1.A quantitative analytical method for valienone and its application in the evaluation of valienone production by a breakthrough microbial process.
Li CUI ; Karin YANAGI ; Ting SHI ; Zhang-Min LIU ; Lin-Quan BAI ; Yan FENG
Chinese Journal of Natural Medicines (English Ed.) 2017;15(10):794-800
Valienone is a significant natural carbasugar member of the C7-cyclitol family as a valuable precursor for glycosidase inhibitor drugs. It is an intermediate of validamycin A biosynthesis pathway and exhibits minimal accumulation in the fermentation broth of the natural Streptomyces producer. A quantitative analytical method is crucial for the development of a breakthrough microbial process overcoming the consumption of the natural metabolic flux. The present study was designed to develop a pre-column derivatization high-performance liquid chromatography method for quantification of valienone and to help establish a straightforward fermentation process for valienone production by metabolically engineered Streptomyces hygroscopicus 5008. Valienone was derivatized by 2, 4-dinitrophenylhydrazine (DNPH) in 10 mmol·L HPO at 37 °C for 45 min and the derivatives were separated on Eclipse XDB-C (5 μm, 4.6 mm × 150 mm) column at 30 °C eluted with 50% acetonitrile for 18 min. The derivatives were detected by diode array detector at 380 nm and the configurations of the derivatives were determined by computational studies. The method was shown to be effective, sensitive, and reliable. Good linearity was found in the range of 5-2 000 μg·mL. The intra- and inter-day precisions were 1.1%-2.7% and 1.7%-2.2%, respectively. The absolute recovery of the spiked samples was 97.2%-102.6%. To date, this is the first reversed-phase high-performance liquid chromatography detection method for valienone in microbial culture medium. This method successfully helped evaluate the valienone production capability of the engineered Streptomyces hygroscopicus 5008 and could be promising for C7-cyclitol profiling of different engineered mutants combined with the metabonomics methods.
Bacterial Proteins
;
genetics
;
metabolism
;
Biosynthetic Pathways
;
Chromatography, Reverse-Phase
;
methods
;
Cyclohexenes
;
analysis
;
Hexosamines
;
analysis
;
biosynthesis
;
Metabolic Engineering
;
Streptomyces
;
genetics
;
metabolism
2.Activation of NF-κB and AP-1 Mediates Hyperproliferation by Inducing β-Catenin and c-Myc in Helicobacter pylori-Infected Gastric Epithelial Cells.
Eunyoung BYUN ; Bohye PARK ; Joo Weon LIM ; Hyeyoung KIM
Yonsei Medical Journal 2016;57(3):647-651
PURPOSE: In the gastric mucosa of Helicobacter pylori (H. pylori)-infected patients with gastritis or adenocarcinoma, proliferation of gastric epithelial cells is increased. Hyperproliferation is related to induction of oncogenes, such as β-catenin and c-myc. Even though transcription factors NF-κB and AP-1 are activated in H. pylori-infected cells, whether NF-κB or AP-1 regulates the expression of β-catenein or c-myc in H. pylori-infected cells has not been clarified. The present study was undertaken to investigate whether H. pylori-induced activation of NF-κB and AP-1 mediates the expression of oncogenes and hyperproliferation of gastric epithelial cells. MATERIALS AND METHODS: Gastric epithelial AGS cells were transiently transfected with mutant genes for IκBα (MAD3) and c-Jun (TAM67) or treated with a specific NF-κB inhibitor caffeic acid phenethyl ester (CAPE) or a selective AP-1 inhibitor SR-11302 to suppress activation of NF-κB or AP-1, respecively. As reference cells, the control vector pcDNA was transfected to the cells. Wild-type cells or transfected cells were cultured with or without H. pylori. RESULTS: H. pylori induced activation of NF-κB and AP-1, cell proliferation, and expression of oncogenes (β-catenein, c-myc) in AGS cells, which was inhibited by transfection of MAD3 and TAM67. Wild-type cells and the cells transfected with pcDNA showed similar activities of NF-κB and AP-1, proliferation, and oncogene expression regardless of treatment with H. pylori. Both CAPE and SR-11302 inhibited cell proliferation and expression of oncogenes in H. pylori-infected cells. CONCLUSION: H. pylori-induced activation of NF-κB and AP-1 regulates transcription of oncogenes and mediates hyperproliferation in gastric epithelial cells.
