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Production and optimization of pterin deaminase from cyanide utilizing bacterium Bacillus cereus AM12

机译:利用蜡样芽孢杆菌AM12从氰化物生产和优化蝶呤脱氨酶

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In a search of new-fangled antitumor chemotherapeutic agent, the studies are elucidating the enzymes, contributing to the metabolic reprogramming and their potential as therapeutic targets. This study was an endeavor to explore the potential of enzyme pterin deaminase from cyanide degraders. In preliminary and secondary screening, potent cyanide degraders were selected and estimated for pterin deaminase activity. The intracellular crude extract containing enzyme activity was found to be higher in potential strain Bacillus cereus AM12. The optimization conditions for the production of pterin deaminase from this selected strain was studied with the help of Box–Behnken design. The determination coefficient of the model (0.91) was highly significant and indicative of goodness of fit. This design found to be ideal for the selected parameters, such as temperature of 35?°C, pH 8, 0.005?M of pterin and 20% of glucose which yielded maximum production of pterin deaminase (9.99?U/ml). This study might make a major breakthrough in the field of medicine as well as in pharmaceutical compositions when the biological significance of this distinct enzyme is proven.
机译:为了寻找一种新型的抗肿瘤化学治疗剂,研究正在阐明这些酶,它们有助于代谢重编程及其作为治疗靶标的潜力。这项研究旨在探索氰化物降解物中酶蝶呤脱氨酶的潜力。在初步和二次筛选中,选择了有效的氰化物降解剂并估计了其蝶呤脱氨酶的活性。发现在潜在的蜡状芽孢杆菌AM12菌株中含有酶活性的细胞内粗提物较高。在Box-Behnken设计的帮助下,研究了从该选定菌株生产蝶呤脱氨酶的最适条件。模型的确定系数(0.91)非常重要,表明拟合优度。发现该设计对于选定的参数是理想的,例如温度35?C,pH 8、0.005?M蝶呤和20%的葡萄糖,可最大程度地产生蝶呤脱氨酶(9.99?U / ml)。当这种独特酶的生物学意义得到证实时,这项研究可能会在医学领域以及药物组合物中取得重大突破。

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