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Non-Essential Activation of Co~(2+) and Zn~(2+) on Mushroom Tyrosinase: Kinetic and Structural Stability

机译:Co〜(2+)和Zn〜(2+)在蘑菇酪氨酸酶上的非必需活化:动力学和结构稳定性

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摘要

Tyrosinase is a widespread enzyme with great promising capabilities. The Lineweaver-Burk plots of the catecholase reactions showed that the kinetics of mushroom tyrosinase (MT), activated by Co~(2+) and Zn~(2+) at different pHs (6,7, 8 and 9) obeyed the non-essential activation mode. The binding of metal ions to the enzyme increases the maximum velocity of the enzyme due to an increase in the enzyme catalytic constant (k_(cat)). From the kinetic analysis, dissociation constants of the activator from the enzyme-metal ion complex (K_a) were obtained as 5 x 10~4 M~(-1) and 8.33 x 10~3 M~(-1) for Co~(2+) and Zn~(2+) at pH 9 and 6 respectively. The structural analysis of MT through circular dichroism (CD) and intensive fluorescence spectra revealed that the conformational stability of the enzyme in these pHs reaches its maximum value in the presence of each of the two metal ions.
机译:酪氨酸酶是一种广泛的酶,具有强大的前景。儿茶酚酶反应的Lineweaver-Burk图表明,在不同pH(6,7、8和9)下,Co〜(2+)和Zn〜(2+)激活的蘑菇酪氨酸酶(MT)的动力学符合非-基本激活模式。金属离子与酶的结合由于酶催化常数(k_(cat))的增加而增加了酶的最大速度。通过动力学分析,得出活化剂从酶-金属离子络合物(K_a)的解离常数为5 x 10〜4 M〜(-1)和8.33 x 10〜3 M〜(-1)。 pH分别为9和6时为2+)和Zn〜(2+)。通过圆二色性(CD)和强荧光光谱对MT进行结构分析,结果表明,在这两种pH值下,两种金属离子均存在时,酶的构象稳定性达到最大值。

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