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Structure and functional properties of the cold-adapted catalase from Acinetobacter sp. Ver3 native to the Atacama plateau in northern Argentina

机译:的结构和功能性质南极低温过氧化氢酶的不动杆菌Ver3 sp原产于北部的阿塔卡玛高原

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摘要

Heme catalases remove hydrogen peroxide by catalyzing its dismutation into water and molecular oxygen, thereby protecting the cell from oxidative damage. The Atacama plateau in northern Argentina, located 4000 m above sea level, is a desert area characterized by extreme UV radiation, high salinity and a large temperature variation between day and night. Here, the heme catalase KatE1 from an Atacama Acinetobacter sp. isolate was cloned, expressed and purified, with the aim of investigating its extremophilic properties. Kinetic and stability assays indicate that KatE1 is maximally active at 50°C in alkaline media, with a nearly unchanged specific activity between 0°C and 40°C in the pH range 5.5-11.0. In addition, its three-dimensional crystallographic structure was solved, revealing minimal structural differences compared with its mesophilic and thermophilic analogues, except for a conserved methionine residue on the distal heme side, which is proposed to comprise a molecular adaptation to oxidative damage.
机译:血红素过氧化氢酶清除过氧化氢催化歧化作用成水和分子氧,从而保护细胞从氧化损伤。阿根廷北部,海拔4000米水平,是一个沙漠地区的特点是极端紫外线辐射、高盐度和大昼夜之间的温度变化。在这里,血红素过氧化氢酶KatE1阿塔卡马不动杆菌sp.分离克隆,表达和纯化,调查的目的extremophilic属性。分析表明,KatE1最大限度地活跃在碱性介质50°C,几乎不变特定的活动在0°C和40°C之间的pH值范围5.5 - -11.0。三维晶体结构解决,揭示结构差异最小相比之下,其嗜常温和高温类似物,除了守恒的蛋氨酸残留在远端血红素方面,这是提出了包括分子适应氧化损伤。

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