1.Efficient synthesis of polydatin by a two-enzyme coupled with one-pot method.
Jingli DAI ; Zixu YAN ; Kexue ZHAO ; Xiaoli LI ; Yongjun ZANG ; Qilin XU ; Fucheng ZHU
Chinese Journal of Biotechnology 2025;41(1):461-473
Traditional Chinese medicine of Polygonum cuspidatum has been utilized in China for thousands of years. Its primary active compound, polydatin, exhibits a variety of pharmacological effects including the regulation of glucose and lipid metabolism, suppression of cough and asthma, as well as antibacterial and anti-inflammatory properties. However, conventional methods for polydatin production are inadequate to satisfy the market demand. This study aims to explore the green and efficient preparation of polydatin. With resveratrol as the substrate, we efficiently synthesized polydatin by using the triple mutant IGW (Y14I/I62G/M315W) of the glycosyltransferase UGTBS based on a strategy of two-enzyme coupled with one-pot and realized the recycling of uridine diphosphate-glucose (UDPG). The conditions of the two-enzyme reaction were optimized. Under the conditions of 35 ℃, pH 8.0, IGW: AtSuSy1 activity ratio of 3:4, dimethyl sulfoxide (DMSO) volume fraction of 5%, uridine diphosphate (UDP) concentration of 0.10 mmol/L, and sucrose concentration of 0.6 mol/L, the conversion of 2 mmol/L resveratrol reached 80.6% within 1 h, and the proportion of polydatin was over 90%. This study achieved the recycling of UDPG via a two-enzyme coupling system and shortened the reaction time. At the same time, the fed-batch strategy was adopted, and the yield of polydatin reached 6.28 g/L after 24 h in the one-pot coupling reaction, which provided a new strategy for green and efficient preparation of polydatin.
Stilbenes/chemistry*
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Glucosides/biosynthesis*
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Resveratrol
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Fallopia japonica/chemistry*
;
Glycosyltransferases/genetics*
2.Cloning and expression analysis of and quantification of downstream products in under flooding stress.
Qing-Jun ZOU ; Tao WANG ; Qiao-Sheng GUO ; You-Mei XIAO ; Li-Wei WU
China Journal of Chinese Materia Medica 2018;43(1):52-57
To investigate the effects of the expression of flavonoid 3' hydroxylase gene ( and active ingredients in under flooding stress, we cloned F3'H from Hangju (temporarily named ) and conducted bioinformatics analysis. During the flower bud differentiation stage, we flooded the and then used the Real-time PCR to detect the relative expression of ; Finally, active ingredients of the inflorescence were measured by HPLC.The sequencing results showed that 1 562 bp sequence was acquired with the largest open reading frame of 1 527 bp, which encoded 508 amino acids. The phylogenetic tree found that was highly homologous to other species of Compositae. Real-time PCR results showed that had a significant response to flooding stress and had the highest expression level after flooding for 24 h, which was about 9 times as that of the control group. The results of HPLC showed that luteolin and luteoloside, the downstream products catalyzed by the F3'H, were significantly higher than those in the control group. It was also found that the contents of chlorogenic acid and 3,5- acid were also significantly higher than those of the control group. Therefore, regulates the synthesis of downstream products by regulating the expression of in the flavonoid synthesis pathway under flooding stress, thereby responding to flooding stress. The flooding stress during flower bud differentiation can significantly enhance the accumulation of active ingredients.
Chrysanthemum
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enzymology
;
genetics
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Cloning, Molecular
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Cytochrome P-450 Enzyme System
;
genetics
;
Floods
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Gene Expression Regulation, Plant
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Glucosides
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biosynthesis
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Luteolin
;
biosynthesis
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Phylogeny
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Plant Proteins
;
genetics
;
Stress, Physiological
3.Enzymatic biosynthesis of novel neobavaisoflavone glucosides via Bacillus UDP-glycosyltransferase.
