Department of Agricultural Chemistry, Faculty of Agriculture, Tohoku University, Amamiyamachi-Tsutsumidori, Sendai 980, Japan.
Plant Physiol. 1985 Sep;79(1):57-61. doi: 10.1104/pp.79.1.57.
The enzymic properties of ribulose 1,5-bisphosphate (RuBP) carboxylase/oxygenase purified from rice (Oryza sativa L.) leaves were studied. Rice RuBPcarboxylase, activated by preincubation with CO(2) and Mg(2+) like other higher plant carboxylases, had an activation equilibrium constant (K(c)K(Mg)) of 1.90 x 10(5) to 2.41 x 10(5) micromolar(2) (pH 8.2 and 25 degrees C). Kinetic parameters of carboxylation and oxygenation catalyzed by the completely activated enzyme were examined at 25 degrees C and the respective optimal pHs. The K(m)(CO(2)), K(m)(RuBP), and V(max) values for carboxylation were 8 micromolar, 31 micromolar, and 1.79 units milligram(-1), respectively. The K(m)(O(2)), K(m)(RuBP), and V(max) values for oxygenation were 370 micromolar, 29 micromolar, and 0.60 units milligram(-1), respectively.Comparison of rice leaf RuBP carboxylase with other C(3) plant carboxylases showed that it had a relatively high affinity for CO(2) but the lowest catalytic turnover number (V(max)) among the species examined.
我们研究了从水稻(Oryza sativa L.)叶片中纯化的核酮糖 1,5-二磷酸(RuBP)羧化酶/加氧酶的酶学性质。与其他高等植物羧化酶一样,水稻 RuBP 羧化酶通过与 CO2 和 Mg2+预孵育而被激活,其激活平衡常数(KcK(Mg))为 1.90 x 105 至 2.41 x 105 微摩尔 2(pH 8.2 和 25°C)。在 25°C 和各自的最适 pH 下,研究了完全激活的酶催化羧化和加氧作用的动力学参数。羧化的 K(m)(CO2)、K(m)(RuBP)和 V(max)值分别为 8 微摩尔、31 微摩尔和 1.79 单位毫克 -1。加氧的 K(m)(O2)、K(m)(RuBP)和 V(max)值分别为 370 微摩尔、29 微摩尔和 0.60 单位毫克 -1。将水稻叶片 RuBP 羧化酶与其他 C3 植物羧化酶进行比较表明,它对 CO2 的亲和力相对较高,但在所研究的物种中催化周转率(V(max))最低。