• 제목/요약/키워드: Antifungal protein

검색결과 127건 처리시간 0.037초

Rous Sarcoma Virus에 의해 형질전환된 NRK 세포의 형태변화를 유도하는 활성물질 MT 1154의 분리와 생물학적 활성 (Purification and Biological Activities of MT 1155 Inducing Morphological Change of Rous Sarcoma Virus-Transformed Normal Rat Kidney Cell)

  • 안종석;박문수;박찬선;윤병대;민태익;안순철;오원근;이현선;윤병대
    • 한국미생물·생명공학회지
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    • 제21권1호
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    • pp.59-65
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    • 1993
  • 방선균 분리주 GMT 1153로부터 ts/NRK 세포의 형태를 변형된 세포형태에서 정상세포의 형태로 전환하는 활성물질을 분리, 정제하였다. 활성물질 MT 1155는 UV, IR, 1H-NMR, 13C-NMR, mass,원소분석 등의 기기분석을 통하여 항진균성 항암물질인 toyocamycin으로 동정되었다. MT 1155는 ts/NRK 세포의 형태전환에 대한 활성외에도 PKA 효소활성 저해와 CTLL 세포에 대한 세포독성이 있으나 K562 소포형성 억제 및 PKC 효소활성에 대한 저해효과도 없었다.

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강낭콩 잎에서 정제한 키틴분해효소의 항균활성 (Antifungal activity of a chitinase purified from bean leaves)

  • 박노동;송경숙;정인웅
    • Applied Biological Chemistry
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    • 제35권3호
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    • pp.191-195
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    • 1992
  • 강낭콩 잎에서 에틸랜에 의하여 유도되는 분자량 30KD인 염기성 키틴분해효소를 정제하고 그 항균활성을 연구하였다. 이 단백질은 chitinase 활성과 lysozyme 활성을 가졌으며, Aspergillus fumigatus, Botrytis cinerea, Fusarium oxysporum, Rhizoctonia solani의 균사 생장을 억제하였다. 그러나 함께 실험한 2종류의 미생물 chitinase, 달걀 lysozyme, 파파야 protease는 이들에 대한 항균작용을 갖지 않았다. 이상의 결과는 lysozyme 활성을 가진 식물 chitinase가 병원균의 균사생장을 억제하여 자신을 방어할 수 있음을 시사한다.

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A Phenylpropanoid Glycoside as a Calcineurin Inhibitor Isolated from Magnolia obovata Thunb.

  • Lee, Won Jeong;Moon, Jae Sun;Kim, Sung In;Bahn, Yong-Sun;Lee, Hanna;Kang, Tae Hoon;Shin, Heung Mook;Kim, Sung Uk
    • Journal of Microbiology and Biotechnology
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    • 제25권9호
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    • pp.1429-1432
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    • 2015
  • To identify plant-derived cell signaling inhibitors with antifungal properties, a twocomponent screening system using both wild-type Cryptococcus neoformans and a calcineurin mutant was employed owing to their counter-regulatory actions on the Hog1 mitogenactivated protein kinase and calcineurin pathways. Of the 2,000 plant extracts evaluated, a single bioactive compound from M. obovata Thunb. was found to act specifically on the calcineurin pathway of C. neoformans. This compound was identified as magnoloside A, and had potent antifungal activities against various Cryptococcus strains with minimum inhibitory concentration values ranging from 1.0 to 4.0 μg/ml.

Isolation and Characterization of a Bacteriophage Preying an Antifungal Bacterium

  • Rahimi-Midani, Aryan;Kim, Kyoung-Ho;Lee, Seon-Woo;Jung, Sang Bong;Choi, Tae-Jin
    • The Plant Pathology Journal
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    • 제32권6호
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    • pp.584-588
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    • 2016
  • Several Bacillus species were isolated from rice field soils, and 16S rRNA gene sequence analysis showed that Bacillus cereus was the most abundant. A strain named BC1 showed antifungal activity against Rhizoctonia solani. Bacteriophages infecting strain BC1 were isolated from the same soil sample. The isolated phage PK16 had an icosahedral head of $100{\pm}5nm$ and tail of $200{\pm}5nm$, indicating that it belonged to the family Myoviridae. Analysis of the complete linear dsDNA genome revealed a 158,127-bp genome with G + C content of 39.9% comprising 235 open reading frames as well as 19 tRNA genes (including 1 pseudogene). Blastp analysis showed that the proteins encoded by the PK16 genome had the closest hits to proteins of seven different bacteriophages. A neighbor-joining phylogenetic tree based on the major capsid protein showed a robust clustering of phage PK16 with phage JBP901 and BCP8-2 isolated from Korean fermented food.

