Caccamo Anna, Vega de Luna Félix, Wahni Khadija, Volkov Alexander N, Przybyla-Toscano Jonathan, Amelii Antonello, Kriznik Alexandre, Rouhier Nicolas, Messens Joris, Remacle Claire
Genetics and Physiology of Microalgae, InBios/Phytosystems Research Unit, University of Liège, 4000 Liège, Belgium.
VIB-VUB Center for Structural Biology, 1050 Brussels, Belgium.
Antioxidants (Basel). 2023 Oct 31;12(11):1946. doi: 10.3390/antiox12111946.
Recent phylogenetic studies have unveiled a novel class of ascorbate peroxidases called "ascorbate peroxidase-related" (APX-R). These enzymes, found in green photosynthetic eukaryotes, lack the amino acids necessary for ascorbate binding. This study focuses on the sole APX-R from referred to as ascorbate peroxidase 2 (APX2). We used immunoblotting to locate APX2 within the chloroplasts and in silico analysis to identify key structural motifs, such as the twin-arginine transport (TAT) motif for lumen translocation and the metal-binding MxxM motif. We also successfully expressed recombinant APX2 in . Our in vitro results showed that the peroxidase activity of APX2 was detected with guaiacol but not with ascorbate as an electron donor. Furthermore, APX2 can bind both copper and heme, as evidenced by spectroscopic, and fluorescence experiments. These findings suggest a potential interaction between APX2 and plastocyanin, the primary copper-containing enzyme within the thylakoid lumen of the chloroplasts. Predictions from structural models and evidence from H-NMR experiments suggest a potential interaction between APX2 and plastocyanin, emphasizing the influence of APX2 on the copper-binding abilities of plastocyanin. In summary, our results propose a significant role for APX2 as a regulator in copper transfer to plastocyanin. This study sheds light on the unique properties of APX-R enzymes and their potential contributions to the complex processes of photosynthesis in green algae.
最近的系统发育研究揭示了一类名为“抗坏血酸过氧化物酶相关”(APX-R)的新型抗坏血酸过氧化物酶。这些酶存在于绿色光合真核生物中,缺乏抗坏血酸结合所需的氨基酸。本研究聚焦于来自[具体来源未提及]的唯一APX-R,即抗坏血酸过氧化物酶2(APX2)。我们使用免疫印迹法在叶绿体中定位APX2,并通过计算机分析鉴定关键结构基序,如用于内腔转运的双精氨酸转运(TAT)基序和金属结合MxxM基序。我们还成功在[具体表达系统未提及]中表达了重组APX2。我们的体外实验结果表明,以愈创木酚为电子供体时可检测到APX2的过氧化物酶活性,但以抗坏血酸为电子供体时未检测到。此外,光谱和荧光实验证明,APX2既能结合铜也能结合血红素。这些发现表明APX2与质体蓝素之间可能存在相互作用,质体蓝素是叶绿体类囊体腔中的主要含铜酶。结构模型的预测和氢核磁共振实验的证据表明APX2与质体蓝素之间可能存在相互作用,这强调了APX2对质体蓝素铜结合能力的影响。总之,我们的结果表明APX2作为铜向质体蓝素转移的调节因子具有重要作用。这项研究揭示了APX-R酶的独特性质及其对绿藻光合作用复杂过程的潜在贡献。