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Expression, purification and characterisation of human copper-zinc superoxide dismutase protein and human-escherichia coli copper-zinc superoxide dismutase chimeric protein

机译:人铜锌超氧化物歧化酶蛋白和人大肠杆菌铜锌超氧化物歧化酶嵌合蛋白的表达,纯化和鉴定

摘要

Superoxide dismutases (SODs) represent the first line of defense to counter oxidative stress caused by superoxide radicals, O2˙¯, these being the initial reduction products of oxygen, by catalysing their dismutation into O2 and H2O2. The latter is further decomposed by peroxidases and catalases. CuZn SOD has been considered as being almost exclusively a dimeric eukaryotic enzyme. However, CuZn SODs adopting the monomeric configuration have recently been isolated from E. coli. Since the monomeric bacteriocuprein activity was determined to be comparable to that of the dimeric protein, this showed that the subunit interaction does not play a role in the protein’s activity. Hence, the human/ E. coli CuZn SOD chimeric protein (L-Loopy SOD), has been genetically engineered, in an attempt to produce a stable, active, monomeric human CuZn SOD, for therapeutic applications. The human wild-type CuZn SOD has also been mutated to express this dimeric protein (L-1 SOD) in E. coli cytoplasm.
机译:超氧化物歧化酶(SODs)代表抵抗由超氧化物自由基O2-引起的氧化应激的第一道防线,这些自由基是氧的初始还原产物,通过催化它们分解为O2和H2O2。后者被过氧化物酶和过氧化氢酶进一步分解。 CuZn SOD几乎被认为是一种二聚真核酶。然而,最近已从大肠杆菌中分离出采用单体构型的CuZn SOD。由于已确定单体的细菌尿素活性与二聚体蛋白相当,因此表明亚基相互作用在该蛋白的活性中不起作用。因此,已经对人/大肠杆菌CuZn SOD嵌合蛋白(L-Loopy SOD)进行了基因工程改造,以试图产生用于治疗应用的稳定的,活性的单体人CuZn SOD。人类野生型CuZn SOD也已被突变为在大肠杆菌细胞质中表达这种二聚体蛋白(L-1 SOD)。

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