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Constituents from the Non-Polar Fraction of Artemisia apiacea

  • Lee, Sanghyun;Kim, Kyoung-Soon;Shim, Sang-Hee;Park, You-Mie;Kim, Bak-Kwang
    • Archives of Pharmacal Research
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    • v.26 no.11
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    • pp.902-905
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    • 2003
  • Five compounds of terpenoids and coumarins were isolated from the non-polar fraction of Artemisia apiacea by open column chromatography. Their structures were elucidated as $\alpha$-amyrin (1), $\beta$-amyrin (2), $\beta$-sitosterol (3), 5,6,7-trimethoxycoumarin (4) and 6-methoxy-7,8-methylenedioxycoumarin (5) by chemical and spectroscopic analysis. This is the first report of the isolation of $\alpha$-amyrin, $\beta$-amyrin, 5,6,7-trimethoxycoumarin and 6-methoxy-7,8-methylene-dioxycoumarin from this plant.

Stabilization of Wheat $\beta$-Amylase by Modification with $IO_4$-Oxidized Starch ($IO_4$-산화전분 변형에 의한 밀 $\beta$-Amylase의 안정성 증가)

  • 안용근
    • The Korean Journal of Food And Nutrition
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    • v.13 no.4
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    • pp.348-352
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    • 2000
  • The stabilization of wheat $\beta$-amylase( Himaltosin GL, Hankyu-Bio) was attained by modification wish periodate-oxidized soluble starch. The specific activities of modified enzyme at pH 9.7 and pH 8.0 were 17% and 96%, respectively, compared with that of native enzyme. The pH stability of modified enzyme was increased at pH 2~5 and 6~12 in the presence of $\alpha$-cyclodextrin( $\alpha$-CD) compared with that of native enzyme, and optimum pH of the enzyme was changed from pH 5.0 to pH 7.0 by the modification. Thermal stability of the modified enzyme was increased. After treatment at 6$0^{\circ}C$ for 10min, the activity remained 8% for the enzyme modified at pH 8.0 in the presence of $\alpha$-CD and tested in the presence of $\alpha$-CD, 5% for the native enzyme. The native enzyme and modified enzyme showed one peak in HPLC. The molecular weight of the modified enzyme was slightly increased in HPLC analysis.

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Biosynthesis of $17\alpha-hydroxy$, $20\alpha-dihydroprogesterone$ by Ovaries of the Spotted Flounder (Verasper variegatus)

  • Baek Hea-Ja
    • Fisheries and Aquatic Sciences
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    • v.4 no.2
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    • pp.70-74
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    • 2001
  • To examine the production of steroids with potential oocyte maturation-inducing activity in the spotted flounder, Verasper variegatus, we have incubated post-vitellogenic oocytes (0.82­0.95mm in diameters) with radiolabeled pregnenolone and $17\alpha-hydroxyprogesterone$. The resulting metabolites were analyzed by thin layer chromatography (TLC) and high performance liquid chromatography (HPLC). The two main metabolites (progestogens) found in both incubations co-migrated with $17\alpha-hydroxy$, $20\alpha-dihydroprogesterone$ $(17\alpha, 20\alpha OHP)$ and $17\alpha-hydroxy,\;$20\beta-dihydroprogesterone$ (17 a20{30HP). Additional chromatography by HPLC and TLC confirmed the presence of radioactive $17\alpha, 20\alpha OHP$ and a large amount of unknown metabolite. The present study did not reveal in vitro formation of $l7\alpha 20\beta OHP$. Although 1$l7\alpha 20\beta OHP$ was found in a small amount, the synthesis of this steroid suggests that it may play a role in regulating the oocyte maturation process in the spotted flounder.

