• Title/Summary/Keyword: metabolites analysis

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Functions of Virginiae Butanolide C(VB-C) and Receptor in Virginiamycin Production (Virginiamycin 생산유도에 관여하는 Virginiae Butanolide C(VB-C) 및 Receptor의 기능)

  • 김현수;현지숙
    • Korean Journal of Microbiology
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    • v.33 no.2
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    • pp.111-117
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    • 1997
  • Streptomyces virginiae produces a set of autoregulators termed virginiae butanolide A-E(VB-A-E) which trigger virginiamycin production, and possesses a high-affinity virginiae butanolide receptor. To elucidate the functions of VB-C and VB-C receptor, we isolated two mutants from S. virginiae by N-methyl-N'-nitro-N-nitrosoguanidine and hydroxylamine. The characteristics of the mutants showed that the producing time of antibiotics was very delayed due to a slower production of VB-C receptor than that of VB. In S. ostreogriseus(VB', receptor -) and S. graminofaciens(VBU, receptor+), which produce the virginiamycin, the addition of synthetic VB-C repressed the production of antibiotics in S. ostreogriseus but induced tbe production in S. graminofaciens. HPLC analysis of S. graminofaciens suggested that the VB-C might have an ability to induce the production of virginiamycin and other antibiotics. These results imply that the VB-C has an ability to trigger the production of other secondary metabolites as well as virginiamycin under VB-C receptor existence.

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Increase of Cellular Alkaline Phosphatase Activity by Levamisole in Kidney Cells (신장 세포에서 Levamisole의 세포내 Alkaline Phosphatase 활성 증가)

  • Hwang, Joon-Il;Kim, Jong-Hwan;Kim, Joo-Il;Lee, Kyung-Tae;Kwon, Chang-Hoo
    • Journal of Pharmaceutical Investigation
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    • v.26 no.4
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    • pp.309-314
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    • 1996
  • The purpose of this study is to explain the relationship between the pharmacological mechanism of levamisole and the cellular activity of cellular alkaline phosphatase (ALPase) in kidney cells. The results of our investigation were as follows. 1. Cellular ALPase activity in Macacus rhesus monkey kidney cells (MA 104 cells) and primary cultured rabbit kidney proximal tubular cells treated with levamisole was increased about two or three times than control. However, 50% of ALPase activity in cultured medium was inhibited by levamisole itself. 2. The proliferation of MA 104 and cultured rabbit kidney proximal tubular cells was linearly decreased in paralleled with increase of levamisole concentration $(50\;and\;500\;{mu}M)$ with MTT test. 3. In the heat stability tests, the inhibition of ALPase activity with and without levamisole at $56^{\circ}C$ in MA 104 cells showed different $IC_{50}$ values. 4. HPLC analysis of levamisole metabolites produced by cultured MA 104 cells suggested that the formation of a metabolite, that may be associated with its increase of cellular ALPase activity. Based on these results, we assumed that the increase of cellular ALPase activity by levamisole was evoked by modification of the ALPase catalytic sites.

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Growth Inhibition of Clostridium difficile by Fermented Broccoli with Leuconostoc mesenteroides (Leuconostoc mesenteroides를 이용한 브로콜리 발효물에 의한 Clostridium difficile의 생육 제어)

  • Lee, Young-Duck;Moon, Gi-Seong
    • Journal of Food Hygiene and Safety
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    • v.32 no.6
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    • pp.531-535
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    • 2017
  • In this study, Leuconostoc mesenteroides CJNU0041 was isolated from Korean traditional food kimchi and antimicrobial activity of fermented broccoli with the isolate was tested against pathogenic Clostridium difficile. L. mesenteroides CJNU0041 showed higher glucosidase activity than other isolates. As the results of physiological properties such as pH and viable cell count during broccoli fermentation with L. mesenteroides CJNU0041, we confirmed that 48 hours was optimal fermentation time. As the results of metabolite analysis by HPLC, metabolites were changed during the fermentation. Especially, the growth of C. difficile was inhibited by the fermented broccoli. Therefore, L. mesenteroides CJNU0041 might be a candidate for improving the functionality of natural materials by lactic acid fermentation.

DC23, a Triazolothione Resorcinol Analogue, Is Extensively Metabolized to Glucuronide Conjugates in Human Liver Microsomes

  • Shon, Jong Cheol;Joo, Jeongmin;Lee, Taeho;Kim, Nam Doo;Liu, Kwang-Hyeon
    • Mass Spectrometry Letters
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    • v.9 no.1
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    • pp.24-29
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    • 2018
  • DC23, a triazolothione resorcinol analogue, is known to inhibit heat shock protein 90 and pyruvate dehydrogenase kinase which are up-regulated in cancer and diabetes, respectively. This study was performed to elucidate the metabolism of DC23 in human liver microsomes (HLMs). HLMs incubated with DC23 in the presence of uridine 5'-diphosphoglucuronic acid (UDPGA) and/or ${\beta}$-nicotinamide adenine dinucleotide phosphate (NADPH) resulted in the formation of four metabolites, M1-M4. M1 was identified as DC23-N-Oxide, on the basis of LC-MS/MS analysis. DC23 was further metabolized to its glucuronide conjugates (M2, M3, and M4). In vitro metabolic stability studies conducted with DC23 in HLMs revealed significant glucuronide conjugation with a $t_{1/2}$ value of 1.3 min. The inhibitory potency of DC23 on five human cytochrome P450s was also investigated in HLMs. In these experiments, DC23 inhibited CYP2C9-mediated tolbutamide hydroxylase activity with an $IC_{50}$ value of $8.7{\mu}M$, which could have implications for drug interactions.