Blotting, Western
;
Caffeic Acids
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Cell Line, Tumor
;
Cell Proliferation
;
DNA, Bacterial/analysis/genetics
;
DNA-Binding Proteins/*metabolism
;
Epithelial Cells/*metabolism
;
Gastric Mucosa/*metabolism/pathology
;
Gastritis/pathology
;
Gene Expression Regulation, Bacterial
;
Helicobacter Infections/metabolism/pathology/physiopathology
;
Helicobacter pylori/pathogenicity/physiology
;
Humans
;
NF-kappa B/antagonists & inhibitors/*biosynthesis/metabolism
;
Peptide Fragments
;
Phenylethyl Alcohol/analogs & derivatives
;
Proto-Oncogene Proteins c-jun
;
Repressor Proteins
;
Transcription Factor AP-1/*biosynthesis
;
Transcription Factors/*metabolism
;
beta Catenin/*metabolism
3.Mutagenesis of Methylobacterium extorquens AM1 for increasing pyrroloquinoline quinone production by atmospheric and room temperature plasma.
Huizhi LI ; Zhen KANG ; Jianghua LI ; Jingwen ZHOU ; Guocheng DU
Chinese Journal of Biotechnology 2016;32(8):1145-1149
As a novel cofactor of oxidoreductase, pyrroloquinoline quinone (PQQ) has a great potential of application in medicine, food industries. In order to improve the efficiency of the PQQ production by Methylobacterium extorquens AM1, the strain was treated by atmospheric and room temperature plasma (ARTP). Positive mutants with changes in PQQ yield were obtained based on a high-throughput screening approach. After ARTP treatment, analysis data show that the positive mutation rate was 31.6%. Furthermore, we obtained an excellent positive mutant M. extorquens AM1 (E-F3) with the yield of 54.0 mg/L PQQ, which was approximately 3 times as much compared with that of the wild-type strain. The robust high-throughput screening method for mutagenesis by ARTP improves PQQ production. In addition, this method also provides a new strategy for further strain improvement.
Bacterial Proteins
;
biosynthesis
;
High-Throughput Screening Assays
;
Methylobacterium extorquens
;
enzymology
;
genetics
;
Mutagenesis
;
PQQ Cofactor
;
biosynthesis
;
Plasma Gases
;
Temperature
4.Expression and characterization of a novel ω-transaminase from Burkholderia phytofirmans PsJN.
Yuncheng DU ; Wenyue DONG ; Jinju JIANG ; Qijia CHEN ; Jinhui FENG ; Qiaqing WU ; Dunming ZHU
Chinese Journal of Biotechnology 2016;32(7):912-926
Production of chiral amines and unnatural amino-acid using ω-transaminase can be achieved by kinetic resolution and asymmetric synthesis, thus ω-transaminase is of great importance in the synthesis of pharmaceutical intermediates. By genomic data mining, a putative ω-transaminase gene hbp was found in Burkholderia phytofirmans PsJN. The gene was cloned and over-expressed in Escherichia coli BL21 (DE3). The recombinant enzyme (HBP) was purified by Ni-NTA column and its catalytic properties and substrate profile were studied. HBP showed high relative activity (33.80 U/mg) and enantioselectivity toward β-phenylalanine (β-Phe). The optimal reaction temperature and pH were 40 ℃ and 8.0-8.5, respectively. We also established a simpler and more effective method to detect the deamination reaction of β-Phe by UV absorption method using microplate reader, and demonstrated the thermodynamic property of this reaction. The substrate profiling showed that HBP was specific to β-Phe and its derivatives as the amino donor. HBP catalyzed the resolution of rac-β-Phe and its derivatives, the products (R)-amino acids were obtained with about 50% conversions and 99% ee.