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Development of Biologically Active Compounds from Edible Plant Sources XVIII. Isolation of Derivatives of Ergosterol from the Fruit Body of Phellinus linteus (식용 식물자원으로부터 활성물질의 탐색-XVIII. 상황버섯 (Phellinus linteus) 자실체로부터 Ergosterol 유도체의 분리)

  • Lyu, Ha-Na;Yoo, Jong-Su;Song, Myoung-Chong;Lee, Dae-Young;Kim, Dong-Hyun;Rho, Young-Duk;Kim, In-Ho;Baek, Nam-In
    • Applied Biological Chemistry
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    • v.50 no.1
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    • pp.57-62
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    • 2007
  • The fruiting body of Phellinus linteus was extracted with 80% aqueous MeOH, and the concentrated extract was partitioned with EtOAc, n-BuOH and $H_2$O. The repeated silica gel and ODS column chromatographies of the EtOAc fraction led to isolation of four sterols. From the result of spectral data including NMR, MS and IR, the chemical structures of the sterols were determined as ergosta-7,24(28)-dien-3${\beta}$-ol (episterol, 1), 5${\alpha}$,8${\alpha}$-epidioxyergosta-6,9(11),22-trien-3${\beta}$-ol (dehydrop-eroxyergosterol, 2), 5${\alpha}$,8${\alpha}$-epidioxyergosta-6,22-dien-3${\beta}$-ol (ergoterol peroxide, 3), and $3{\beta}$,$5{\alpha}$-dihydroxy-6${\beta}$-methoxyergosta-7,22-diene (6-O-methylcerevisterol, 4). The ergosterols have been first isolated from this mushroom in this study.

Immunomodulating Activity of Fungal $\beta$-Glucan through Dectin-1 and Toll-like Receptor on Murine Macrophage

  • Kim, Ha-Won
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 2006.11a
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    • pp.103-115
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    • 2006
  • $\beta$-Glucan is a glucose polymer that has linkage of $\beta$-(1,3), -(1,4) and -(1,6). As exclusively found in fungal and bacterial cell wall, not in animal, $\beta$-glucans are recognized by innate immune system. Dendritic cells (DC) or macrophages possesses pattern recognition molecule (PRM) for binding $\beta$-glucan as pathogen-associated molecular pattern (PAMP). Recently $\beta$-glucan receptor was cloned from DC and named as dectin-l which belongs to type II C-type lectin family. Human dectin-1 is consisted of 7 exons and 6 introns. The polypeptide of dectin-1 has 247 amino acids and has cytoplasmic, transmembrane, stalk and carbohydrate recognition domains. Dectin-1 could recognize variety of beta-1,3 and/or beta-1,6 glucan linkages, but not alpha-glucans. In our macrophage cell line culture system, dectin-1 mRNA was detected in RA W264.7 cells by reverse transcription-polymerase chain reaction (RT-PCR). Dectin-1 was also detected in the murine organs of spleen, thymus, lung and intestines. Treatment of RA W264.7 cells with $\beta$-glucans of Ganoderma lucidum (GLG) resulted in increased expression of IL-6 and TNF-$\alpha$ in the presence of LPS. However, GLG alone did not increase IL-6 nor TNF-$\alpha$. These results suggest that receptor dectin-1 cooperate with CD14 to activate signal transduction that is very critical in immunoresponse.

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Immunomodulating Activity of Fungal ${\beta}-Glucan$ through Dectin-1 and Toll-like Receptor on Murine Macrophage

