Storrø I, McFadden B A
Biochem J. 1983 Apr 15;212(1):45-54. doi: 10.1042/bj2120045.
Toluene-permeabilized Rhodospirillum rubrum cells were used to study activation of and catalysis by the dual-function enzyme ribulose bisphosphate carboxylase/oxygenase. Incubation with CO2 provided as HCO3-, followed by rapid removal of CO2 at 2 degrees C and subsequent incubation at 30 degrees C before assay, enabled a determination of decay rates of the carboxylase and the oxygenase. Half-times at 30 degrees C with 20 mM-Mg2+ were 10.8 and 3.7 min respectively. Additionally, the concentrations of CO2 required for half-maximal activation were 56 and 72 microM for the oxygenase and the carboxylase respectively. After activation and CO2 removal, inactivation of ribulose bisphosphate oxygenase in the presence of 1 mM- or 20mM-Mn2+ was slower than that with the same concentrations of Co2+ or Mg2+. Only the addition of Mg2+ supported ribulose bisphosphate carboxylase activity, as Mn2+, Co2+ and Ni2+ had no effect. A pH increase after activation in the range 6.8-8.0 decreased the stability of the carboxylase but in the range 7.2-8.0 increased the stability of the oxygenase. With regard to catalysis. Km values for ribulose 1,5-bisphosphate4- were 1.5 and 67 microM for the oxygenase and the carboxylase respectively, and 125 microM for O2. Over a broad range of CO2 concentrations in the activation mixture, the pH optima were 7.8 and 8-9.2 for the carboxylase and the oxygenase respectively. The ratio of specific activities was constant (9:1 for the carboxylase/oxygenase) of ribulose bisphosphate carboxylase/oxygenase in toluene-treated Rsp. rubrum. Below concentrations of 10 microM-CO2 in the activation mixture, this ratio increased.
用甲苯透化的深红红螺菌细胞来研究双功能酶核酮糖二磷酸羧化酶/加氧酶的激活和催化作用。以HCO₃⁻形式提供CO₂进行孵育,随后在2℃快速去除CO₂,并在测定前于30℃进行后续孵育,这样能够测定羧化酶和加氧酶的衰减速率。在20 mM - Mg²⁺存在下,30℃时的半衰期分别为10.8分钟和3.7分钟。此外,加氧酶和羧化酶达到最大激活一半所需的CO₂浓度分别为56和72 μM。激活并去除CO₂后,在1 mM或20 mM Mn²⁺存在下核酮糖二磷酸加氧酶的失活比在相同浓度的Co²⁺或Mg²⁺存在下更慢。只有添加Mg²⁺能支持核酮糖二磷酸羧化酶的活性,因为Mn²⁺、Co²⁺和Ni²⁺没有作用。激活后pH在6.8 - 8.0范围内升高会降低羧化酶的稳定性,但在7.2 - 8.0范围内会增加加氧酶的稳定性。关于催化作用,加氧酶和羧化酶对核酮糖1,5 - 二磷酸的Km值分别为1.5和67 μM,对O₂的Km值为125 μM。在激活混合物中广泛的CO₂浓度范围内,羧化酶和加氧酶的最适pH分别为7.8和8 - 9.2。在甲苯处理的深红红螺菌中,核酮糖二磷酸羧化酶/加氧酶的比活性是恒定的(羧化酶/加氧酶为9:1)。在激活混合物中CO₂浓度低于10 μM时,这个比例会增加。