Myricetin Disturbs the Cell Wall Integrity and Increases the Membrane Permeability of Candida albicans

  • Lee, Heung-Shick;Kim, Younhee
    • Journal of Microbiology and Biotechnology
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    • 제32권1호
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    • pp.37-45
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    • 2022
  • The fungal cell wall and membrane are the principal targets of antifungals. Herein, we report that myricetin exerts antifungal activity against Candida albicans by damaging the cell wall integrity and notably enhancing the membrane permeability. In the presence of sorbitol, an osmotic protectant, the minimum inhibitory concentration (MIC) of myricetin against C. albicans increased from 20 to 40 and 80 ㎍/ml in 24 and 72 h, respectively, demonstrating that myricetin disturbs the cell wall integrity of C. albicans. Fluorescence microscopic images showed the presence of propidium iodide-stained C. albicans cells, indicating the myricetin-induced initial damage of the cell membrane. The effects of myricetin on the membrane permeability of C. albicans cells were assessed using crystal violet-uptake and intracellular material-leakage assays. The percentage uptakes of crystal violet for myricetin-treated C. albicans cells at 1×, 2×, and 4× the MIC of myricetin were 36.5, 60.6, and 79.4%, respectively, while those for DMSO-treated C. albicans cells were 28.2, 28.9, and 29.7%, respectively. Additionally, myricetin-treated C. albicans cells showed notable DNA and protein leakage, compared with the DMSO-treated controls. Furthermore, treatment of C. albicans cells with 1× the MIC of myricetin showed a 17.2 and 28.0% reduction in the binding of the lipophilic probes diphenylhexatriene and Nile red, respectively, indicating that myricetin alters the lipid components or order in the C. albicans cell membrane, leading to increased membrane permeability. Therefore, these data will provide insights into the pharmacological worth of myricetin as a prospective antifungal for treating C. albicans infections.

A Genome-Wide Analysis of Antibiotic Producing Genes in Streptomyces globisporus SP6C4

  • Kim, Da-Ran;Kwak, Youn-Sig
    • The Plant Pathology Journal
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    • 제37권4호
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    • pp.389-395
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    • 2021
  • Soil is the major source of plant-associated microbes. Several fungal and bacterial species live within plant tissues. Actinomycetes are well known for producing a variety of antibiotics, and they contribute to improving plant health. In our previous report, Streptomyces globisporus SP6C4 colonized plant tissues and was able to move to other tissues from the initially colonized ones. This strain has excellent antifungal and antibacterial activities and provides a suppressive effect upon various plant diseases. Here, we report the genome-wide analysis of antibiotic producing genes in S. globisporus SP6C4. A total of 15 secondary metabolite biosynthetic gene clusters were predicted using antiSMASH. We used the CRISPR/Cas9 mutagenesis system, and each biosynthetic gene was predicted via protein basic local alignment search tool (BLAST) and rapid annotation using subsystems technology (RAST) server. Three gene clusters were shown to exhibit antifungal or antibacterial activity, viz. cluster 16 (lasso peptide), cluster 17 (thiopeptide-lantipeptide), and cluster 20 (lantipeptide). The results of the current study showed that SP6C4 has a variety of antimicrobial activities, and this strain is beneficial in agriculture.

Molecular Cloning and Characterization of a Flower-specific Thionin in Chinese Cabbage

  • Jung, Bae-Gyo;Choi, Yeon-Ok;Lee, Kyun-Oh;Chi, Yong-Hun;Kang, Soon-Suk;Lee, Seung-Sik;Park, Soo-Kwon;Lee, Jung-Ro;Lim, Chae-Oh;Lee, Sang-Yeol
    • BMB Reports
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    • 제34권3호
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    • pp.201-205
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    • 2001
  • Thionins are a family of low molecular weight cysteine-rich antimicrobial peptides. We isolated a cDNA encoding thionin gene from a flower bud cDNA library of Chinese cabbage (CFT). The gene contains 611 by nucleotides with 60 bp, and 150 by untranslated regions at its N- and C-terminal, respectively. The deduced amino acid sequence encoded 133 amino acids containing precursor polypeptide. The protein reveals that the precursor has a tripartite structure: a putative signal sequence at the N-terminus, followed by a mature thionin peptide, and a C-terminal acidic domain, which facilitates transport of the mature thionin through membrane. Genomic Southern blot analysis suggests that the CFT gene may be present as a single or two copy gene in the Chinese cabbage genome. Northern blot analysis shows that the gene is specifically expressed in flowers, but not in leaves, stems, or roots. When we analyzed the antifungal activity of the recombinant CFT protein, which was expressed in E. coli using the truncated cDNA region corresponding to the mature protein part, it was not active on fungal growth inhibition.

