R,R-IDS未发生转化。因此,IDS降解酶是一种碳氮裂解酶,仅攻击具有S构型的不对称碳原子。除了S,S-IDS和R,S-IDS裂解外,该裂解酶还催化某些S,S-IDS金属络合物的转化,即Ca(2+)-、Mg(2+)-和Mn(2+)-IDS络合物。在pH 8.0 - 8.5和35℃时发现最大酶活性。SDS-PAGE分析显示有一条单一的57 kDa蛋白带。天然酶估计约为240 kDa,表明该酶为同四聚体酶。