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Engineering a thermo-stable superoxide dismutase functional at sub-zero to 50°C which also tolerates autoclaving

机译:在低于零至 50°C的温度下设计一种热稳定的超氧化物歧化酶功能​​该功能还可以耐受高压灭菌

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摘要

Superoxide dismutase (SOD) is a critical enzyme associated with controlling oxygen toxicity arising out of oxidative stress in any living system. A hyper-thermostable SOD isolated from a polyextremophile higher plant Potentilla atrosanguinea Lodd. var. argyrophylla (Wall. ex Lehm.) was engineered by mutation of a single amino acid that enhanced the thermostability of the enzyme to twofold. The engineered enzyme was functional from sub-zero temperature to >50°C, tolerated autoclaving (heating at 121°C, at a pressure of 1.1 kg per square cm for 20 min) and was resistant to proteolysis. The present work is the first example to enhance the thermostability of a hyper-thermostable protein and has potential to application to other proteins for enhancing thermostability.
机译:超氧化物歧化酶(SOD)是一种关键酶,与控制任何生物系统中因氧化应激引起的氧中毒有关。从多极嗜热性高等植物委陵菜(Potentilla atrosanguinea Lodd)分离的超耐高温SOD。变种argyrophylla(Wall。ex Lehm。)是通过单个氨基酸的突变而改造的,该突变使酶的热稳定性提高了两倍。经过改造的酶在低于零温度至> 50°C的温度下具有一定的功能,可以承受高压灭菌(在121°C下加热,每平方厘米1.1 kg的压力持续20 min),并且耐蛋白水解。本工作是增强超耐热蛋白的热稳定性的第一个实例,并且有可能应用于其他蛋白以增强热稳定性。

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