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A pulse-radiolysis study of the manganese-containing superoxide dismutase from Bacillus stearothermophilus. A kinetic model for the enzyme action.

机译:源自嗜热脂肪芽孢杆菌的含锰超氧化物歧化酶的脉冲辐射分解研究。酶作用的动力学模型。

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摘要

The enzymic reaction mechanism of a manganese-containing superoxide dismutase from Bacillus stearothermophilus was studied by using pulse radiolysis. During catalysis (pH 8.9; 25 degrees C), changes occurring in the kinetics of substrate disappearance and in the visible absorption of the enzyme at 480 nm established that the simple two-step mechanism found for copper- and iron-containing superoxide dismutases is not involved. At a low ratio (less than 15) of substrate concentration to enzyme concentration the decay of O2--is close to exponetial, whereas at much higher ratios (greater than 100) the observed decay is predominantly zero-order. The simplest interpretation of the results invokes a rapid one-electron oxidation-reduction cycle ('the fast cycle') and, concurrently, a slower reaction giving a form of the enzyme that is essentially unreactive towards O2-- but which undergoes a first-order decay to yield fully active native enzyme ('the slow cycle'). The fast cycle involves the native enzyme EA and a form of the enzyme EB which can be obtained also by treating the form EA with H2O2. Computer calculations made with such a simple model predict behaviour in excellent agreement with the observed results.
机译:通过脉冲辐射分析研究了嗜热脂肪芽孢杆菌中含锰超氧化物歧化酶的酶促反应机理。在催化过程中(pH 8.9; 25摄氏度),底物消失动力学和酶在480 nm的可见吸收中发生的变化确定了发现含铜和铁的超氧化物歧化酶的简单两步机理并非如此参与。在底物浓度与酶浓度的比率低(小于15)时,O2-的衰减接近指数级,而在比率高得多(大于100)时,观察到的衰减主要为零级。对结果的最简单解释是调用一个快速的单电子氧化还原循环(“快速循环”),并同时进行较慢的反应,从而产生一种与O2-基本不反应的酶形式,但该酶首先经历了衰变产生完全活性的天然酶(“慢循环”)。快速循环涉及天然酶EA和酶EB的形式,其也可以通过用H 2 O 2处理EA形式获得。使用这种简单模型进行的计算机计算可以预测行为,并与观察到的结果高度吻合。

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