Tao MA ; Yi-Qun DAI ; Nan LI ; Qiang HUO ; Hong-Mei LI ; Yu-Xin ZHANG ; Zheng-Hao PIAO ; Cheng-Zhu WU
Chinese Journal of Natural Medicines (English Ed.) 2017;15(4):281-287
The present study was designed to perform structural modifications of of neobavaisoflavone (NBIF), using an in vitro enzymatic glycosylation reaction, in order to improve its water-solubility. Two novel glucosides of NBIF were obtained from an enzymatic glycosylation by UDP-glycosyltransferase. The glycosylated products were elucidated by LC-MS, HR-ESI-MS, and NMR analysis. The HPLC peaks were integrated and the concentrations in sample solutions were calculated. The MTT assay was used to detect the cytotoxic activity of compounds in cancer cell lines. Based on the spectroscopic analyses, the two novel glucosides were identified as neobavaisoflavone-4'-O-β-D-glucopyranoside (1) and neobavaisoflavone-4', 7-di-O-β-D-glucopyranoside (2). Additionally, the water-solubilities of compounds 1 and 2 were approximately 175.1- and 4 031.9-fold higher than that of the substrate, respectively. Among the test compounds, only NBIF exhibited weak cytotoxicity against four human cancer cell lines, with IC values ranging from 63.47 to 72.81 µmol·L. These results suggest that in vitro enzymatic glycosylation is a powerful approach to structural modification, improving water-solubility.
Antineoplastic Agents
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metabolism
;
pharmacology
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Bacillus
;
enzymology
;
Cell Line, Tumor
;
Colorimetry
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Drug Screening Assays, Antitumor
;
Glucosides
;
biosynthesis
;
chemistry
;
Glycosyltransferases
;
metabolism
;
Humans
;
Isoflavones
;
biosynthesis
;
chemistry
;
Molecular Structure
;
Solubility
4.Effects of ggpS over-expression on glycosylglycerol and glycerol biosynthesis of Synechocystis sp. PCC 6803.
Peizhen MA ; Xiaoming TAN ; Xuefeng LÜ ; Jiyuan TIAN
Chinese Journal of Biotechnology 2016;32(3):347-354
To study the roles of glucosylglycerol phosphate synthase (Ggps) in glucosylglycerol (GG) and glycerol biosynthesis, we over-expressed Ggps from either Synechocystis sp. PCC 6803 or Synechococcus sp. PCC 7002 in a Synechocystis strain with a high GG titer, and determined the GG and glycerol accumulation in the resultant mutants grown under different NaCl-stress conditions. Ion chromatography results revealed that GG yield was not improved, but glycerol production was significantly enhanced by over-expression of Ggps from Synechocystis sp. PCC 6803 (6803ggpS). In addition, increasing the NaCl concentration of medium from 600 to 900 mmol/L led to a further 75% increase of glycerol accumulation in the mutant strain with 6803ggpS over-expression. These findings show the role of ggpS in driving the carbon flux to the glycerol biosynthesis pathway, and will be helpful for further improvement of GG and glycerol production in Synechocystis.
Bacterial Proteins
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metabolism
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Culture Media
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Glucosides
;
biosynthesis
;
Glucosyltransferases
;
metabolism
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Glycerol
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metabolism
;
Industrial Microbiology
;
Sodium Chloride
;
Synechococcus
;
enzymology
;
Synechocystis
;
enzymology
;
metabolism
5.Biosynthesis of a new psoralidin glucoside by enzymatic glycosylation.
Jing LI ; Nan LI ; Yu-Ru ZHAO ; Yi-Qun DAI ; Qiang HUO ; Tao MA ; Hong-Mei LI ; Cheng-Zhu WU
Journal of Southern Medical University 2016;36(8):1029-1033
OBJECTIVETo modify the structure of psoralidin using in vitro enzymatic glycosylation to improve its water solubility and stability.
METHODSA new psoralidin glucoside (1) was obtained by enzymatic glycosylation using a UDP- glycosyltransferase. The chemical structure of compound 1 was elucidated by HR-ESI-MS and nuclear magnetic resonance (NMR) analysis. The high-performance liquid chromatography (HPLC) peaks were integrated and sample solution concentrations were calculated. MTT assay was used to detect the cytotoxicity of the compounds against 3 cancer cell lines in vitro. Results Based on the spectroscopic data, the new psoralidin glucoside was identified as psoralidin-6',7-di-O-β-D- glucopyranoside (1), whose water solubility was 32.6-fold higher than that of the substrate. Analyses of pH and temperature stability demonstrated that compound 1 was more stable than psoralidin at pH 8.8 and at high temperatures. Only psoralidin exhibited a moderate cytotoxicity against 3 human cancer cell lines. Conclusion In vitro enzymatic glycosylation is a powerful approach for structural modification and improving water solubility and stability of compounds.
