Australian Research Council Centre of Excellence in Plant Energy Biology, University of Western Australia, Perth, Australia.
Australian Research Council Centre of Excellence in Plant Energy Biology, The Australian National University, Canberra, Australia.
Biochem J. 2020 Oct 16;477(19):3885-3896. doi: 10.1042/BCJ20200413.
Multiple studies have shown ribulose-1,5-bisphosphate carboxylase/oxygenase (E.C. 4.1.1.39; Rubisco) to be subject to Lys-acetylation at various residues; however, opposing reports exist about the biological significance of these post-translational modifications. One aspect of the Lys-acetylation that has not been addressed in plants generally, or with Rubisco specifically, is the stoichiometry at which these Lys-acetylation events occur. As a method to ascertain which Lys-acetylation sites on Arabidopsis Rubisco might be of regulatory importance to its catalytic function in the Calvin-Benson cycle, we purified Rubisco from leaves in both the day and night-time and performed independent mass spectrometry based methods to determine the stoichiometry of Rubisco Lys-acetylation events. The results indicate that Rubisco is acetylated at most Lys residues, but each acetylation event occurs at very low stoichiometry. Furthermore, in vitro treatments that increased the extent of Lys-acetylation on purified Rubisco had no effect on Rubisco maximal activity. Therefore, we are unable to confirm that Lys-acetylation at low stoichiometries can be a regulatory mechanism controlling Rubisco maximal activity. The results highlight the need for further use of stoichiometry measurements when determining the biological significance of reversible PTMs like acetylation.
多项研究表明,核酮糖-1,5-二磷酸羧化酶/加氧酶(EC 4.1.1.39;Rubisco)在各种残基上受到赖氨酸乙酰化的影响;然而,关于这些翻译后修饰的生物学意义存在相互矛盾的报告。赖氨酸乙酰化的一个方面尚未在植物中得到解决,或者在 Rubisco 中特别没有得到解决,是这些赖氨酸乙酰化事件发生的化学计量。为了确定拟南芥 Rubisco 上的哪些赖氨酸乙酰化位点可能对其在卡尔文-本森循环中的催化功能具有调节重要性,我们在白天和夜间从叶片中纯化 Rubisco,并使用独立的基于质谱的方法来确定 Rubisco 赖氨酸乙酰化事件的化学计量。结果表明,Rubisco 几乎在所有赖氨酸残基上都被乙酰化,但每个乙酰化事件的化学计量都非常低。此外,体外处理增加了纯化 Rubisco 上赖氨酸乙酰化的程度,但对 Rubisco 的最大活性没有影响。因此,我们无法确认低化学计量的赖氨酸乙酰化可以是控制 Rubisco 最大活性的调节机制。结果强调了在确定可逆 PTM (如乙酰化)的生物学意义时,进一步使用化学计量测量的必要性。