Antioxidant and Antimicrobial Activity of Rosa multiflora Thunberg Fruits Extracts

  • Cho, Young-Je
    • Current Research on Agriculture and Life Sciences
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    • v.31 no.3
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    • pp.170-176
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    • 2013
  • In this study, we selected some material to have potential bioactivity from natural plants, confirmed as basic data for industrializing and tried to develope the food materials using them. DPPH, ABTS, antioxidant protection factor, TBARs and antimicrobial activity of extracts from Rosa multiflora Thunberg fruits were determined. The total phenolics extracted from Rosa multiflora were 12.08, 11.82, 11.1 and 12.6 mg/g when using water, 70% ethanol, 70% methanol and 70% acetone as the solvent, respectively. The optimum conditions for extracting the phenolic compounds were 70% ethanol over for 12 hrs(11.82 mg/g). The electron donating ability and inhibition rate on ABTS of the 70% ethanol extracts were 97% and 92.2%, respectively while the antioxidant protection factor(PF) of the water extracts and 70% ethanol extracts were 1.79 and 1.34 PF, respectively. The TBAR (thiobarbituric acid reactive substance) value were $1.3{\mu}M$ for the control and $0.15{\mu}M$ for the 70% ethanol extracts. The inhibitory activity against ${\alpha}$-amylase was 26% for the 70% ethanol extracts. The 70% ethanol extracts from Rosa multiflora Thunberg fruits exhibited antimicrobial activity against H. pylori, S. epidermidis, S. aureusand and E. coli with clear zone diameters of 14, 25, 14 and 13 mm, respectively when using $200{\mu}g/mL$ of the phenolic compounds. An HPLC analysis identified 6 major phenolic metabolites in the Rosa multiflora Thunberg fruits extracts: rosmarinic acid, caffeic acid, chlorogenic acid, courmaric acid, protocatechuic acid and quercetin. In particular, the content of rosmarinic acid was the highest in the 70% ethanol extracts. Therefore these results indicate that 70% ethanol extracts from Rosa multiflora Thunberg fruits can be useful as a natural antioxidant and in functional foods.

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Effects of cooling systems on physiological responses and intestinal microflora in early gestating sows exposed to high-temperature stress

  • Jeong, Yongdae;Choi, Yohan;Kim, Doowan;Min, Yejin;Cho, Eunsuk;Kim, Joeun
    • Journal of Animal Science and Technology
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    • v.63 no.4
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    • pp.904-918
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    • 2021
  • This study was conducted to investigate the effect of cooling systems on reproductive performance, body temperature, blood metabolites, and the intestinal microbiome in early gestating sows exposed to high ambient temperature. In total, 39 pregnant sows (Landrace × Yorkshire; 2 parities) were randomly assigned to and maintained in the following three treatment groups (13 sows per group) over days 0 to 35 of pregnancy: (i) air cooling (AC; 26.87 ± 1.23℃), (ii) water-drip cooling (WC; 28.81 ± 0.91℃), and (iii) a lack of cooling with heat stress (HS; 30.72 ± 0.70℃). Backfat thickness was measured before and after HS. Feces were collected on day 0 and 35 d of the trial for microbiome analysis, whereas blood was taken at day 35 of pregnancy and analyzed. Reproductive performance and physiological responses were identified at day 35. Respiration rate along with rectal and skin temperatures were lower (p < 0.05) in the AC group than in the HS and WC groups. Serum blood urea nitrogen values were increased (p < 0.05) in the WC group compared with those measured in the AC and HS groups. Triiodothyronine was found at greater levels (p < 0.05) in the AC than in the HS group. Reproductive performance was not affected by the cooling systems. At the phylum level, fecal pathogenic Spirochaete and Euryarchaeota were found in higher numbers (p < 0.05) in all groups after HS. Similarly, at the genus level, the amount of Treponema was greater (p < 0.05) in all groups after HS. In conclusion, our results suggest that AC or WC can ameliorate or mitigate the adverse effects of HS on the physiological parameters of pregnant sows reared under high temperatures.

