• 제목/요약/키워드: Sterol biosynthesis

검색결과 36건 처리시간 0.027초

Screening of Sterol Biosynthesis Inhibitors from Natural Products Using Recombinant Yeast Carrying Human Lanosterol Synthase

  • Sung, Chung-Ki;Kim, Eun-A;Chu, Yun-Ho;Shibuya, Masaaki;Ebizuka, Yutaka
    • Natural Product Sciences
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    • 제9권4호
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    • pp.299-303
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    • 2003
  • For the screening of inhibitors of sterol biosynthesis from natural products, a simple and rapid assay method was developed using recombinant yeast carrying human lanosterol synthase, main target of this assay method. Sterol biosynthesis inhibition activity was monitored only by the inhibition of growth of the recombinant yeast. By changing the substrate, this assay method can figure out which step is inhibited in the sterol biosynthesis by the test material. With this assay method total 102 plant samples were screened for their inhibitory activity of sterol biosynthesis. Among plant water extracts screened, 11 plant samples showed inhibitory activity on sterol biosynthesis in ergosterol (-) medium. For selection of the specific inhibitory materials, 11 plant samples were reassayed in ergosterol (+) medium. After all 5 plant samples, Abutilon avicennae Gaertn. (stem), Alnus japonica Steud. (stem), Amaranthus mangostanus L. (aerial part), Philadelphus schrenckii Pupr. (leaf) and Pimpinelia brachycarpa Nakai (aerial part), showed specific inhibitory activity.

Cholesterol Biosynthesis from Lanosterol: Development of a Novel Assay Method, Characterization, and Solubilization of Rat Hepatic Microsomal Sterol Δ7-Reductase

  • Lee, Joon-No;Paik, Young-Ki
    • BMB Reports
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    • 제30권5호
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    • pp.370-377
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    • 1997
  • A novel assay method is described for rapid quantitation of reaction rate of sterol ${\Delta}^7$-reductase (${\Delta}^7$-SR) which catalyzes reduction of the ${\Delta}^7$-double bond of sterols. Of six different organ tissues-liver, small intestine, brain, lung, kidney, and testis-. ${\Delta}^7$-SR activity was detected only in liver (2.30 nmol/min/mg protein) and testis (0.11 nmol/min/mg protein). Using a newly developed method which employs diet-induced enzyme proteins and ergosterol as substrate, we assessed both kinetics ($K_m=210\;{\mu}M$, $V_{max}=1.93\;nmol/min/mg$) and inhibition of the rat hepatic ${\Delta}^7$-SR against well-studied cholesterol lowering agents such as triparanol ($IC_{50}=16\;{\mu}M$). 3-$\beta$-[2-(diethylamino)ethoxy]androst-5-en-17-one (U18666A) ($IC_{50}=5.2\;{\mu}M$), and trans-1.4-bis(2-chlorobenzylaminomethyl)cyclohexane dihydrochloride (AY-9944) ($IC_{50}=0.25\;{\mu}M$). Of the three well-known AY-9944-sensitive cholesterogenic enzymes (i.e., ${\Delta}^7$-SR, sterol ${\Delta}^8$-isomerase, and sterol ${\Delta}^14$-reductase). ${\Delta}^7$-SR was found to be the most sensitive enzyme with a noncompetitive inhibition of this compound ($K_i=0.109\;{\mu}M$). Substrate specificity studies of the microsomal ${\Delta}^7$-SR indicate that the relative reaction rate for 7-dehydrocholesterol and ergosterol are 5.6-fold and 1.6-fold higher than that for lathosterol. ${\Delta}^7$-SR activity was also modulated by feeding rats a diet supplemented with 0.5% ergosterol (>2.6-fold) in addition to 5.0% cholestyramine plus 0.1% lovastatin ($\simeq$5.0-fold). Finally, microsomal ${\Delta}^7$-SR was solubilized by 1.5% 3-[3-(cholamidopropyl)-dimethylammonio]-1-propanesulfonate (CHAPS) and enriched on PEG (0~10%) precipitation, which should be suitable for further purification of the enzyme.

