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Sequencing and Heterologous Expression of an Epimerase and Two Lyases from Iminodisuccinate-Degrading Bacteria

机译:异丁二酸降解细菌的差向异构酶和两种裂解酶的测序和异源表达

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Recently, degradation of all existing epimers of the complexing agent iminodisuccinate (IDS) in the bacterial strain Agrobacterium tumefaciens BY6 was proven to depend on an epimerase and a C-N lyase (Cokesa et al., Appl. Environ. Microbiol. 70:3941-3947, 2004). In the bacterial strain Ralstonia sp. strain SLRS7, a corresponding C-N lyase is responsible for the initial degradation step (Cokesa et al., Biodegradation 15:229-239, 2004). The ite gene, encoding the IDS-transforming epimerase, and the genes iclB and iclS, encoding the IDS-converting BY6-lyase and SLRS7-lyase, respectively, were cloned and sequenced. The epimerase gene encodes a protein with a predicted subunit molecular mass of 47.6 kDa. The highest degree of epimerase amino acid sequence identities was found with proteins of unknown function, indicating a novel protein. For the lyases, the deduced amino acid sequences show high similarity to enzymes of the fumarase II family. A classification into a new subfamily within the enzyme family is proposed. The subunit molecular masses of the lyases were calculated to be 54.4 and 54.7 kDa, respectively. In Agrobacterium tumefaciens BY6, the ite gene was on an approximately 180-kb circular plasmid, whereas the iclB gene was chromosomal like the corresponding iclS gene in Ralstonia sp. strain SLRS7. Heterologous expression in Escherichia coli and subsequent purification revealed recombinant enzymes with in vitro activity similar to that of the corresponding enzymes from the wild-type strains.
机译:最近,事实证明,细菌根癌农杆菌BY6中络合剂亚氨基二琥珀酸酯(IDS)的所有现有差向异构体的降解都依赖于差向异构酶和CN裂解酶(Cokesa等人,Appl.Environ.Microbiol.70:3941-3947。 ,2004)。在细菌菌株Ralstonia sp。中。菌株SLRS7,相应的C-N裂合酶负责初始降解步骤(Cokesa等,Biodegradation 15:229-239,2004)。分别克隆了编码IDS转化差向异构酶的ite基因,编码IDS转化BY6-裂解酶和SLRS7裂解酶的基因iclB和iclS。差向异构酶基因编码一种蛋白质,其预测的亚基分子量为47.6 kDa。发现功能未知的蛋白具有最高程度的差向异构酶氨基酸序列同一性,表明是一种新型蛋白。对于裂解酶,推导的氨基酸序列显示与富马酸酶II家族的酶高度相似。建议在酶家族中分类为新的亚家族。计算出裂解酶的亚单位分子量分别为54.4和54.7kDa。在根癌土壤杆菌BY6中,ite基因位于约180 kb的环状质粒上,而iclB基因则与Ralstonia sp。中的相应iclS基因一样是染色体的。 SLRS7株。在大肠杆菌中的异源表达和随后的纯化显示重组酶具有与野生型菌株相应酶类似的体外活性。

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