• 제목/요약/키워드: Enzymatic assay

검색결과 217건 처리시간 0.031초

A method of isolation and characterization of canine endometrial-derived mesenchymal stem cells

  • Mi Kyung Park;Kun Ho Song
    • 한국동물위생학회지
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    • 제46권2호
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    • pp.157-160
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    • 2023
  • Endometrial tissue is a known source of mesenchymal stem cells (MSCs). We isolated canine endometrial stem cells from canine endometrial tissues using an enzymatic method and confirmed the immunophenotype of mesenchymal stem cells and multilineage differentiation. Canine endometrial tissues were obtained from canine ovariohysterectomy surgery and isolated using 0.2% collagenase type I. We measured the immunophenotype of stem cells using flow cytometry. To confirm the differentiation ability, a trilineage differentiation assay was conducted. In this study, canine endometrialderived MSCs (cEM-MSCs) were isolated by enzyme treatment and showed a spindle-shaped morphology under a microscope. Moreover, cEM-MSCs showed a trilineage differentiation ability. In this study, the canine endometrium was a good source of MSCs.

미생물 Chitin Deacetylase의 특성과 응용 (Enzymatic Characteristics and Applications of Microbial Chitin Deacetylases)

  • 국주희;정우진;김길용;박노동
    • 한국미생물·생명공학회지
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    • 제33권1호
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    • pp.9-15
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    • 2005
  • Chitin deacetylase(CDA; EC 3.5.1.41)는 키틴의 N-acetamide bonds를 가수분해하여 이를 키토산으로 전환시키는 효소다. 한편, 키토산은 의약, 화장품, 식품, 농업 등의 분야에서 다양하게 응용되는 고분자 다당류이다. 본 논문에서는 미생물 유래 CDA의 분포, 분석법, 효소적 특성, 기질 특이성, 작용기작, 유전자의 구조, 생물학적 역할, 응용 등의 최신 지견을 기술하고자 하였다. 미생물 CDA가 세포벽 형성과 식물-미생물 상호작용에 관여한다는 연구결과들을 제시하였으며, CDA의 유전자 구조를 다양한 acetylated poly/oligo-saccharides를 탈아세틸화하는 family 4 carbohydrate esterase의 유전자 구조와 비교하였다. 키틴의 탈아세틸화로 키토산을 제조하는 과정에 CDA의 활용 가능성과, CDA를 포함한 고활성의 키틴 대사효소들을 분비하는 곤충 병원균의 활용 가능성도 살펴보았다.

Purification and Identification of Antioxidant Peptides from Enzymatic Hydrolysate of Spirulina platensis

  • Yu, Jie;Hu, Yuanliang;Xue, Mingxiong;Dun, Yaohao;Li, Shenao;Peng, Nan;Liang, Yunxiang;Zhao, Shumao
    • Journal of Microbiology and Biotechnology
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    • 제26권7호
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    • pp.1216-1223
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    • 2016
  • The aim of this study was to isolate antioxidant peptides from an enzymatic hydrolysate of Spirulina platensis. A novel antioxidant peptide was obtained by ultrafiltration, gel filtration chromatography, and reverse-phase high-performance liquid chromatography, with the 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical scavenging assay used to measure the antioxidant activity, and the sequence was determined to be Pro-Asn-Asn (343.15 Da) by electrospray ionization tandem mass spectrometry. This peptide was synthesized to confirm its antioxidant properties, and it exhibited 81.44 ± 0.43% DPPH scavenging activity at 100 μg/ml, which was similar to that of glutathione (82.63 ± 0.56%). Furthermore, the superoxide anion and hydroxyl free-radical scavenging activities and the SOD activity of the peptide were 47.84 ± 0.49%, 54.01 ± 0.82%, and 12.55 ± 0.75%, respectively, at 10 mg/ml. These results indicate that S. platensis is a good source of antioxidant peptides, and that its hydrolysate may have important applications in the pharmaceutical and food industries.

키토산 올리고당의 제조용 소재로서 Bacillus sp. P2l 기원의 키토산분해효소 (Endochitosanase Produced by Bacillus sp. P2l as a Potential Source for the Production of Chitooligosaccharides.)