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The Cholesterol-Binding Antibiotic Nystatin Induces Expression of Macrophage Inflammatory Protein-1 in Macrophages

  • Baek, Seungil;Kim, Sun-Mi;Lee, Sae-A;Rhim, Byung-Yong;Eo, Seong-Kug;Kim, Koanhoi
    • Biomolecules & Therapeutics
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    • 제21권1호
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    • pp.42-48
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    • 2013
  • Nystatin, a polyene antifungal antibiotic, is a cholesterol sequestering agent. The antifungal agent alters composition of the plasma membrane of eukaryotic cells, whereas its effects on cells are poorly investigated. In the current study, we investigated the question of whether nystatin was able to induce expression of macrophage inflammatory protein-1 (MIP-1). THP-1 cells rarely express MIP-$1{\alpha}$ and MIP-$1{\beta}$, however, upon exposure to nystatin, significantly elevated expression of MIP-$1{\alpha}$ and MIP-$1{\beta}$ was observed in a dose-dependent fashion at the messenger and protein levels. Cellular factors activated by nystatin as well as involved in nystatin-induced expression of MIP-1 proteins were identified in order to understand the molecular mechanisms of action of the anti-fungal agent. Treatment with nystatin resulted in enhanced phosphorylation of Akt, ERK, p38 MAPK, and JNK. Abrogation or significant attenuation of nystatin-induced expression of MIP-$1{\alpha}$ and MIP-$1{\beta}$ was observed by treatment with Akt inhibitor IV, LY294002, and SP6001250. Inhibition of ERK or p38MAPK using U0126 and SB202190 did not lead to attenuation of MIP-1 expression. In addition, inhibitors of protein kinase C, such as GF109203X and Ro-318220, also attenuated expression of MIP-1. These results indicate that nystatin is able to activate multiple cellular kinases and, among them, Akt and JNK play primary roles in nystatin-induced expression of MIP-1 proteins.

고추(Capsicum annuum)의 항균성 단백질(PR-5) 유전자의 클로닝과 발현 분석 (Cloning and Expression of Antifungal Protein (PR5) Genes from Hot Pepper (Capsicum annuum L.))

  • 박해진;이정훈;윤용휘;김학윤;신동현;이인중;김달웅;김길웅
    • 생명과학회지
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    • 제12권3호
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    • pp.264-273
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    • 2002
  • 식물은 병원균이나 여러 가지 환경스트레스에 내하여 사기 방어기작을 가지며, 특히 PR 단백질은 병원균의 침입시에 동물의 면역반응과 유사한 생체방어반응을 나타내는 중요한 역할을 하는 것으로 알려져 있다. 본 연구에서는 고추에서 항균 특성을 나타내는 PR5 유전자를 클로닝하고 이들의 특성을 구명하였다. 고추에서 서로 다른 3종의 PR5 유전자, CAPR5-1, CAPR5-2, CAPR5-3를 클로닝하였다. 이들 유전자의 특성을 조사하고 아미노산 수준에서 유사성을 비교하여 본 결과, 서로간에는 90% 이삳의 상동성을 나타내었고 이들의 2차구조를 비교한 결과 중요한 domain은 높은 상동성을 나타내어 PR5 유전자들이 항균 특성을 나타내는데 매우 중요한 motif로 작용할 것으로 사료된다. CAPR5-1, CAPR-2, CAPR5-3 유전자들의 항균성 정도를 조사하기 위하여 이들 유전자를 대장균에서 발현시켜 단백질을 분리하여 고추 역병균인 phytophthora capsici에 처리한 결과, 균사의 성장이 억제되어 CAPR5-1, CAPR5-2, CAPR5-3 단백질들이 항균성을 지니고 있는 것으로 나타났다.

Identification of an Antifungal Chitinase from a Potential Biocontrol Agent, Bacillus cereus 28-9

  • Huang, Chien-Jui;Wang, Tang-Kai;Chung, Shu-Chun;Chen, Chao-Ying
    • BMB Reports
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    • 제38권1호
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    • pp.82-88
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    • 2005
  • Bacillus cereus 28-9 is a chitinolytic bacterium isolated from lily plant in Taiwan. This bacterium exhibited biocontrol potential on Botrytis leaf blight of lily as demonstrated by a detached leaf assay and dual culture assay. At least two chitinases (ChiCW and ChiCH) were excreted by B. cereus 28-9. The ChiCW-encoding gene was cloned and moderately expressed in Escherichia coli DH5$\alpha$. Near homogenous ChiCW was obtained from the periplasmic fraction of E. coli cells harboring chiCW by a purification procedure. An in vitro assay showed that the purified ChiCW had inhibitory activity on conidial germination of Botrytis elliptica, a major fungal pathogen of lily leaf blight.