Lancaster Environment Centre, Lancaster University, Lancaster LA1 4YQ, U.K.
Plant Biology and Crop Science Department, Rothamsted Research, Harpenden AL5 2JQ, U.K.
Biochem J. 2019 Sep 24;476(18):2595-2606. doi: 10.1042/BCJ20190110.
Rubisco activase (Rca) is a catalytic chaperone that remodels the active site, promotes the release of inhibitors and restores catalytic competence to Rubisco. Rca activity and its consequent effect on Rubisco activation and photosynthesis are modulated by changes to the chloroplast environment induced by fluctuations in light levels that reach the leaf, including redox status and adenosine diphosphate (ADP)/adenosine triphosphate (ATP) ratio. The (wheat) genome encodes for three Rca protein isoforms: 1β (42.7 kDa), 2β (42.2 kDa) and 2α (46.0 kDa). The regulatory properties of these isoforms were characterised by measuring rates of Rubisco activation and ATP hydrolysis by purified recombinant Rca proteins in the presence of physiological ADP/ATP ratios. ATP hydrolysis by all three isoforms was sensitive to inhibition by increasing amounts of ADP in the assay. In contrast, Rubisco activation activity of Rca 2β was insensitive to ADP inhibition, while Rca 1β and 2α were inhibited. Two double and one quadruple site-directed mutants were designed to elucidate if differences in the amino acid sequences between Rca 1β and 2β could explain the differences in ADP sensitivity. Changing two amino acids in Rca 2β to the corresponding residues in 1β (T358K & Q362E) resulted in significant inhibition of Rubisco activation in presence of ADP. The results show that the wheat Rca isoforms differ in their regulatory properties and that amino acid changes in the C domain influence ADP sensitivity. Advances in the understanding of Rubisco regulation will aid efforts to improve the efficiency of photosynthetic CO assimilation.
核酮糖-1,5-二磷酸羧化酶加氧酶激活酶(Rca)是一种催化伴侣,可重塑活性部位,促进抑制剂的释放,并恢复 Rubisco 的催化能力。Rca 活性及其对 Rubisco 激活和光合作用的影响受到叶中光水平波动引起的叶绿体环境变化的调节,包括氧化还原状态和二磷酸腺苷(ADP)/三磷酸腺苷(ATP)比。(小麦)基因组编码三种 Rca 蛋白同工型:1β(42.7 kDa)、2β(42.2 kDa)和 2α(46.0 kDa)。通过在生理 ADP/ATP 比存在下测量纯化重组 Rca 蛋白对 Rubisco 激活和 ATP 水解的速率,来表征这些同工型的调节特性。所有三种同工型的 ATP 水解对测定中 ADP 量增加的抑制作用敏感。相比之下,Rca 2β的 Rubisco 激活活性对 ADP 抑制不敏感,而 Rca 1β和 2α受到抑制。设计了两个双突变体和一个四突变体,以阐明 Rca 1β和 2β之间的氨基酸序列差异是否可以解释 ADP 敏感性的差异。将 Rca 2β中的两个氨基酸改变为 1β中的相应残基(T358K 和 Q362E),导致在存在 ADP 的情况下 Rubisco 激活的显著抑制。结果表明,小麦 Rca 同工型在其调节特性上存在差异,并且 C 结构域中的氨基酸变化影响 ADP 敏感性。对 Rubisco 调节的理解的进展将有助于提高光合 CO 同化效率的努力。