Antineoplastic Agents ; metabolism ; Benzofurans ; metabolism ; Cell Line, Tumor ; Chromatography, High Pressure Liquid ; Coumarins ; metabolism ; Glucosides ; biosynthesis ; Glycosylation ; Glycosyltransferases ; metabolism ; Humans ; Magnetic Resonance Spectroscopy ; Solubility
6.Regulation of syringin, chlorogenic acid and 1,5-dicaffeoylquinic acid biosynthesis in cell suspension cultures of Saussurea involucrata.
Ri-Dao CHEN ; Xiao LIU ; Jian-Hua ZOU ; Lin YANG ; Jun-Gui DAI
China Journal of Chinese Materia Medica 2014;39(12):2275-2280
Syringin, chlorogenic acid and 1,5-dicaffeoylquinic acid are three main bioactive ingredients in herbs of Saussurea involucrata with various pharmacological properties, while their contents are very low. In this study, the biosynthesis of syringin, chlorogenic acid and 1,5-dicaffeoylquinic acid in the cell suspension cultures of S. involucrata were regulated by feeding carbon sources and precursors, which resulted in a great increase of the contents and yields of the above three bioactive ingredients. After 16 days of fermentation, the yields of syringin, chlorogenic acid and 1,5-dicaffeoylquinic acid reached 339.0, 225.3, 512.7 mg x L(-1), respectively. Meanwhile, their contents increased up to 67.9, 1.9, 10.6 times of wild medicinal material, respectively. The results provided a solid basis for further studies on application of cell suspension cultures of S. involucrata for large-scale production of bioactive compounds syringin, chlorogenic acid and 1,5-dicaffeoylquinic acid.
Cell Culture Techniques
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Cells, Cultured
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Chlorogenic Acid
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analysis
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metabolism
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Cinnamates
;
analysis
;
metabolism
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Glucosides
;
analysis
;
biosynthesis
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Phenylpropionates
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analysis
;
Saussurea
;
chemistry
;
growth & development
;
metabolism
7.Research progress of alternative production approaches of salidroside.
Xiu-Wen WU ; Yu-Shuai PENG ; Ru-Feng WANG
China Journal of Chinese Materia Medica 2013;38(21):3656-3660
Salidroside, one of the active components of Rhodiola plants, is a phenolic glycoside with significant biological activities. The investigation and development of alternative production approaches of salidroside is of high academic and application values due to the limited resource of Rhodiola plants, and from which the low yield of salidroside. This review summarized the research progress and perspective of the alternative production approaches of salidroside including both chemosynthetic and biosynthetic methods and pathways.
Biosynthetic Pathways
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Cell Culture Techniques
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Crassulaceae
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metabolism
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Glucosides
;
biosynthesis
;
chemical synthesis
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chemistry
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Humans
;
Molecular Structure
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Phenols
;
chemical synthesis
;
chemistry
;
Plant Extracts
;
biosynthesis
;
chemical synthesis
;
chemistry
8.Salidroside biosynthesis pathway: the initial reaction and glycosylation of tyrosol.
Lanqing MA ; Chunmei LIU ; Hansong YU ; Jixing ZHANG ; Dongyao GAO ; Yanfang LI ; Younian WANG
Chinese Journal of Biotechnology 2012;28(3):282-294
Salidroside, the 8-O-beta-D-glucoside of tyrosol, is a novel adaptogenic drug extracted from the medicinal plant Rhodiola sachalinensis A. Bor. Due to the scarcity of R. sachalinensis and its low yield of salidroside, there is great interest in enhancing the production of salidroside by biotechnological process. Glucosylation of tyrosol is thought to be the final step in salidroside biosynthesis. In our related works, three UGT clones were isolated from the roots and the cultured cells. Our intention was to combine the catalytic specificity of these UGTs in vitro in order to change the level of salidroside in vivo by over-expression of the above UGTs. However, as the aglycone substrate of salidroside, the biosynthetic pathway of tyrosol and its regulation are less well understood. The results of related studies revealed that there are two different possibilities for the tyrosol biosynthetic pathway. One possibility is that tyrosol is produced from a p-coumaric acid precursor, which is derived mainly from phenylalanine. The second possibility is that the precursor of tyrosol might be tyramine, which is synthesized from tyrosine. Our previous work demonstrated that over-expression of the endogenous phenylalanine ammonia-lyase gene (PALrs1) and accumulation of p-coumaric acid did not facilitate tyrosol biosynthesis. In contrast, the data presented in our recent work provide in vitro and in vivo evidence that the tyrosine decarboxylase (RsTyrDC) is most likely to have an important function in the initial reaction of the salidroside biosynthesis pathway in R. Sachalinensis.
