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Temperature response of Rubisco kinetics in Arabidopsis thaliana: thermal breakpoints and implications for reaction mechanisms

机译:拟南芥Rubisco动力学的温度响应:热断裂点及其对反应机理的影响

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摘要

Enhancement of Rubisco kinetics could improve photosynthetic efficiency, ultimately resulting in increased crop yield. However, imprecise knowledge of the reaction mechanism and the individual rate constants limits our ability to optimize the enzyme. Membrane inlet mass spectrometry (MIMS) may offer benefits over traditional methods for determining individual rate constants of the Rubisco reaction mechanism, as it can directly monitor concentration changes in CO2, O2, and their isotopologs during assays. However, a direct comparison of MIMS with the traditional radiolabel method of determining Rubisco kinetic parameters has not been made. Here, the temperature responses of Rubisco kinetic parameters from Arabidopsis thaliana were measured using radiolabel and MIMS methods. The two methods provided comparable parameters above 25 °C, but temperature responses deviated at low temperature as MIMS-derived catalytic rates of carboxylation, oxygenation, and CO2/O2 specificity showed thermal breakpoints. Here, we discuss the variability and uncertainty surrounding breakpoints in the Rubisco temperature response and the relevance of individual rate constants of the reaction mechanisms to potential breakpoints.
机译:Rubisco动力学的增强可以提高光合效率,最终导致作物产量增加。但是,对反应机理和个别速率常数的不精确了解限制了我们优化酶的能力。膜入口质谱(MIMS)可能比传统方法确定Rubisco反应机理的各个速率常数更具优势,因为它可以直接监测化验期间CO2,O2及其同位素的浓度变化。但是,尚未将MIMS与确定Rubisco动力学参数的传统放射性标记方法进行直接比较。在这里,使用放射性标记和MIMS方法测量了拟南芥Rubisco动力学参数的温度响应。两种方法均提供了高于25°C的可比较参数,但是由于MIMS衍生的羧化,氧化和CO2 / O2特异性催化速率显示出热断裂点,因此温度响应在低温下有所偏离。在这里,我们讨论了Rubisco温度响应中断点周围的变异性和不确定性,以及反应机理的各个速率常数与潜在断点之间的相关性。

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