  • Kim, Ha-Won
    • 한국약용작물학회:학술대회논문집
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    • 2006.11a
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    • pp.103-115
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    • 2006
  • [ ${\beta}-Glucan$ ] is a glucose polymer that has linkage of ${\beta}-(1,3)$, -(1,4) and -(1,6). As exclusively found in fungal and bacterial cell wall, not in animal, ${\beta}-glucans$ are recognized by innate immune system. Dendritic cells (DC) or macrophages possesses pattern recognition molecule (PRM) for binding ${\beta}-glucans$ as pathogen-associated molecular pattern (PAMP). Recently ${\beta}-glucans$ receptor was cloned from DC and named as dectin-l which belongs to type II C-type lectin family. Human dectin-l is consisted of 7 exons and 6 introns. The polypeptide of dectin-l has 247 amino acids and has cytoplasmic, transmembrane, stalk and carbohydrate recognition domains. Dectin-l could recognize variety of beta-l,3 and/or beta-l,6 glucan linkages, but not alpha-glucans. In our macrophage cell line culture system, dectin-l mRNA was detected in RA W264.7 cells by reverse transcription-polymerase chain reaction (RT-PCR). Dectin-l was also detected in the murine organs of spleen, thymus, lung and intestines. Treatment of RA W264.7 cells with ${\beta}-glucans$ of Ganoderma lucidum (GLG) resulted in increased expression of IL-6 and $TNF-{\alpha}$ in the presence of LPS. However, GLG alone did not increase IL-6 nor $TNF-{\alpha}$ These results suggest that receptor dectin-l cooperate with CD14 to activate signal transduction that is very critical in immunoresponse.

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Phytochemical Constituents of Schizonepeta tenuifolia Briquet

  • Lee, Il-Kyun;Kim, Min-Ah;Lee, Seung-Young;Hong, Jong-Ki;Lee, Jei-Hyun;Lee, Kang-Ro
    • Natural Product Sciences
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    • v.14 no.2
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    • pp.100-106
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    • 2008
  • Column chromatographic separation of the MeOH extract from the aerial parts of Schizonepeta tenuifolia Briquet led to the isolation of twelve terpenes (1 - 11 and 17), four phenolics (13 - 16) and a hexenyl glucoside (12). Their structures were determined by spectroscopic means to be (-)-pulegone (1), piperitenone (2), p-cymene-3,8-diol (3), schizonepetoside A (4), schizonepetoside C (5), (+)-spatulenol (6), ursolic acid (7), $2{\alpha}$,$3{\alpha}$,$24{\alpha}$,-trihydroxyolean-12en-28oic acid (8), $5{\alpha}$,$8{\alpha}$-epidioxyergosta-6,22-diol-$3{\beta}$-ol (9), stigmast-4-en-3-one (10), ${\beta}-sitosterol$ (11), (Z)-3-hexenyl-1-O-${\beta}$-D-glucopyranoside (12), rosmarinic acid (13), apigenin-7-O-${\beta}$-D-glucopyranoside (14), luteolin-7-O-${\beta}$-D-glucuronopyranoside (15), hesperidin (16) and trans-phytol (17). Compounds 2, 3, 8, 9 and 12 were for the first time isolated from S. tenuifolia Briq.

Essential Oil Composition from Leaves, Flowers, Stems, and Fruits of Vitex rotundifolia L. fil. (순비기나무(Vitex rotundifolia L. fil.)의 부위별 정유성분 조성)

  • Jang, Soo-Jung;Kim, Young-Hoi;Kim, Myung-Kon;Kim, Kei-Whan;Yun, Sei-Eok
    • Applied Biological Chemistry
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    • v.45 no.2
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    • pp.101-107
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    • 2002
  • The essential oils isolated from leaves, flowers, stems, and fruits of Vitex rotundifolia by steam distillation and extraction (SDE) method were analyzed by gas chromatography (GC) and gas chromatography-mass spectrometry (GC-MS). A total of 76 components detected by GC, 42 components were identified positively by GC-MS and GC co-injection with authentic standards, and 34 components were identified tentatively by mass spectral data only. They included 16 monoterpene hydrocarbons, 30 oxygenated hydrocarbons, 10 sesquiterpene hydrocarbons, 8 oxygenated sesquiterpenes, 3 diterpenes, and 9 miscellaneous components. The major components in the oil from the leaves were ${\alpha}-pinene$ (30.25%), 1,8-cineole (19.89%), sabinene (9.56%), ${\alpha}-terpineol$ (7.94%), ${\beta}-pinene$ (5.69%), and terpinen-4-ol (2.37%), and those in the flower oil were ${\alpha}-pinene$ (25.47%), 1,8-cineole (7.69%), manoyl oxide (6.21%), ${\beta}-pinene$ (4.20%), ${\alpha}-te.pineol$ (3.76%), and sabinene (2.78%). The major components in the oil from the stems were ${\alpha}-pinene$ (13.24%), ${\alpha}-terpineol$ (10.64%), 1,8-cineole (4.40%), manoyl oxide (4.02%), ${\beta}-pinene$ (2.39%), and terpinen-4-ol (2.21%) while those in the oil from the fruits were ${\alpha}-pinene$ (20.24%), 1,8-cineole (11.47%), ${\beta}P-pinene$ (9.79%), ${\alpha}-terpineol$ (7.08%), sabinene (3.68%), and limonene (2.77%). The percentage composition of monoterpenes in the oils from the leaves and the fruits were higher than in those from the flowers and the stems, whereas the oil from the flowers and the stems were characterized by a large content of sesquiterpenes, diterpenes and other unknown high molecular weight components.

