Exploring gingerol glucosides with enhanced anti-inflammatory activity through a newly identified α-glucosidase (ArG) from Agrobacterium radiobacter DSM 30147
{"title":"Exploring gingerol glucosides with enhanced anti-inflammatory activity through a newly identified α-glucosidase (ArG) from Agrobacterium radiobacter DSM 30147","authors":"","doi":"10.1016/j.jbiosc.2024.06.004","DOIUrl":null,"url":null,"abstract":"<div><p><span>Gingerols are phenolic biomedical compounds found in ginger (</span><span><span>Zingiber officinale</span></span>) whose low aqueous solubility limits their medical application. To improve their solubility and produce novel glucosides, an <em>α</em>-glucosidase (glycoside hydrolase) from <span><span>Agrobacterium radiobacter</span></span> DSM 30147 (<em>Ar</em>G) was subcloned, expressed, purified, and then confirmed to have additional <em>α</em>-glycosyltransferase activity. After optimization, the <em>Ar</em>G could glycosylate gingerols into three mono-glucosides based on the length of their acyl side chains. Compound <strong>1</strong> yielded 63.0 %, compound <strong>2</strong> yielded 26.9 %, and compound <strong>3</strong><span> yielded 4.37 %. The production yield of the gingerol glucosides optimally increased in 50 mM phosphate buffer (pH 6) with 50 % (w/v) maltose and 1000 mM Li</span><sup>+</sup> at 40 °C for an 24-h incubation. The structures of purified compound <strong>1</strong> and compound <strong>2</strong> were determined as 6-gingerol-5-<em>O</em>-<em>α</em>-glucoside (<strong>1</strong>) and novel 8-gingerol-5-<em>O</em>-<em>α</em>-glucoside (<strong>2</strong><span><span>), respectively, using nucleic magnetic resonance and mass </span>spectral analyses. The aqueous solubility of the gingerol glucosides was greatly improved. Further assays showed that, unusually, 6-gingerol-5-</span><em>O</em>-<em>α</em>-glucoside had 10-fold higher anti-inflammatory activity (IC<sub>50</sub> value of 15.3 ± 0.5 μM) than 6-gingerol, while the novel 8-gingerol-5-<em>O</em>-<em>α</em>-glucoside retained 42.7 % activity (IC<sub>50</sub> value of 106 ± 4 μM) compared with 8-gingerol. The new <em>α</em>-glucosidase (<em>Ar</em>G) was confirmed to have acidic <em>α</em>-glycosyltransferase activity and could be applied in the production of <em>α</em>-glycosyl derivatives. The 6-gingerol-5-<em>O</em>-<em>α</em>-glucoside can be applied as a clinical drug for anti-inflammatory activity.</p></div>","PeriodicalId":15199,"journal":{"name":"Journal of bioscience and bioengineering","volume":"138 3","pages":"Pages 218-224"},"PeriodicalIF":2.3000,"publicationDate":"2024-07-11","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of bioscience and bioengineering","FirstCategoryId":"5","ListUrlMain":"https://www.sciencedirect.com/science/article/pii/S1389172324001671","RegionNum":4,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"BIOTECHNOLOGY & APPLIED MICROBIOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
Gingerols are phenolic biomedical compounds found in ginger (Zingiber officinale) whose low aqueous solubility limits their medical application. To improve their solubility and produce novel glucosides, an α-glucosidase (glycoside hydrolase) from Agrobacterium radiobacter DSM 30147 (ArG) was subcloned, expressed, purified, and then confirmed to have additional α-glycosyltransferase activity. After optimization, the ArG could glycosylate gingerols into three mono-glucosides based on the length of their acyl side chains. Compound 1 yielded 63.0 %, compound 2 yielded 26.9 %, and compound 3 yielded 4.37 %. The production yield of the gingerol glucosides optimally increased in 50 mM phosphate buffer (pH 6) with 50 % (w/v) maltose and 1000 mM Li+ at 40 °C for an 24-h incubation. The structures of purified compound 1 and compound 2 were determined as 6-gingerol-5-O-α-glucoside (1) and novel 8-gingerol-5-O-α-glucoside (2), respectively, using nucleic magnetic resonance and mass spectral analyses. The aqueous solubility of the gingerol glucosides was greatly improved. Further assays showed that, unusually, 6-gingerol-5-O-α-glucoside had 10-fold higher anti-inflammatory activity (IC50 value of 15.3 ± 0.5 μM) than 6-gingerol, while the novel 8-gingerol-5-O-α-glucoside retained 42.7 % activity (IC50 value of 106 ± 4 μM) compared with 8-gingerol. The new α-glucosidase (ArG) was confirmed to have acidic α-glycosyltransferase activity and could be applied in the production of α-glycosyl derivatives. The 6-gingerol-5-O-α-glucoside can be applied as a clinical drug for anti-inflammatory activity.
期刊介绍:
The Journal of Bioscience and Bioengineering is a research journal publishing original full-length research papers, reviews, and Letters to the Editor. The Journal is devoted to the advancement and dissemination of knowledge concerning fermentation technology, biochemical engineering, food technology and microbiology.