Department of Agronomy, University of Illinois, Urbana, Illinois 61801.
Plant Physiol. 1992 Aug;99(4):1348-53. doi: 10.1104/pp.99.4.1348.
Ribulose bisphosphate (RuBP), a substrate of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco), is an inhibitor of Rubisco activation by carbamylation if bound to the inactive, noncarbamylated form of the enzyme. The effect of Rubisco activase on the dissociation kinetics of RuBP bound to this form of the enzyme was examined and characterized with the use of (3)H-labeled RuBP and proteins purified from spinach (Spinacia oleracea L.) In the absence of Rubisco activase and in the presence of a large excess of unlabeled RuBP, the dissociation rate of bound [1-(3)H]RuBP was much faster after a short (30 second) incubation than after an extended incubation (1 hour). After 1 hour of incubation, the dissociation rate constant (K(off)) of the bound RuBP was 4.8 x 10(-4) per second, equal to a half-time of about 35 minutes, whereas the rate after only 30 seconds was too fast to be accurately measured. This time-dependent change in the dissociation rate was reflected in the subsequent activation kinetics of Rubisco in the presence of RuBP, CO(2), and Mg(2+), and in both the absence or presence of Rubisco activase. However, the activation of Rubisco also proceeded relatively rapidly without Rubisco activase if the RuBP level decreased below the estimated catalytic site concentration. High pH (pH 8.5) and the presence of Mg(2+) in the medium also enhanced the dissociation of the bound RuBP from Rubisco in the presence of RuBP. In the presence of Rubisco activase, Mg(2+), ATP (but not the nonhydrolyzable analog, adenosine-5'-O-[3-thiotriphosphate]), excess RuBP, and an ATP-regenerating system, the dissociation of [1-(3)H]RuBP from Rubisco was increased in proportion to the amount of Rubisco activase added. This result indicates that Rubisco activase-mediated hydrolysis of ATP is required for promotion of the enhanced dissociation of the bound RuBP from Rubisco. Furthermore, product analysis by ion-exchange chromatography demonstrated that the release of the bound RuBP, in an unchanged form, was considerably faster than the observed increase in Rubisco activity. Thus, RuBP dissociation was experimentally separated from activation and precedes the subsequent formation of active, carbamylated Rubisco during activation of Rubisco by Rubisco activase.
核酮糖-1,5-二磷酸(RuBP)是核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)的底物,如果与酶的无活性、非氨基甲酰化形式结合,RuBP 会抑制 Rubisco 的激活。本研究使用从菠菜(Spinacia oleracea L.)中纯化的蛋白质和放射性标记的 RuBP 来研究 Rubisco 激活酶对这种形式的酶结合 RuBP 离解动力学的影响,并对其进行了表征。在没有 Rubisco 激活酶且存在大量未标记 RuBP 的情况下,与 1 小时孵育相比,短时间(30 秒)孵育后结合的 [1-(3)H]RuBP 的离解速率更快。孵育 1 小时后,结合 RuBP 的离解速率常数(K(off))为每秒 4.8 x 10(-4),半衰期约为 35 分钟,而仅仅 30 秒后的速率太快而无法准确测量。这种结合 RuBP 离解速率的时变反映在 RuBP、CO(2)和 Mg(2+)存在下随后 Rubisco 的激活动力学中,无论是在有或没有 Rubisco 激活酶的情况下均是如此。然而,如果 RuBP 水平降低到估计的催化位点浓度以下,Rubisco 没有 Rubisco 激活酶也能相对较快地激活。高 pH(pH 8.5)和介质中存在 Mg(2+)也增强了 RuBP 存在时结合的 RuBP 从 Rubisco 上的解离。在 Rubisco 激活酶、Mg(2+)、ATP(但不是非水解类似物,腺苷-5'-O-[3-硫代三磷酸])、过量 RuBP 和 ATP 再生系统存在的情况下,与添加的 Rubisco 激活酶量成比例地增加了[1-(3)H]RuBP 从 Rubisco 上的解离。这一结果表明,Rubisco 激活酶介导的 ATP 水解是促进结合的 RuBP 从 Rubisco 上增强解离所必需的。此外,通过离子交换色谱进行的产物分析表明,以未改变形式释放的结合 RuBP 比观察到的 Rubisco 活性增加快得多。因此,在 Rubisco 激活酶激活 Rubisco 过程中,RuBP 解离在实验上与激活分离,并先于随后形成活性的氨基甲酰化 Rubisco。