Lehrstuhl für Biochemie der Pflanzen, Ruhr-Universität Bochum, Postfach 102148, D-4630, Bochum 1, Federal Republic of Germany.
Planta. 1979 Jan;146(2):223-8. doi: 10.1007/BF00388236.
Ribulose-1,5-bisphosphate carboxylase-oxygenase is deactivated by removal of Mg(++). The enzyme activities can be restored to a different extent by the addition of various divalent ions in the presence of CO2. Incubation with Mg(++) and CO2 restores both enzyme activities, whereas, the treatment of the enzyme with the transition metal ions (Mn(++), Co(++), and Ni(++)) and CO2 fully reactivates the oxygenase: however, the carboxylase activity remains low. In experiments where CO2-free conditions were conscientiously maintained, no reactivation of RuBP oxygenase was observed, although Mn(++) ions were present. Other divalent cations such as Ca(++) and Zn(++), restore neither the carboxylase nor the oxygenase reaction. Furthermore, the addition of Mn(++) to the Mg(++) and CO2 preactivated enzyme significantly inhibited carboxylase reactions, but increased the oxygenase reaction.
核酮糖-1,5-二磷酸羧化酶/加氧酶通过去除 Mg(++)而失活。在 CO2 的存在下,各种二价离子的添加可以在不同程度上恢复酶的活性。用 Mg(++)和 CO2 孵育可以恢复两种酶的活性,而用过渡金属离子(Mn(++)、Co(++)和 Ni(++))和 CO2 处理酶则完全使加氧酶重新活化:然而,羧化酶活性仍然较低。在认真维持无 CO2 条件的实验中,尽管存在 Mn(++)离子,但没有观察到 RuBP 加氧酶的重新活化。其他二价阳离子,如 Ca(++)和 Zn(++),既不能恢复羧化酶反应,也不能恢复加氧酶反应。此外,向 Mg(++)和 CO2 预激活的酶中添加 Mn(++)会显著抑制羧化酶反应,但会增加加氧酶反应。