Genetic Engineering
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Glucosides
;
biosynthesis
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Glycosylation
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Phenols
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Phenylethyl Alcohol
;
analogs & derivatives
;
chemistry
;
metabolism
;
Rhodiola
;
metabolism
;
Tyrosine
;
metabolism
;
Tyrosine Decarboxylase
;
metabolism
9.Piceatannol-3'-O-beta-D-glucopyranoside as an active component of rhubarb activates endothelial nitric oxide synthase through inhibition of arginase activity.
Ainieng WOO ; Byungsun MIN ; Sungwoo RYOO
Experimental & Molecular Medicine 2010;42(7):524-532
Arginase competitively inhibits nitric oxide synthase (NOS) via use of the common substrate L-arginine. Arginase II has recently reported as a novel therapeutic target for the treatment of cardiovascular diseases such as atherosclerosis. Here, we demonstrate that piceatannol-3'-O-beta-D-glucopyranoside (PG), a potent component of stilbenes, inhibits the activity of arginase I and II prepared from mouse liver and kidney lysates, respectively, in a dose-dependent manner. In human umbilical vein endothelial cells, incubation of PG markedly blocked arginase activity and increased NOx production, as measured by Griess assay. The PG effect was associated with increase of eNOS dimer ratio, although the protein levels of arginase II or eNOS were not changed. Furthermore, isolated mice aortic rings treated with PG showed inhibited arginase activity that resulted in increased nitric oxide (NO) production upto 78%, as measured using 4-amino-5-methylamino-2',7'-difluorescein (DAF-FM) and a decreased superoxide anions up to 63%, as measured using dihydroethidine (DHE) in the intact endothelium. PG showed IC50 value of 11.22 microM and 11.06 microM against arginase I and II, respectively. PG as an arginase inhibitor, therefore, represents a novel molecule for the therapy of cardiovascular diseases derived from endothelial dysfunction and may be used for the design of pharmaceutical compounds.
Animals
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Aorta/drug effects/metabolism
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Arginase/*antagonists & inhibitors/metabolism
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Dose-Response Relationship, Drug
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Endothelial Cells/drug effects/enzymology
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Enzyme Activation/drug effects
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Glucosides/chemistry/*pharmacology
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Humans
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Mice
;
Mice, Inbred C57BL
;
Nitrates/metabolism
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Nitric Oxide/biosynthesis
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Nitric Oxide Synthase Type III/*metabolism
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Nitrites/metabolism
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Reactive Oxygen Species/metabolism
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Rheum/*chemistry
;
Stilbenes/chemistry/*pharmacology
10.The effect of aloesin on melanocytes in the pigmented skin equivalent model.
Zhuang-qun YANG ; Zheng-Hui WANG ; Tie-Liang ZHANG ; Jun-Bo TU ; Yong SONG ; Xiao-Yi HU ; Guo-Guang LI
Chinese Journal of Plastic Surgery 2008;24(1):50-53
OBJECTIVETo observe the effect of aloesin, tea polyphenols, arbutin on melanocytes in the pigmented skin equivalent model.
METHODSFirst, we constructed the pigmented skin equivalent model in vitro. And then we detected the effect of aloesin, tea polyphenols and arbutin on the cells' shape, tyrosinase activity and formation of melanin in the constructed pigmented skin equivalent.
RESULTSThree depigmenting agents showed an inhibition effect on the tyrosinase activity of melanocytes and reduced significantly melanin content in the pigmented skin equivalent model, in which the tea polyphenols had the strongest effect, and then was the aloesin. But the tea polyphenols showed the strongest toxicity, while the aloesin and arbutin had a much lower toxicity.
CONCLUSIONSAll the three depigmenting agents showed a concentration dependent suppression effect on the tyrosinase activity and formation of melanin, in which the tea polyphenols was the strongest effect( P <0.05). Aoesin has a good suppression effect on the tyrosinase activity and formation of melanin, but has a much lower toxicity, which could be used as a safe depigmenting agent.
Arbutin ; pharmacology ; Cells, Cultured ; Chromones ; pharmacology ; Flavonoids ; pharmacology ; Foreskin ; cytology ; Glucosides ; pharmacology ; Humans ; Male ; Melanins ; biosynthesis ; Melanocytes ; drug effects ; Phenols ; pharmacology ; Pigmentation ; Polyphenols ; Skin ; drug effects ; Skin Aging ; drug effects

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