Complete genome sequencing of Pseudomonas fluorescens NBC275, a biocontrol agent against fungal pathogens of plants and insects (식물 및 곤충의 곰팡이 병원균에 항균력을 가진 Pseudomonas fluorescens NBC275 균주의 유전체 염기서열)

  • Dutta, Swarnalee;Yu, Sang-Mi;Nagendran, Rajalingam;Jeong, Sang Chul;Lee, Yong Hoon
    • Korean Journal of Microbiology
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    • v.55 no.2
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    • pp.157-159
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    • 2019
  • Pseudomonas fluorescens NBC275 (Pf275) isolated from soil sample collected at riverside of Nakdonggang showed antagonistic activity against fungal pathogens of plants and insects. Here we present complete genome sequence of Pf275. The genome comprises of 6,610,362 bp with GC content of 60.9%, which includes 5,869 predicted protein-coding genes, 16 rRNAs, and 65 tRNAs. Genome analysis revealed gene clusters encoding antimicrobial secondary metabolites such as pyoverdine, 2, 4-diacetylphloroglucinol, and phenazine, which are known to play essential roles in biocontrol of diseases.

Complete genome sequencing of Pseudomonas parafulva PpaJBCS1880, a biocontrol and plant growth promoting agent (식물 병 방제 및 생육촉진 효과를 나타내는 Pseudomonas parafulva PpaJBCS1880균주의 유전체 염기서열)

  • Dutta, Swarnalee;Wabyona, Alex;Kakembo, David;Lee, Yong Hoon
    • Korean Journal of Microbiology
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    • v.55 no.3
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    • pp.286-288
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    • 2019
  • Pseudomonas parafulva PpaJBCS1880 (PpaJBCS1880) isolated from rice seeds showed strong antagonistic activity against bacterial plant pathogens by producing lipopeptide. Furthermore, the strain controlled the incidence of bacterial pustule in soybean plants and promoted the growth of rice plants. Here we present complete genome sequence of PpaJBCS1880. The genome comprises of 5,208,480 bp with GC content of 63.4%, which includes 4,487 predicted protein-coding genes, 19 rRNAs, and 74 tRNAs. Genome analysis revealed genes encoding antimicrobial secondary metabolites such as lipopeptide, pyoverdine, phenazine, and hydrogen cyanide, which are known to play essential roles in biocontrol of plant diseases.

High Plasticity of the Gut Microbiome and Muscle Metabolome of Chinese Mitten Crab (Eriocheir sinensis) in Diverse Environments

  • Chen, Xiaowen;Chen, Haihong;Liu, Qinghua;Ni, Kangda;Ding, Rui;Wang, Jun;Wang, Chenghui
    • Journal of Microbiology and Biotechnology
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    • v.31 no.2
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    • pp.240-249
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    • 2021
  • Phenotypic plasticity is a rapid response mechanism that enables organisms to acclimate and survive in changing environments. The Chinese mitten crab (Eriocheir sinensis) survives and thrives in different and even introduced habitats, thereby indicating its high phenotypic plasticity. However, the underpinnings of the high plasticity of E. sinensis have not been comprehensively investigated. In this study, we conducted an integrated gut microbiome and muscle metabolome analysis on E. sinensis collected from three different environments, namely, an artificial pond, Yangcheng Lake, and Yangtze River, to uncover the mechanism of its high phenotypic plasticity. Our study presents three divergent gut microbiotas and muscle metabolic profiles that corresponded to the three environments. The composition and diversity of the core gut microbiota (Proteobacteria, Bacteroidetes, Tenericutes, and Firmicutes) varied among the different environments while the metabolites associated with amino acids, fatty acids, and terpene compounds displayed significantly different concentration levels. The results revealed that the gut microbiome community and muscle metabolome were significantly affected by the habitat environments. Our findings indicate the high phenotypic plasticity in terms of gut microbiome and muscle metabolome of E. sinensis when it faces environmental changes, which would also facilitate its acclimation and adaptation to diverse and even introduced environments.

Selection of Antagonistic Soil Actinomycetes Against Both Colletotrichum orbiculare and Botrytis cinerea in Cucumber Plants (오이 탄저병원균과 잿빛곰팡이병원균에 억제 효과가 있는 방선균 선발)

  • Kwak, Hwa-Sook;Kim, Jiwon;Park, Jin Woo;Sang, Mee Kyung
    • Korean Journal of Organic Agriculture
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    • v.29 no.4
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    • pp.575-588
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    • 2021
  • The purpose of this study is to select actinomycetes with antifungal activity against Botrytis cinerea and Colletotrichum orbiculare, which are airborne pathogens in cucumber plants. In 2020, 560 species of actinomycetes were isolated from rhizome soils of various vegetables in Korea; 7 strains showing simultaneous antifungal activity against two pathogens were selected. Finally, strain S20-465 was selected through dual culture and plant assay. This strain was identified as Streptomyces sp. based on 16S rRNA analysis. The culture filtrate of strain S20-465 inhibited mycelial growth of both pathogens by more than 60%. In addition, when cucumber plants were treated with 20-fold and 40-fold diluted culture filtrates of S20-465, lesions caused by B. cinerea and C. orbiculare on cucumber leaves were significantly reduced compared to the control. This results suggest that strain S20-465 produces specific secondary metabolites with antifungal activity against both pathogens.