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Dietary ε-Polylysine Decreased Serum and Liver Lipid Contents by Enhancing Fecal Lipid Excretion Irrespective of Increased Hepatic Fatty Acid Biosynthesis-Related Enzymes Activities in Rats

  • Hosomi, Ryota;Yamamoto, Daiki;Otsuka, Ren;Nishiyama, Toshimasa;Yoshida, Munehiro;Fukunaga, Kenji
    • Preventive Nutrition and Food Science
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    • 제20권1호
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    • pp.43-51
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    • 2015
  • ${\varepsilon}$-Polylysine (EPL) is used as a natural preservative in food. However, few studies have been conducted to assess the beneficial functions of dietary EPL. The purpose of this study was to elucidate the mechanism underlying the inhibition of neutral and acidic sterol absorption and hepatic enzyme activity-related fatty acid biosynthesis following EPL intake. EPL digest prepared using an in vitro digestion model had lower lipase activity and micellar lipid solubility and higher bile acid binding capacity than casein digest. Male Wistar rats were fed an AIN-93G diet containing 1% (wt/wt) EPL or L-lysine. After 4 weeks of feeding these diets, the marked decrease in serum and liver triacylglycerol contents by the EPL diet was partly attributed to increased fecal fatty acid excretion. The activities of hepatic acetyl-coenzyme A carboxylase and glucose-6-phosphate dehydrogenase, which are key enzymes of fatty acid biosynthesis, were enhanced in rats fed EPL diet. The increased fatty acid biosynthesis activity due to dietary EPL may be prevented by the enhancement of fecal fatty acid excretion. The hypocholesterolemic effect of EPL was mediated by increased fecal neutral and acidic sterol excretions due to the EPL digest suppressing micellar lipid solubility and high bile acid binding capacity. These results show that dietary EPL has beneficial effects that could help prevent lifestyle-related diseases such as hyperlipidemia and atherosclerosis.

고추에서 분리한 탄저병균의 스테롤 생합성 저해 살균제에 대한 감수성 반응과 포장 적응력 (Sensitivity of Colletotrichum spp. Isolated from Red-pepper to Sterol Biosynthesis Inhibiting-Fungicides and Their Field Fitness)

  • 박성우;김준태;김재정;김흥태
    • 식물병연구
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    • 제8권4호
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    • pp.239-244
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    • 2002
  • 고추와 사과에서 분리한 20개와 14개의 탄저병균 중에서 2001-45가 스테롤 생합성을 저해하는 살균제에 대하여 저항성 균주로 판명되었다. 2001-45는 myclobutanil, tebuconazole, hexaconazole, nuarimol 등에 대하여 153.5, 42.7, 34.0, 17.1 $\mu\textrm{g}$/ml로, 실험에 사용한 다른 탄저병균들 보다 높은 EC$_{50}$ 값을 보이며, 서로간에 교차 저항성을 나타냈다. 하지만 prochloraz(스테를 생합성 저해 살균제)에 대한 EC$_{50}$ 값은 0.07 $\mu\textrm{g}$/ml로, 감수성균인 2001-44와 JC24 보다도 감수성이 높았다. 20, 25, 3$0^{\circ}C$에서 스테롤 생합성 저해 살균제에 대하여 저항성인 2001-45의 균사 생장은 2001-44와 비슷하였으며, 또 다른 감수성인 JC24보다는 빨랐다. 그러나 PDA상에서의 포자 형성 능력과 고추열매에 대한 병원성은 JC24보다 현저하게 떨어졌다.

Sterol regulatory element-binding proteins involved in reprogramming of lipid droplet formation after rotavirus infection

  • Naveed, Ahsan;Baek, Yeong-Bin;Soliman, Mahmoud;Sharif, Muhammad;Park, Sang-Ik;Kang, Mun-Il
    • 한국동물위생학회지
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    • 제44권4호
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    • pp.195-207
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    • 2021
  • Species A rotaviruses (RVAs) replicate and assemble their immature particles within electron dense compartments known as viroplasms, where lipid droplets (LDs) interact with the viroplasm and facilitate viral replication. Despite the importance of LD formation in the life cycle of RVAs, the upstream molecules modulating LD formation remain unclear. This study aimed to find out the role of sterol regulatory element-binding proteins (SREBPs) in reprogramming of LD formation after RVA infection. Here, we demonstrate that RVA infection reprograms the sterol regulatory element-binding proteins (SREBPs)-dependent lipogenic pathways in virus-infected cells, and that both SREBP-1 and -2 transactivated genes, which are involved in fatty acid and cholesterol biosynthesis, are essential for LD formation. Our results showed that pharmacological inhibition of SREBPs using AM580 and betulin and inhibition of their downstream cholesterol biosynthesis (simvastatin for HMG-CoA reductase) and fatty acid enzymes (TOFA) negatively modulated the intracellular triacylglycerides and cholesterol levels and their resulting LD and viroplasm formations. Interestingly, pharmacological inhibition of SREBPs significantly reduced RVA protein synthesis, genome replication and progeny production. This study identified SREBPs-mediated lipogenic reprogramming in RVA-infected host cells, which facilitates virus replication through LD formation and its interaction with viroplasms, suggesting that SREBPs can be a potential target for the development of efficient and affordable therapeutics against RVA infection.

