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Heterologous expression and characterisation of microcystinaseTI Heterologous expression and characterisation of microcystinase

机译:微囊藻毒素酶的异源表达和表征TI微囊藻酶的异源表达和表征

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摘要

The first enzyme in the microcystin (MC) degradation pathway identified in bacterial strains is coded by mlrA gene and is referred to as microcystinase. To date, there has been no biochemical characterisation of this enzyme. The results presented herein show a successful heterologous expression of MlrA as well as mutational studies, partial purification and biochemical characterisation of the enzyme. The mutation and inhibition study confirmed previous ideas that MlrA is a metalloprotease and allowed to calculate the inhibition parameters. Moreover, the kinetic parameters of MC-LR linearization were measured showing that MlrA exhibits a positive cooperativity towards MC-LR. Furthermore, in vitro experiments with Escherichia coli cells expressing MlrA indicated the potency of the heterologous host to eliminate MCs with very high efficiency. This study reports a new approach to the analysis of a microcystin degrading enzyme, extends the knowledge about MC biodegradation and opens broad scope for future study
机译:在细菌菌株中鉴定出的微囊藻毒素(MC)降解途径中的第一个酶由mlrA基因编码,称为微囊藻毒素酶。迄今为止,还没有该酶的生化特性。本文给出的结果显示了MlrA的成功异源表达以及该酶的突变研究,部分纯化和生化特性。突变和抑制研究证实了先前的想法,即MlrA是一种金属蛋白酶,并允许计算抑制参数。此外,测量了MC-LR线性化的动力学参数,表明MlrA对MC-LR表现出正的协同作用。此外,用表达MlrA的大肠杆菌细胞进行的体外实验表明,异源宿主以非常高的效率消除MC的能力。这项研究报告了一种分析微囊藻毒素降解酶的新方法,扩展了有关MC生物降解的知识,并为将来的研究提供了广阔的空间

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