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无机磷酸盐通过两种独立机制促进蓝藻核酮糖-1,5-二磷酸羧化酶/加氧酶的激活。

Activation of cyanobacterial RuBP-carboxylase/oxygenase is facilitated by inorganic phosphate via two independent mechanisms.

作者信息

Marcus Y, Gurevitz M

机构信息

Department of Plant Sciences, George S. Wise Faculty of Life Sciences, Tel Aviv University, Israel.

出版信息

Eur J Biochem. 2000 Oct;267(19):5995-6003. doi: 10.1046/j.1432-1327.2000.01674.x.

Abstract

Orthophosphate (Pi) modulates the activity and activation of ribulose 1,5-bis-phosphate carboxylase/oxygenase (RuBisCO) via a mechanism that is still controversial. Whereas its effects on the higher plant enzyme have been described, little is known about Pi regulation of the structurally similar, yet kinetically different cyanobacterial enzyme. We found that RuBisCO of Synechocystis PCC6803 was affected by Pi in a paradoxical fashion. On the one hand, Pi inhibited catalysis by competing with the substrate RuBP, and on the other hand it stimulated enzyme activation in a dual manner manifested by multiphasic kinetics, which differed from the effect on activation of the higher plant enzyme. Pi concentrations > 5 mM promoted the carbamylation of the cyanobacterial enzyme and the binding of Mg2+ to the carbanion at suboptimal concentrations of CO2 and Mg2+. Surprisingly, Pi also increased the activation level of the carbamylated enzyme via another putative site of interaction. In contrast with the higher plant RuBisCO, RuBP did not inhibit the stimulatory effect of phosphate on activation of the cyanobacterial enzyme, suggesting a Pi effect through a site other than the sugar binding site. The dual effect on activation could be distinguished by the phosphate analogue vanadate, which inhibited only the stimulation achieved at high phosphate concentrations. The elevation of RuBisCO activation at suboptimal levels of CO2 and high concentrations of RuBP suggests that in cyanobacteria Pi may have a role analogous to that of RuBisCO activase in higher plants.

摘要

正磷酸盐(Pi)通过一种仍存在争议的机制调节1,5-二磷酸核酮糖羧化酶/加氧酶(RuBisCO)的活性和激活作用。尽管已经描述了其对高等植物酶的影响,但对于结构相似但动力学不同的蓝藻酶的Pi调节作用却知之甚少。我们发现集胞藻PCC6803的RuBisCO受到Pi的影响,其方式自相矛盾。一方面,Pi通过与底物RuBP竞争来抑制催化作用;另一方面,它以多相动力学表现出的双重方式刺激酶的激活,这与对高等植物酶激活的影响不同。Pi浓度>5 mM在CO2和Mg2+浓度非最适的情况下促进了蓝藻酶的氨甲酰化以及Mg2+与碳负离子的结合。令人惊讶的是,Pi还通过另一个假定的相互作用位点提高了氨甲酰化酶的激活水平。与高等植物RuBisCO不同,RuBP并未抑制磷酸盐对蓝藻酶激活的刺激作用,这表明Pi通过糖结合位点以外的位点发挥作用。对激活的双重作用可以通过磷酸盐类似物钒酸盐来区分,钒酸盐仅抑制在高磷酸盐浓度下实现的刺激作用。在CO2浓度非最适和RuBP浓度高的情况下RuBisCO激活水平的升高表明,在蓝藻中Pi可能具有与高等植物中RuBisCO活化酶类似的作用。

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