• 제목/요약/키워드: white-rot fungus

검색결과 223건 처리시간 0.021초

장수진흙버섯 자실체 추출물의 다양한 생리활성 효과 (Various physiological effects from fruiting body extracts of Phellinus baumii)

  • 윤기남;이태수
    • 한국버섯학회지
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    • 제18권3호
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    • pp.260-267
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    • 2020
  • 본 연구에서는 장수진흙버섯 자실체로부터 메탄올과 열수를 이용해 추출한 물질의 항당뇨, 항콜린에스테라아제, 항염증 효과를 탐색하였다. 항당뇨 실험에서 α-amylase 효소에 대한 메탄올과 열수 추출물의 저해 효과는 1.0~2.0 mg/ml의 농도에서 각각 50.67~61.33%와 52.67~65.00%를 보여 양성대조군인 acarbose의 83.67~96.33%에 비해 크게 낮았으나 α-glucosidase에 대한 메탄올과 열수 추출물의 1.0~2.0 mg/ml의 농도에서의 저해 효과는 각각 74.33~89.67%와 75.67~91.00%를 보여 53.67%와 84.67%를 보인 양성대조군 acarbose에 비해 유의하게 높아 탄수화물 분해효소인 α-glucosidase에 대한 저해 효과가 특이적으로 높았다. 메탄올과 열수 추출물의 아세틸콜린 에스테라아제에 대한 저해 효과는 1.0 mg/ml의 농도에서 각각 96.05%와 94.58%를 보여 양성대조군인 galanthamine (97.80%)과 유사하였으나 butyrylcholinesterase에 대한 저해효과는 1.0 mg/ml의 농도에서 각각 91.05%와 82.27%를 보여 galanthamine의 저해 효과 81.12%에 비해 유의하게 높았다. 염증 저해 효과 실험에서 RAW 264.7 대식세포가 배양되고 있는 배지에 메탄올과 열수 추출물을 각각 전처리 후 염증 매개 물질인 LPS를 1 ㎍/ml 처리하여 24시간 배양 후 NO 생성의 저해 효과를 조사한 결과 각각의 추출물 농도가 증가함에 따라 생성된 NO의 양도 점차 유의하게 감소하는 경향을 나타내었다. Carrageenan의 주사에 의해 흰쥐의 뒷발에 유도된 부종 저해실험에서는 투여한 메탄올 추출물의 농도가 증가함에 따라 뒷발에 유발된 부종의 용적도 농도 의존적으로 점차 감소하는 추세를 나타냈다. 따라서 장수진흙버섯의 자실체에 함유된 물질은 항당뇨, 항콜린에스테라아제 및 항염증 효과를 지니고 있어서 천연 건강식품으로의 개발 가능성이 높은 것으로 사료 된다.

Trametes versicolor에 의한 Bisphenol A 생분해의 최적조건 (Optimization of Bisphenol A Biodegradation by Trametes versicolor)

  • 강애리;최형태;송홍규
    • 미생물학회지
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    • 제44권1호
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    • pp.37-42
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    • 2008
  • 국내에서 분리된 구름버섯(Trametes versicolor)에 의한 내분비계 장애물질 bisphenol A의 생분해 효율을 높이기 위하여 그 생분해 최적조건을 조사하였다. T. versicolor는 Yeast extract-Malt extract-Glucose (YMG) 배지에서 12시간 이내에 50 mg/L bisphenol A를 100% 생분해하며, 5일 동안 선배양 시에는 2시간 이내에 100% 제거하였다. Bisphenol A의 농도가 낮을수록, 온도는 $35^{\circ}C$, pH 6에서 생분해율이 가장 높았으며 교반의 영향은 크지 않았다. 최소배지에서는 생분해율이 약간 낮았지만 최적조건은 YMG 배지에서와 유사하였다. 생분해에 관여하는 리그닌 분해효소 laccase의 mediator인 ABTS [2,2'-azino-bis(3-ethylbenzo-thiazoline-6-sulfonic acid) diammonium salt]를 최소배지에 첨가할 경우 bisphenol A의 생분해가 촉진되었다. 접종물 중 배양 상등액에 대한 균체량의 비율이 높을수록 생분해율이 증가하였는데 그 비율이 50%일 때 폐수에 첨가한 50 mg/L의 bisphenol A가 4일째에 100% 분해되었다. YMG 배지에서 bisphenol A의 생분해에 따라 내분비계 장애효과를 나타내는 에스트로겐 활성은 감소하였다.

