Evans J J
Western Regional Research Laboratory, Agricultural Research Service, United States Department of Agriculture, Albany, California 94710.
Plant Physiol. 1970 Jan;45(1):66-9. doi: 10.1104/pp.45.1.66.
The kinetic and spectral properties of peroxidases A and B from the dwarf tomato plant were compared. The absolute absorption spectra were essentially the same for peroxidases A and B and their derivatives. Peroxidases A and B had different pH optima with guaiacol as the hydrogen donor but essentially the same optimum when pyrogallol was the substrate. The substrate concentrations required for optimum activity were different not only for the different substrates but also for each isoenzyme. When pyrogallol was used as the substrate, peroxidases A and B were 80% active when assayed under conditions optimal for the other isoenzyme. When guaiacol was used as the substrate, peroxidase A was completely inactive when assayed under conditions optimal for peroxidase B. In this case the pH was not optimum and the H(2)O(2) concentration was inhibitory. Similarly, peroxidase B retained only 9% of its peroxidase activity toward guaiacol when assayed under conditions optimum for peroxidase A. In this case the pH was not optimum and the H(2)O(2) was limiting. A possible role for peroxidase isoenzymes is discussed.
对矮生番茄植株中的过氧化物酶A和B的动力学及光谱特性进行了比较。过氧化物酶A和B及其衍生物的绝对吸收光谱基本相同。以愈创木酚作为氢供体时,过氧化物酶A和B具有不同的最适pH值,但以连苯三酚作为底物时,它们的最适值基本相同。不仅不同底物所需的最适活性底物浓度不同,而且每种同工酶所需的也不同。当以连苯三酚作为底物时,在另一种同工酶的最佳测定条件下测定,过氧化物酶A和B的活性为80%。当以愈创木酚作为底物时,在过氧化物酶B的最佳测定条件下测定,过氧化物酶A完全无活性。在这种情况下,pH值并非最佳,且过氧化氢浓度具有抑制作用。同样,在过氧化物酶A的最佳测定条件下测定时,过氧化物酶B对愈创木酚的过氧化物酶活性仅保留9%。在这种情况下,pH值并非最佳,且过氧化氢含量有限。文中讨论了过氧化物酶同工酶的可能作用。