Department of Life, Health and Environmental Sciences, University of L'Aquila, 67100, L'Aquila, Italy.
Sci Rep. 2023 Mar 13;13(1):4123. doi: 10.1038/s41598-023-31335-y.
Oligogalacturonide-oxidases (OGOXs) and cellodextrin-oxidase (CELLOX) are plant berberine bridge enzyme-like oligosaccharide-oxidases (OSOXs) that oxidize, respectively, oligogalacturonides (OGs) and cellodextrins (CDs), thereby inactivating their elicitor nature and concomitantly releasing HO. Little is known about the physiological role of OSOX activity. By using an ABTS-reduction assay, we identified a novel reaction mechanism through which the activity of OSOXs on cell wall oligosaccharides scavenged the radical cation ABTS with an efficiency dependent on the type and length of the oxidized oligosaccharide. In contrast to the oxidation of longer oligomers such as OGs (degree of polymerization from 10 to 15), the activity of OSOXs on short galacturonan- and cellulose-oligomers (degree of polymerization ≤ 4) successfully counteracted the radical cation-generating activity of a fungal laccase, suggesting that OSOXs can generate radical cation scavenging activity in the apoplast with a power proportional to the extent of degradation of the plant cell wall, with possible implications for redox homeostasis and defense against oxidative stress.
寡糖氧化酶 (OGOXs) 和纤维二糖氧化酶 (CELLOX) 是植物小檗碱桥酶样寡聚糖氧化酶 (OSOXs),分别氧化寡聚半乳糖醛酸 (OGs) 和纤维二糖 (CDs),从而使它们失去激发子特性,并同时释放 HO。OSOX 活性的生理作用知之甚少。通过使用 ABTS 还原测定法,我们发现了一种新的反应机制,通过该机制,OSOX 对细胞壁寡糖的活性通过与氧化寡糖的类型和长度相关的效率来清除 ABTS 自由基阳离子。与较长寡聚物(聚合度从 10 到 15)的氧化相比,OSOXs 对短半乳糖醛酸和纤维素寡聚物(聚合度≤4)的活性成功地抵消了真菌漆酶产生自由基阳离子的活性,这表明 OSOXs 可以在质外体中产生自由基阳离子清除活性,其功率与植物细胞壁降解的程度成正比,这可能对氧化还原稳态和抵御氧化应激具有重要意义。