Sesquiterpenoids Bioconversion Analysis by Wood Rot Fungi

  • Lee, Su-Yeon;Ryu, Sun-Hwa;Choi, In-Gyu;Kim, Myungkil
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2016년도 춘계학술대회 및 임시총회
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    • pp.19-20
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    • 2016
  • Sesquiterpenoids are defined as $C_{15}$ compounds derived from farnesyl pyrophosphate (FPP), and their complex structures are found in the tissue of many diverse plants (Degenhardt et al. 2009). FPP's long chain length and additional double bond enables its conversion to a huge range of mono-, di-, and tri-cyclic structures. A number of cyclic sesquiterpenes with alcohol, aldehyde, and ketone derivatives have key biological and medicinal properties (Fraga 1999). Fungi, such as the wood-rotting Polyporus brumalis, are excellent sources of pharmaceutically interesting natural products such as sesquiterpenoids. In this study, we investigated the biosynthesis of P. brumalis sesquiterpenoids on modified medium. Fungal suspensions of 11 white rot species were inoculated in modified medium containing $C_6H_{12}O_6$, $C_4H_{12}N_2O_6$, $KH_2PO_4$, $MgSO_4$, and $CaCl_2$ for 20 days. Cultivation was stopped by solvent extraction via separation of the mycelium. The metabolites were identified as follows: propionic acid (1), mevalonic acid lactone (2), ${\beta}$-eudesmane (3), and ${\beta}$-eudesmol (4), respectively (Figure 1). The main peaks of ${\beta}$-eudesmane and ${\beta}$-eudesmol, which were indicative of sesquiterpene structures, were consistently detected for 5, 7, 12, and 15 days These results demonstrated the existence of terpene metabolism in the mycelium of P. brumalis. Polyporus spp. are known to generate flavor components such as methyl 2,4-dihydroxy-3,6-dimethyl benzoate; 2-hydroxy-4-methoxy-6-methyl benzoic acid; 3-hydroxy-5-methyl phenol; and 3-methoxy-2,5-dimethyl phenol in submerged cultures (Hoffmann and Esser 1978). Drimanes of sesquiterpenes were reported as metabolites from P. arcularius and shown to exhibit antimicrobial activity against Gram-positive bacteria such as Staphylococcus aureus (Fleck et al. 1996). The main metabolites of P. brumalis, ${\beta}$-Eudesmol and ${\beta}$-eudesmane, were categorized as eudesmane-type sesquiterpene structures. The eudesmane skeleton could be biosynthesized from FPP-derived IPP, and approximately 1,000 structures have been identified in plants as essential oils. The biosynthesis of eudesmol from P. brumalis may thus be an important tool for the production of useful natural compounds as presumed from its identified potent bioactivity in plants. Essential oils comprising eudesmane-type sesquiterpenoids have been previously and extensively researched (Wu et al. 2006). ${\beta}$-Eudesmol is a well-known and important eudesmane alcohol with an anticholinergic effect in the vascular endothelium (Tsuneki et al. 2005). Additionally, recent studies demonstrated that ${\beta}$-eudesmol acts as a channel blocker for nicotinic acetylcholine receptors at the neuromuscular junction, and it can inhibit angiogenesis in vitro and in vivo by blocking the mitogen-activated protein kinase (MAPK) signaling pathway (Seo et al. 2011). Variation of nutrients was conducted to determine an optimum condition for the biosynthesis of sesquiterpenes by P. brumalis. Genes encoding terpene synthases, which are crucial to the terpene synthesis pathway, generally respond to environmental factors such as pH, temperature, and available nutrients (Hoffmeister and Keller 2007, Yu and Keller 2005). Calvo et al. described the effect of major nutrients, carbon and nitrogen, on the synthesis of