Bacterial Proteins
;
biosynthesis
;
genetics
;
Burkholderia
;
enzymology
;
Cloning, Molecular
;
Escherichia coli
;
genetics
;
metabolism
;
Transaminases
;
biosynthesis
;
genetics
5.Thermal stability improvement for phenylalanine hydroxylase by site-directed mutagenesis.
Shuangshuang YE ; Li ZHOU ; Zhemin ZHOU
Chinese Journal of Biotechnology 2016;32(9):1243-1254
In proteins of thermophilic bacteria, Gly is tend to be replaced by Ala and Lys is tend to be replaced by Arg to adapt the high temperature. In order to improve the thermal stability of phenylalanine hydroxylase (PAH) from Chromobacterium violaceum, all the Gly on PAH were mutated to Ala and Lys to Arg. Positive mutant enzymes with improved thermal stability were selected, followed by combined mutation and characterization. The results revealed that half-lives of K94R and G221A mutants at 50 °C were 26.2 min and 16.8 min, which were increased by 1.9-times and 0.9-times than the parent enzyme (9.0 min). The residual activity of K94R/G221A mutant was improved to 65.6% after keeping at 50 °C for 1 h, which was 6.6 time higher than the parent enzyme (8.6%). Circular dichroism (CD) spectroscopy revealed that Tm values of the parent enzyme, K94R, G221A and K94R/G221A were 51.5 ℃, 53.8 ℃, 53.1 ℃ and 54.8 ℃, respectively. According to the protein structure simulation, the two mutations were located on flexible loop. In the K94R mutant, the mutated Arg94 on the surface of the enzyme formed an extra hydrogen bond with Ile95, which stabilized the located loop. In the G221A mutant, the mutated Ala221 formed hydrophobic interaction with Leu281, which could stabilize both the loop and flexible area of the C-terminus of G221A. The results not only provided a reference for protein modification on thermal stability, but also laid the foundation for application of phenylalanine hydroxylase in the field of functional foods.
Bacterial Proteins
;
biosynthesis
;
genetics
;
Chromobacterium
;
enzymology
;
Enzyme Stability
;
Hot Temperature
;
Kinetics
;
Mutagenesis, Site-Directed
;
Mutation
;
Phenylalanine Hydroxylase
;
biosynthesis
;
genetics
;
Protein Engineering
6.Stability enhancement of urethanase from Lysinibacillus fusiformis by site-directed mutagenesis.
Xiaohui LIU ; Fang FANG ; Xiaole XIA ; Guocheng DU ; Jian CHEN
Chinese Journal of Biotechnology 2016;32(9):1233-1242
Ethyl carbamate as a potential carcinogen commonly exists in traditional fermented foods and beverages. Enzymatic removal of ethyl carbamate from fermented foods and beverages is an efficient and safe method. In this study, we mutated urethanase from Lysinibacillus fusiformis SC02 on the Q328 site through computer aided design approaches. The half-life of resulting mutants Q328C and Q328V was detected to be 7.46 and 1.96 folds higher than that of the original enzyme, and Q328R presented better thermal-tolerance than the original urethanase when incubated at high temperature. The tolerance of Q328C to ethanol and acid also increased when compared with that of the original enzyme. The stability and tolerance to acid and ethanol of urethanase could be improved by modification on its Q328 site.
Amidohydrolases
;
biosynthesis
;
genetics
;
Bacillaceae
;
enzymology
;
genetics
;
Bacterial Proteins
;
biosynthesis
;
genetics
;
Computer-Aided Design
;
Enzyme Stability
;
Ethanol
;
Mutagenesis, Site-Directed
;
Protein Engineering
7.DNA sensor cGAS-mediated immune recognition.