  • 박노동;조유영;이현철;조종수;조도현
    • 한국미생물·생명공학회지
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    • 제26권4호
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    • pp.345-351
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    • 1998
  • 다양한 중합도의 키토산올리고당의 생산에 적합한 효소원을 개발하기 위해서 23종의 시판효소와 토양에서 분리한 8종의 Bacillus sp.와 1종의 Aspergillus sp.가 생산하는 조효소에서 키토산 분해효소의 활성을 검색하였다. 각 효소의 키토산에 대한 가수분해활성은 탁도의 변화, 반응 후에 생성되는 침전물의 양, 총환원당 생성능력, 점도의 감소 속도 등을 기준하여 평가하였다. 시험한 효소원 가운데서 키토산에 대한 강한 분해활성을 가지는 효소는 P2l이 생산하는 것이었다. 이 균주가 생성하는 chitosanase는, HPLC와 TLC에 의한 분해산물의 분석과, 점도 변화의 측정과 활성염색 등에 근거하여, 주로 내부 가수분해활성을 갖는 것으로 판단되었다. 이 효소는 키토산 올리고당의 생산에 적합한 효소 소재로 가능성이 큰 것으로 평가되었다.

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In Vitro Determination of Dengue Virus Type 2 NS2B-NS3 Protease Activity with Fluorescent Peptide Substrates

  • Khumthong, Rabuesak;Angsuthanasombat, Chanan;Panyim, Sakol;Katzenmeier, Gerd
    • BMB Reports
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    • 제35권2호
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    • pp.206-212
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    • 2002
  • The NS2B-NS3(pro) polyprotein segment from the dengue virus serotype 2 strain 16681 was purified from overexpressing E. coli by metal chelate affinity chromatography and gel filtration. Enzymatic activity of the refolded NS2B-NS3(pro) protease complex was determined in vitro with dansyl-labeled peptide substrates, based upon native dengue virus type 2 cleavage sites. The 12mer substrate peptides and the cleavage products could be separated by reversed-phase HPLC, and were identified by UV and fluorescence detection. All of the peptide substrates (representing the DEN polyprotein junction sequences at the NS2A/NS2B, NS2B/NS3, NS3/NS4A and NS4B/NS5 sites) were cleaved by the recombinant protease NS2B-NS3(pro). No cleavage was observed with an enzymatically inactive S135A mutant of the NS3 protein, or with a modified substrate peptide of the NS3/NS4A polyprotein site that contained a K2093A substitution. Enzymatic activity was dependent on the salt concentration. A 50% decrease of activity was observed in the presence of 0.1M sodium chloride. Our results show that the NS3 protease activity of the refolded NS2B-NS3(pro) protein can be assayed in vitro with high specificity by using cleavage-junction derived peptide substrates.

Enzymatic bioconversion of ginseng powder increases the content of minor ginsenosides and potentiates immunostimulatory activity

  • Park, Jisang;Kim, Ju;Ko, Eun-Sil;Jeong, Jong Hoon;Park, Cheol-Oh;Seo, Jeong Hun;Jang, Yong-Suk
    • Journal of Ginseng Research
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    • 제46권2호
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    • pp.304-314
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    • 2022
  • Background: Ginsenosides are biologically active components of ginseng and have various functions. In this study, we investigated the immunomodulatory activity of a ginseng product generated from ginseng powder (GP) via enzymatic bioconversion. This product, General Bio compound K-10 mg solution (GBCK10S), exhibited increased levels of minor ginsenosides, including ginsenoside-F1, compound K, and compound Y. Methods: The immunomodulatory properties of GBCK10S were confirmed using mice and a human natural killer (NK) cell line. We monitored the expression of molecules involved in immune responses via enzyme-linked immunosorbent assay, flow cytometry, NK cell-targeted cell destruction, quantitative reverse-transcription real-time polymerase chain reaction, and Western blot analyses. Results: Oral administration of GBCK10S significantly increased serum immunoglobulin M levels and primed splenocytes to express pro-inflammatory cytokines such as interleukin-6, tumor necrosis factor-α, and interferon-γ. Oral administration of GBCK10S also activated NK cells in mice. Furthermore, GBCK10S treatment stimulated a human NK cell line in vitro, thereby increasing granzyme B gene expression and activating STAT5. Conclusion: GBCK10S may have potent immunostimulatory properties and can activate immune responses mediated by B cells, Th1-type T cells, and NK cells.