Mass Spectrometric Determination of Zn2+ Binding/Dissociation Constant for Zinc Finger Peptides

  • Lee, Choong Sik;Park, Soo Jin;Lee, Jae Young;Park, Sungsu;Jo, Kyubong;Oh, Han Bin
    • Mass Spectrometry Letters
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    • v.6 no.1
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    • pp.7-12
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    • 2015
  • In the present study, we proposed a simple ESI-MS model for determining $Zn^{2+}$ binding (or dissociation) constants for zinc finger peptides (ZFPs) with a unique ${\beta}{\beta}{\alpha}$ fold consensus. The ionization efficiency (response) factors for this model, i.e., ${\alpha}$ and ${\beta}$, could be determined for ZiCo ZFP with a known $Zn^{2+}$ binding constant. We could determine the binding constants for other ZFPs assuming those with a ${\beta}{\beta}{\alpha}$ consensus conformation have the same ${\alpha}/{\beta}$ response ratio. In general, the ZPF dissociation constants exhibited $K_d$ values of $10^{-7}{\sim}10^{-9}M$, while $K_d$ values for a negative control non-specific $Zn^{2+}$ peptides were high, e.g., $5.5{\times}10^{-6}M$ and $4.3{\times}10^{-4}M$ for BBA1 and melittin, respectively.

Flavonoids from Thyrsanthera suborbicularis and Their NO Inhibitory Activity

  • Song, Hyuk-Hwan;Khiev, Piseth;Chai, Hee-Sung;Lee, Hyeong-Kyu;Oh, Sei-Ryang;Choi, Young Hee;Chin, Young-Won
    • Natural Product Sciences
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    • v.18 no.4
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    • pp.273-278
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    • 2012
  • Further phytochemical investigation on the whole plant of Thyrsanthera suborbicularis, collected in Cambodia, led to kaempferol (1), vitexin (2), apigenin-7-O-neohesperidoside (3), chrysoeriol-7-O-${\beta}$-D-glucopyranoside (4), isorhamnetin 3-O-rutinoside (5), kaempferol-3-O-[${\alpha}$-L-rhamnopyranosyl-(13)-${\alpha}$-L-rhamnopyranosyl-(16)-${\beta}$-D-galactopyranoside (6), kaempferol-3-O-${\alpha}$-L-rhamnopyranosyl(12)-O-[${\alpha}$-L-rhamnopyranosyl (16)]-${\beta}$-D-glucopyranoside (7), kaempferol-3-O-[6"-O-(E)-p-coumaroyl]-${\beta}$-D-glucopyranoside (8), kaempferol-3-O-[6"-O-(E)-p-coumaroyl]-${\beta}$-D-galactopyranoside (9), and amentoflavone (10). All the structures were confirmed by the interpretation of NMR (1D and 2D) and MS data, and comparison with the published values. Of the isolated compounds 1 - 10, compounds 8 and 10 displayed the inhibitory activity against NO production in LPS-induced Raw 264.7 cells with $IC_{50}$ values, 3.56 and $15.73{\mu}M$, respectively.