Pengyan XIA ; Shuo WANG ; Pu GAO ; Guangxia GAO ; Zusen FAN
Protein & Cell 2016;7(11):777-791
The host takes use of pattern recognition receptors (PRRs) to defend against pathogen invasion or cellular damage. Among microorganism-associated molecular patterns detected by host PRRs, nucleic acids derived from bacteria or viruses are tightly supervised, providing a fundamental mechanism of host defense. Pathogenic DNAs are supposed to be detected by DNA sensors that induce the activation of NFκB or TBK1-IRF3 pathway. DNA sensor cGAS is widely expressed in innate immune cells and is a key sensor of invading DNAs in several cell types. cGAS binds to DNA, followed by a conformational change that allows the synthesis of cyclic guanosine monophosphate-adenosine monophosphate (cGAMP) from adenosine triphosphate and guanosine triphosphate. cGAMP is a strong activator of STING that can activate IRF3 and subsequent type I interferon production. Here we describe recent progresses in DNA sensors especially cGAS in the innate immune responses against pathogenic DNAs.
DNA, Bacterial
;
immunology
;
metabolism
;
DNA, Viral
;
immunology
;
metabolism
;
Gene Expression Regulation
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Host-Pathogen Interactions
;
Humans
;
Immunity, Innate
;
Interferon Regulatory Factor-3
;
genetics
;
immunology
;
Interferon Type I
;
biosynthesis
;
immunology
;
Membrane Proteins
;
genetics
;
immunology
;
Models, Molecular
;
NF-kappa B
;
genetics
;
immunology
;
Nucleotides, Cyclic
;
biosynthesis
;
immunology
;
Nucleotidyltransferases
;
genetics
;
immunology
;
Protein Binding
;
Protein-Serine-Threonine Kinases
;
genetics
;
immunology
;
Signal Transduction
8.Construction and optimization of Escherichia coli for producing rhamnolipid biosurfactant.
Zhijin GONG ; Yanfeng PENG ; Yuting ZHANG ; Guotian SONG ; Wujiu CHEN ; Shiru JIA ; Qinhong WANG
Chinese Journal of Biotechnology 2015;31(7):1050-1062
Rhamnolipid biosurfactant is mainly produced by Pseudomonas aeruginosa that is the opportunistic pathogenic strain and not suitable for future industrial development. In order to develop a relatively safe microbial strain for the production of rhamnolipid biosurfactant, we constructed engineered Escherichia coli strains for rhamnolipid production by expressing different copy numbers of rhamnosyltransferase (rhlAB) gene with the constitutive synthetic promoters of different strengths in E. coli ATCC 8739. We further studied the combinatorial regulation of rhlAB gene and rhaBDAC gene cluster for dTDP-1-rhamnose biosynthesis with different synthetic promoters, and obtained the best engineered strain-E. coli TIB-RAB226. Through the optimization of culture temperature, the titer of rhamnolipd reached 124.3 mg/L, 1.17 fold higher than that under the original condition. Fed-batch fermentation further improved the production of rhamnolipid and the titer reached the highest 209.2 mg/L within 12 h. High performance liquid chromatography-mass spectrometry (LC-MS) analysis showed that there are total 5 mono-rhamnolipid congeners with different nuclear mass ratio and relative abundance. This study laid foundation for heterologous biosynthesis of rhanomilipd.
Bacterial Proteins
;
genetics
;
Batch Cell Culture Techniques
;
Decanoates
;
Escherichia coli
;
metabolism
;
Fermentation
;
Glycolipids
;
biosynthesis
;
Hexosyltransferases
;
genetics
;
Industrial Microbiology
;
methods
;
Multigene Family
;
Promoter Regions, Genetic
;
Pseudomonas aeruginosa
;
Rhamnose
;
analogs & derivatives
;
biosynthesis
;
Surface-Active Agents
;
metabolism
9.Accumulation of 9α-hydroxy-4-androstene-3,17-dione by co-expressing kshA and kshB encoding component of 3-ketosteroid-9α-hydroxylase in Mycobacterium sp. NRRL B-3805.