secondary metabolites (Calvo et al. 2002). P. brumalis did not prefer to synthesize sesquiterpenes under all growth conditions. Results of differences in metabolites observed in P. brumalis grown in PDB and modified medium highlighted the potential effect inorganic sources such as $C_4H_{12}N_2O_6$, $KH_2PO_4$, $MgSO_4$, and $CaCl_2$ on sesquiterpene synthesis. ${\beta}$-eudesmol was apparent during cultivation except for when P. brumalis was grown on $MgSO_4$-free medium. These results demonstrated that $MgSO_4$ can specifically control the biosynthesis of ${\beta}$-eudesmol. Magnesium has been reported as a cofactor that binds to sesquiterpene synthase (Agger et al. 2008). Specifically, the $Mg^{2+}$ ions bind to two conserved metal-binding motifs. These metal ions complex to the substrate pyrophosphate, thereby promoting the ionization of the leaving groups of FPP and resulting in the generation of a highly reactive allylic cation. Effect of magnesium source on the sesquiterpene biosynthesis was also identified via analysis of the concentration of total carbohydrates. Our current study offered further insight that fungal sesquiterpene biosynthesis can be controlled by nutrients. To profile the metabolites of P. brumalis, the cultures were extracted based on the growth curve. Despite metabolites produced during mycelia growth, there was difficulty in detecting significant changes in metabolite production, especially those at low concentrations. These compounds may be of interest in understanding their synthetic mechanisms in P. brumalis. The synthesis of terpene compounds began during the growth phase at day 9. Sesquiterpene synthesis occurred after growth was complete. At day 9, drimenol, farnesol, and mevalonic lactone (or mevalonic acid lactone) were identified. Mevalonic acid lactone is the precursor of the mevalonic pathway, and particularly, it is a precursor for a number of biologically important lipids, including cholesterol hormones (Buckley et al. 2002). Farnesol is the precursor of sesquiterpenoids. Drimenol compounds, bi-cyclic-sesquiterpene alcohols, can be synthesized from trans-trans farnesol via cyclization and rearrangement (Polovinka et al. 1994). They have also been identified in the basidiomycota Lentinus lepideus as secondary metabolites. After 12 days in the growth phase, ${\beta}$-elemene caryophyllene, ${\delta}$-cadiene, and eudesmane were detected with ${\beta}$-eudesmol. The data showed the synthesis of sesquiterpene hydrocarbons with bi-cyclic structures. These compounds can be synthesized from FPP by cyclization. Cyclic terpenoids are synthesized through the formation of a carbon skeleton from linear precursors by terpene cyclase, which is followed by chemical modification by oxidation, reduction, methylation, etc. Sesquiterpene cyclase is a key branch-point enzyme that catalyzes the complex intermolecular cyclization of the linear prenyl diphosphate into cyclic hydrocarbons (Toyomasu et al. 2007). After 20 days in stationary phase, the oxygenated structures eudesmol, elemol, and caryophyllene oxide were detected. Thus, after growth, sesquiterpenes were identified. Per these results, we showed that terpene metabolism in wood-rotting fungi occurs in the stationary phase. We also showed that such metabolism can be controlled by magnesium supplementation in the growth medium. In conclusion, we identified P. brumalis as a wood-rotting fungus that can produce sesquiterpenes. To mechanistically understand eudesmane-type sesquiterpene biosynthesis in P. brumalis, further research into the genes regulating the dynamics of such biosynthesis is warranted.

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