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Mechanism-Based Irreversible Inactivation of Horseradish Peroxidase at 500 MPa

机译:基于机制的辣根过氧化物酶在500 MPa下的不可逆失活

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The effects of high-pressure treatment on the reaction rates of horseradish peroxidase (HRP) with guaethol or guaiacol as a hydrogen donor were evaluated from direct transmission measurements in a high-pressure optical cell at 435 nm. Peroxidases are known to be very barostable and insensitive to heat. With guaethol the reaction velocity was independent of pressure up to 500 MPa, but with guaiacol the cytochrome c oxidase underwent a mechanism-based irreversible inhibition of catalytic activity when subjected to pressure; in the resting states (fully oxidized or reduced), it was insensitive to pressure. The enzyme inactivation took place with an inactivation rate constant of 5.15 X 10~(-1) min~(-1) at 500 MPa, 25 deg C and pH 7. The degree of inactivation was correlated to the concentration of guaiacol. This is the first report on a mechanism-based pressure inactivation of HRP triggered at moderate pressure and temperature and mediated by the hydrogen donor.
机译:通过在435 nm高压光学元件中的直接透射测量,评估了高压处理对辣根过氧化物酶(HRP)与愈创木酚或愈创木酚作为氢供体的反应速率的影响。已知过氧化物酶具有很强的阻隔性,并且对热不敏感。对于愈创木酚,反应速度与高达500 MPa的压力无关,但是对于愈创木酚,细胞色素c氧化酶在受到压力时会发生基于机理的不可逆抑制催化活性的现象。在静止状态(完全氧化或还原)下,它对压力不敏感。在500 MPa,25摄氏度和pH值为7时,酶的失活速率常数为5.15 X 10〜(-1)min〜(-1)。失活程度与愈创木酚的浓度相关。这是有关在中等压力和温度下触发并由氢供体介导的HRP基于机理的压力失活的首次报道。

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