Jiadai YUAN ; Guiying CHEN ; Shijun CHENG ; Fanglan GE ; Wang QIONG ; Wei LI ; Jiang LI
Chinese Journal of Biotechnology 2015;31(4):523-533
9α-hydroxy-4-androstene-3,17-dione (9-OH-AD) is an important intermediate in the steroidal drugs production. 3-ketosteroid-9α-hydroxylase (KSH), a two protein system of KshA and KshB, is a key-enzyme in the microbial steroid ring B-opening pathway. KSH catalyzes the transformation of 4-androstene-3,17-dione (AD) into 9-OH-AD specifically. In the present study, the putative KshA and KshB genes were cloned from Mycobacterium smegmatis mc(2)155 and Gordonia neofelifaecis NRRL B-59395 respectively, and were inserted into the expression vector pNIT, the co-expression plasmids of kshA-kshB were obtained and electroporated into Mycobacterium sp. NRRL B-3805 cells. The recombinants were used to transform steroids, the main product was characterized as 9α-hydroxy-4-androstene-3,17-dione (9-OH-AD), showing that kshA and kshB were expressed successfully. Different from the original strain Mycobacterium sp. NRRL B-3805 that accumulates 4-androstene-3,17-dione, the recombinants accumulates 9α-hydroxy-4-androstene-3,17-dione as the main product. This results indicates that the putative genes kshA, kshB encode active KshA and KshB, respectively. The process of biotransformation was investigated and the results show that phytosterol is the most suitable substrate for biotransformation, kshA and kshB from M. smegmatis mc(2)155 seemed to exhibit high activity, because the resultant recombinant of them catalyzed the biotransformation of phytosterol to 9-OH-AD in a percent conversion of 90%, which was much higher than that of G. neofelifaecis NRRL B-59395. This study on the manipulation of the ksh genes in Mycobacterium sp. NRRL B-3805 provides a new pathway for producing steroid medicines.
Androstenedione
;
analogs & derivatives
;
biosynthesis
;
Bacterial Proteins
;
genetics
;
metabolism
;
Biotransformation
;
Ketosteroids
;
Mixed Function Oxygenases
;
genetics
;
metabolism
;
Mycobacterium
;
metabolism
;
Mycobacterium smegmatis
;
enzymology
;
Plasmids
10.Study on membrane injury mechanism of total alkaloids and berberine from Coptidis Rhizoma on Aeromonas hydrophila.
Dong-fang XUE ; Zong-yao ZOU ; Biao CHEN ; Yan-zhi WANG ; Hao WU ; Xiao-li YE ; Xue-gang LI
China Journal of Chinese Materia Medica 2015;40(9):1787-1792
To explore the antibacterial activity and mechanism of total alkaloids and berberine from Coptidis Rhizoma on Aeromonas hydrophila, and determine the effect of total alkaloids and berberine from Coptidis Rhizoma on minimum inhibitory concentrations, permeability and fluidity of cell membrane, conformation of membrane proteins and virulence factors of A. hydrophila. The results showed that both total alkaloids and berberine from Coptidis Rhizoma had antibacterial activities on A. hydrophila, with minimum inhibitory concentrations of 62.5 and 125 mg · L(-1), respectively. Total alkaloids and berberine from Coptidis Rhizoma could increase the fluidity of membrane, change the conformation of membrane porteins and increase the permeability of bacteria membrane by 24.52% and 19.66%, respectively. Besides, total alkaloids and berberine from Coptidis Rhizoma significantly decreased the hemolysis of exotoxin and the mRNA expressions of aerA and hlyA (P < 0.05, P < 0.01), the secretion of endotoxin and the mRNA expression of LpxC (P < 0.05, P < 0.01). The results suggested that the antibacterial activity of total alkaloids and berberine from Coptidis Rhizoma on A. hydrophila may be related to the bacteria membrane injury. They inhibited the bacterial growth by increasing membrane lipid fluidity and changing conformation of membrane proteins, and reduced the secretion of virulence factors of A. hydrophila to weaken the pathogenicity.
Aeromonas hydrophila
;
drug effects
;
genetics
;
metabolism
;
Alkaloids
;
pharmacology
;
Anti-Bacterial Agents
;
pharmacology
;
Bacterial Proteins
;
genetics
;
metabolism
;
Bacterial Toxins
;
biosynthesis
;
Berberine
;
pharmacology
;
Cell Membrane
;
drug effects
;
genetics
;
metabolism
;
Coptis
;
chemistry
;
Drugs, Chinese Herbal
;
pharmacology
;
Membrane Fluidity
;
drug effects
;
Rhizome
;
chemistry

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