Biochemical Characterization of Recombinant UDP-Glucose:Sterol 3-O-Glycosyltransferase from Micromonospora rhodorangea ATCC 31603 and Enzymatic Biosynthesis of Sterol-3-O-β-Glucosides

  • Hoang, Nguyen Huu;Hong, Sung-Yong;Huong, Nguyen Lan;Park, Je Won
    • Journal of Microbiology and Biotechnology
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    • 제26권3호
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    • pp.477-482
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    • 2016
  • A uridine diphosphate-glucose:sterol glycosyltransferase-encoding gene was isolated and cloned from the established fosmid library of Micromonospora rhodorangea ATCC 27932 that usually produces the aminoglycoside antibiotic geneticin. The gene consists of 1,185 base pairs and encodes a 41.4 kDa protein, which was heterologously expressed in Escherichia coli BL21(DE3). In silico analyses of the deduced gene product suggested that it is a member of the family 1 glycosyltransferases. The recombinant protein MrSGT was able to catalyze the transfer of a glucosyl moiety onto the C-3 hydroxy function in sterols (β-sitosterol, campesterol, and cholesterol), resulting in the corresponding steryl glucosides (β-sitosterol-3-O-β-ᴅ-glucoside, campesterol-3-O-β-ᴅ-glucoside, and cholesterol-3-O-β-ᴅ-glucoside). This enzyme prefers phytosterols to cholesterol, and also shows substrate flexibility to some extent, in that it could recognize a number of acceptor substrates.

The Metabolism of (2-$^{14}C$) Mevalonic Acid on Photoperiodic Induction in Grafted Solanum Andigena

  • Bae, Moo;Mercer, E.I.
    • Nuclear Engineering and Technology
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    • 제2권2호
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    • pp.73-84
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    • 1970
  • Solanum andigena의 괴경생성형상과 스테톨의 관계를 구명하기 위하여 방사성 매바론산을 이용하여 대사를 연구하였다. 괴경생성에 단일광조성수도를 요하는 단일식물과 괴경을 생성치 않는 장일식물을 접목 시켰을때 장일식물이 괴경생성 홀몬을 받아 괴경을 생성하는 현상을 스테로이드와 결부시켜 구명할려고한것이다. 이 연구에서 각종 방사성 스테톨이 특수장치한 까스 크로마토 그라피로서 분리 측정되었다. 여기서 분리된 각종 스테톨이 직정 괴경생성홀몬이라는 근거는 찾을 수 없으며, 이들이 괴경의 포대성장에 필요한 인자로서 관여하고 있는 것으로 논의되었다.

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Genome-Wide Analysis of Hypoxia-Responsive Genes in the Rice Blast Fungus

  • Choi, Jaehyuk;Chung, Hyunjung;Lee, Gir-Won;Koh, Sun-Ki;Chae, Suhn-Kee;Lee, Yong-Hwan
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2015년도 춘계학술대회 및 임시총회
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    • pp.13-13
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    • 2015
  • Rice blast fungus, Magnaporthe oryzae, is the most destructive pathogen of rice in the world. This fungus has a biotrophic phase early in infection and switches to a necrotrophic lifestyle after host cell death. During the biotrophic phase, the fungus competes with host for nutrients and oxygen. Continuous uptake of oxygen is essential for successful establishment of blast disease of this pathogen. Here, we report transcriptional responses of the fungus to oxygen limitation. Transcriptome analysis using RNA-Seq identified 1,047 up-regulated genes in response to hypoxia. Those genes were involved in mycelial development, sterol biosynthesis, and metal ion transport based on hierarchical GO terms and well-conserved among three different fungal species. In addition, null mutants of three hypoxia-responsive genes were generated and tested for their roles on fungal development and pathogenicity. The mutants for a sterol regulatory element-binding protein gene, MoSRE1, and C4 methyl sterol oxidase gene, ERG25, exhibited increased sensitivity to hypoxia-mimetic agent, increased conidiation, and delayed invasive growth within host cells, suggesting important roles in fungal development. However, such defects did not cause any significant decrease in disease severity. The other null mutant for alcohol dehydrogenase gene, MoADH1, showed no defect in the hypoxia-mimic condition and fungal development. Taken together, this comprehensive transcriptional profiling in response to a hypoxia condition with experimental validations would provide new insights on fungal development and pathogenicity in plant pathogenic fungi.

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