Department of Biochemistry and Molecular Biology, University of Valencia, c/ Dr. Moliner 50, Burjassot, 46100, Valencia, Spain.
Photosynth Res. 2018 Aug;137(2):251-262. doi: 10.1007/s11120-018-0497-9. Epub 2018 Mar 10.
Oxidation of the cysteines from ribulose 1,5-bisphosphate carboxylase/oxygenase (RubisCO) leads to inactivation and promotes structural changes that increase the proteolytic sensitivity and membrane association propensity related to its catabolism. To uncover the individual role of the different cysteines, the sequential order of modification under increasing oxidative conditions was determined using chemical labeling and mass spectrometry. Besides, site-directed RubisCO mutants were obtained in Chlamydomonas reinhardtii replacing single conserved cysteines (Cys84, Cys172, Cys192, Cys247, Cys284, Cys427, Cys459 from the large and sCys41, sCys83 from the small subunit) and the redox properties of the mutant enzymes were determined. All mutants retained significant carboxylase activity and grew photoautotrophically, indicating that these conserved cysteines are not essential for catalysis. Cys84 played a noticeable structural role, its replacement producing a structurally altered enzyme. While Cys247, Cys284, and sCys83 were not affected by the redox environment, all other residues were oxidized using a disulfide/thiol ratio of around two, except for Cys172 whose oxidation was distinctly delayed. Remarkably, Cys192 and Cys427 were apparently protective, their absence leading to a premature oxidation of critical residues (Cys172 and Cys459). These cysteines integrate a regulatory network that modulates RubisCO activity and conformation in response to oxidative conditions.
核酮糖 1,5-二磷酸羧化酶/加氧酶(RubisCO)中的半胱氨酸发生氧化会导致其失活,并促进结构变化,增加与分解代谢相关的蛋白水解敏感性和膜结合倾向。为了揭示不同半胱氨酸的个体作用,使用化学标记和质谱法确定了在氧化条件增加下修饰的顺序。此外,在莱茵衣藻中获得了定点突变的 RubisCO,取代了单个保守半胱氨酸(大亚基中的 Cys84、Cys172、Cys192、Cys247、Cys284、Cys427 和 Cys459,以及小亚基中的 sCys41 和 sCys83),并测定了突变酶的氧化还原性质。所有突变体都保留了显著的羧化酶活性并进行光自养生长,表明这些保守半胱氨酸对于催化不是必需的。Cys84 起着显著的结构作用,其取代产生了结构改变的酶。虽然 Cys247、Cys284 和 sCys83 不受氧化还原环境的影响,但除了 Cys172 其氧化明显延迟外,所有其他残基都被氧化成大约两个二硫键/巯基的比例。值得注意的是,Cys192 和 Cys427 显然具有保护作用,它们的缺失导致关键残基(Cys172 和 Cys459)过早氧化。这些半胱氨酸整合了一个调节网络,该网络可调节 RubisCO 活性和构象以响应氧化条件。