Comprehensive Evaluation System for Post-Metabolic Activity of Potential Thyroid-Disrupting Chemicals

  • Yurim Jang;Ji Hyun Moon;Byung Kwan Jeon;Ho Jin Park;Hong Jin Lee;Do Yup Lee
    • Journal of Microbiology and Biotechnology
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    • 제33권10호
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    • pp.1351-1360
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    • 2023
  • Endocrine-disrupting chemicals (EDCs) are compounds that disturb hormonal homeostasis by binding to receptors. EDCs are metabolized through hepatic enzymes, causing altered transcriptional activities of hormone receptors, and thus necessitating the exploration of the potential endocrine-disrupting activities of EDC-derived metabolites. Accordingly, we have developed an integrative workflow for evaluating the post-metabolic activity of potential hazardous compounds. The system facilitates the identification of metabolites that exert hormonal disruption through the integrative application of an MS/MS similarity network and predictive biotransformation based on known hepatic enzymatic reactions. As proof-of-concept, the transcriptional activities of 13 chemicals were evaluated by applying the in vitro metabolic module (S9 fraction). Identified among the tested chemicals were three thyroid hormone receptor (THR) agonistic compounds that showed increased transcriptional activities after phase I+II reactions (T3, 309.1 ± 17.3%; DITPA, 30.7 ± 1.8%; GC-1, 160.6 ± 8.6% to the corresponding parents). The metabolic profiles of these three compounds showed common biotransformation patterns, particularly in the phase II reactions (glucuronide conjugation, sulfation, GSH conjugation, and amino acid conjugation). Data-dependent exploration based on molecular network analysis of T3 profiles revealed that lipids and lipid-like molecules were the most enriched biotransformants. The subsequent subnetwork analysis proposed 14 additional features, including T4 in addition to 9 metabolized compounds that were annotated by prediction system based on possible hepatic enzymatic reaction. The other 10 THR agonistic negative compounds showed unique biotransformation patterns according to structural commonality, which corresponded to previous in vivo studies. Our evaluation system demonstrated highly predictive and accurate performance in determining the potential thyroid-disrupting activity of EDC-derived metabolites and for proposing novel biotransformants.

식물 근권에서 분리한 미생물의 식물병원성 진균에 대한 길항효과 검정 (Evaluation of Rhizobacterial Isolates for Their Antagonistic Effects against Various Phytopathogenic Fungi)

  • 김윤석;김상우;거비르 람살;이윤수
    • 한국균학회지
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    • 제44권1호
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    • pp.36-47
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    • 2016
  • 본 연구는 식물 근권에서 분리한 유용미생물 PA1, PA2, PA4, PA5, PA12 의 식물 생장 촉진능력과 식물 병원성 진균인 Colletotrichum acutatum, C. coccodes, C. gloeosporioides, C. dematium, Botrytis cinerea, Rhizoctonia solani, Sclerotinia minor 그리고 Fusarium sp.에 대한 생장억제능력을 평가하는데 그 목적이 있다. In vitro 실험에서 유용미생물의 식물 병원성 진균의 생장억제 능력을 확인하기 위해 세균배지인 TSA 배지와 곰팡이 배지인 PDA배지, 그리고 TSA와 PDA배지를 각각 50%씩 혼합한 배지(v/v, 1:1)에서 대치배양을 실시하였다. 그 결과 PDA배지에서는 PA2가 C. coccodes에 대해 65.5%로 가장 높은 억제능력을 보였으며, TSA배지에서는 PA2가 S. minor에 대해 96.5%로 가장 높은 억제력을 보였다. 또한 PDA와 TSA를 혼합한 배지에서는 PA2가 C. acutatum에 대해 58.5%로 가장 높은 억제능력을 보였다. 분리한 5균주 모두에서 식물병원성 진균에 대하여 생물적 방제 효과가 있음을 확인하였다. 또한 식물생장 촉진능력을 유발하는 원인물질을 탐색하기 위해 siderophore, protease, chitinase, hydrogen cyanide (HCN) 생성 유무를 확인하였고, phosphate solubilizing 실험을 실시하였다. 본 연구에서 사용된 유용미생물 5균주를 16s rDNA sequencing 결과 PA1, PA2는 Bacillus subtilis, PA4, PA5, PA12 각각 Bacillus altitudinis, Paenibacillus polymyxa, Bacillus amyloliquefaciens로 동정되었다.

