Sainis J K, Jawali N
Molecular Biology & Agriculture Division, Bhabha Atomic Research Centre, Trombay, Bombay.
Indian J Biochem Biophys. 1994 Aug;31(4):215-20.
Calvin cycle multienzyme complex, consisting of phosphoriboisomerase, phosphoribulokinase and ribulose-1,5-bisphosphate carboxylase (Rubisco), shows ribose-5-phosphate + ATP dependent CO2 fixation activity with a small but discernible lag. Transient time analysis showed that the lag at pH 7 was independent of multienzyme concentration and was significantly lower than the expected transient time calculated from Km and Vmax of the individual enzymes, indicative of channeling of the intermediates in the enzyme complex. Channeling of ribulose-1,5-bisphosphate was found to offer a catalytic advantage to Rubisco. Rubisco shows a decrease in activity during catalysis in ribulose-1,5-bisphosphate dependent CO2 fixation reaction, due to the formation of the catalytic inhibitor. Such a decrease of Rubisco activity was not observed in ribose-5-phosphate + ATP dependent CO2 fixation reaction and the catalytic inhibitor was also not detected. These results suggested that the intermediates are channeled in the complex and channeling offers a catalytic facilitation to Rubisco.
卡尔文循环多酶复合体由磷酸核糖异构酶、磷酸核糖激酶和核酮糖-1,5-二磷酸羧化酶(Rubisco)组成,具有依赖于核糖-5-磷酸+ATP的二氧化碳固定活性,存在一个虽小但可察觉的延迟。瞬态时间分析表明,pH 7时的延迟与多酶浓度无关,且明显低于根据各酶的Km和Vmax计算出的预期瞬态时间,这表明酶复合物中存在中间产物的通道化现象。已发现核酮糖-1,5-二磷酸的通道化现象赋予了Rubisco催化优势。在依赖于核酮糖-1,5-二磷酸的二氧化碳固定反应中,Rubisco在催化过程中活性降低,这是由于催化抑制剂的形成。而在依赖于核糖-5-磷酸+ATP的二氧化碳固定反应中未观察到Rubisco活性的这种降低,也未检测到催化抑制剂。这些结果表明,中间产物在复合物中发生通道化,且通道化对Rubisco具有催化促进作用。