효소가수분해에 의한 유청단백질의 항원성 저하 (Reduction of the Antigenicity of Whey Protein by Enzymatic Hydrolysis)

  • 하월규;전석락;김정완;이수원;이재영;손동화
    • 한국식품과학회지
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    • 제26권1호
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    • pp.74-80
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    • 1994
  • 효소에 의한 단백질분해가 유청단백질의 항원성의 저하에 미치는 영향을 조사하기 위한 기본연구로서, 유청단백질의 가수분해특성을 조사하고 competitive inhibition enzyme-linked immunosorbent assay(cELISA)에 의한 항원성의 변화를 검토하였다. 유청단백질의 가수분해는 chymotrypsin, trypsin, pancreatin, 그리고 Aspergillus oryzae유래의 protease를 각기 4시간 동안 행하였다. TNBS(trinitrobenzensulfonic acid)법에 의하여 측정한 유청단백질의 가수분해도(DH)는 chymotrypsin이나 trypsin을 처리한 경우$(5.05{\sim}11.47)$보다 Aspergillus oryzae유래의 protease 및 pancreatin을 처리한 경우$(15.67{\sim}20.20)$가 훨씬 높게 나타났으며, 각 효소의 처리전에 열처리($75^{\circ}C$, 20분)나 pepsin의 처리를 한 경우에 대체로 약간 높게 나타났다. High performance size exclusion chromatography(HPSEC)에 의하여 분자량분포를 조사한 결과, 가수분해물에 따라 10kDa 이상의 polypeptide가 $12{\sim}36%$ 정도 존재하였고, 평균분자량은 $4,252{\sim}9,132$ dalton, 평균길이는 아미노산 $38{\sim}83$개로 나타났다. 또한 쓴맛은 형성되지 않았다. SDS-PAGE의 결과 처리구에 따라 분자량 14.2kDa 이상의 polypeptide가 일부 존재하였으나 native 유청단백질은 대부분 가수분해에 의하여 제거되었음을 확인하였다. 토끼 항WPI항혈청에 의한 cELISA로 검토한 유청단백질 가수분해물의 monovalent 항원성은 효소처리에 의하여 약 $10^{-1.7}{\sim}10^{-4.9}$배 또는 그 이하로 저하되었으며 대체로 가수분해가 많이 일어난 분해물은 그 항원성이 낮아지는 것으로 나타났다. 또한 각 처리구내에서는 열 및 pepsin의 전처리후 다음 효소 분해한 유청단백질 가수분해물(CDP, TDP, PDP, ODP)의 경우 그 항원성이 가장 낮았다. 그중에서도 pancreatin 가수분해물(PDP)의 경우 항원성이 거의 상실된 것으로 나타났다.

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분리 대장균 O139의 Shigatoxin2e A 유전자의 효소 활성부에 대한 결손변이 유발 및 변이 단백질의 발현 (Induction of Deletion Mutation for the Enzymatic Domain in the Shigatoxin2e A Subunit Gene of Esherichila coli O139 Isolates and Expression of Mutated Protein)

  • 조은정;김도경;김상현;김영일;이철현;이우원;손원근;신종욱;김용환
    • 한국임상수의학회지
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    • 제22권4호
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    • pp.386-391
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    • 2005
  • This study was done to produce a mutated protein inactivated cytotoxicity of Shigatoxin 2e (Stx2e) of E.coli O139 isolates by deletional mutagenesis of Stx2e A subunit gene encoding active-site cleft of enzymatic domain in ST2e holotoxin. Cytotoxicity of the toxoid expressed from the mutant Stx2e gene was compared with wild type Stx2e for development of vaccine candidate. A recombinant plasmid pED18 containing Stx2e gene ot E.coli O139 isolates was used to generate mutation plasmid. Deletion mutagenesis was conducted for Stx2e A subunit gene encoding enzymatically active domain by polymerase chain reaction (PCR) using ot designed primer to induce deletional mutation. DNA sequence analysis was confirmed that the pentamer (Typ 202- Ser 206) that lies within the proposed active-site cleft in the second region was completely deleted. A DNA fragment of 1.1 kb that encode the new mutant Stx2eA gene was inserted into plasmid pRSET vector digested with EcoRV-Hind III and named pEDSET The PEDSET was transformed in E. coli for expression of mutant protein and the protein was confirmed by SDS-PACE and Western-blotting. The protein expressed by the mutant was tested to confirm the reduction of cytotoxic activities on Vero cell using microcytotoxicity assay compared with wild type Stx2e, the cytotoxicity of deletional mutant protein was at least reduced by 3,000-fold on Vero cell.