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1.
在水/有机溶剂双相反应体系中,研究了来源于西梅的(R)-醇腈酶催化酮与丙酮醇腈合成(R)-酮醇腈的立体选择性转氰反应.系统探讨了不同酶源、酶粉颗粒大小、底物浓度、两底物配比、酶浓度和底物结构对转氰反应的影响.结果发现西梅醇腈酶能高效催化三甲基硅酮与丙酮醇腈的立体选择性转氰.酶粉颗粒大小以直径0.3~0.45 mm为优,底物浓度以21 mmol/L左右为佳,底物丙酮醇腈与三甲基硅酮摩尔浓度比以2∶1为宜,酶浓度以60.9 g/L左右为好.西梅醇腈酶对3, 3-二甲基-2-丁酮几乎没有催化活性,而对其硅结构类似物三甲基硅酮却具有非常高的立体选择性和催化活性,在上述优化反应条件下反应24 h的底物转化率和产物光学纯度均高达99%以上,表明底物中的硅原子对西梅醇腈酶的催化活性有非常显著的促进作用.  相似文献   

2.
黄花倒水莲化学成分研究   总被引:5,自引:0,他引:5  
从黄花倒水莲(Polygda aureocauda Dunn.)根中分离得到七个化合物,经理化和光谱分析鉴定为豆甾-7,(反)22-二烯-3-醇(1)、豆甾-7,(反)22-二烯-3-酮(2)、1,8-羟基-3,7-二甲氧基Shan酮(3)、软脂酸单甘油酯(4)和3-O-[4-O-(α-L-吡喃鼠李糖-)-阿魏酰]-β-D-呋喃果糖-(2→1)-(4,6-二-O-苯甲酰)-α-D-吡喃葡萄糖苷(5)、1-O-β-D-吡喃葡萄糖-(2S,3S,4R,8E)-2-[(2’R)-2’-羟基棕榈酰胺]-8-十八烯-1,3,4-三醇(6)和1-O-β-D吡喃葡萄糖-(2S,3S,4R,8E)-2-[(2’R)-2'-羟基二十四烷酰胺]-8-十八烯-1,3,4-三醇(7)。化合物2—4.7为首次从该植物中分离得到。  相似文献   

3.
荷叶的化学成分研究   总被引:4,自引:0,他引:4  
从荷叶(Folium Nelumbinis)的乙醇提取物中分离鉴定出13个化合物,分别为荷叶碱(nuciferine,1),鹅掌楸碱(liriodenine,2),2-羟基-1-甲氧基阿朴啡(2-hydfoxy-1-methoxyaporphine,3),原荷叶碱(pronuciferine,4),去氢莲碱(dehydroroemerine,5),去氢荷叶碱(dehydronuciferine,6),莲碱(roemerine,7),胡萝卜苷(daucosterol,8),β-谷甾醇(β-sitosterol,9),1-二十烷醇(1-icosanol,10),1-十一烷醇(1-undecanol,11),(2R,4S,4aS,8aS)-4,4a-环氧-4,4a-二氢食用西番莲素[(2R,4S,4aS,8aS)-4,4a-epoxy-4,4a-dihydroedulan,12]和邻二羟基苯酚(benzene-1,2-did,13).其中化合物10~13为首次从荷叶中分离得到.  相似文献   

4.
铁甲草化学成分的初步研究   总被引:1,自引:0,他引:1  
采用硅胶柱色谱分离方法,研究了铁甲草(Cassia mimosoides Linn.)乙醇提取物中的化学成分.从铁甲草中分离得到8个化合物:大黄素(1)、木犀草素(2)、间苯二酚(3)、齐墩果酸(4)、(R)-鹰爪三醇(5)、α-L-鼠李糖(6)、β-谷甾醇(7)和胡萝卜苷(8).除化合物1以外,其余均是首次从铁甲草中分离得到,其中化合物5为首次在该科植物中发现.  相似文献   

5.
攀援孔药花化学成分研究   总被引:10,自引:0,他引:10  
从攀援孔药花全草95%乙醇提取物中首次分离得到19个化合物,通过波谱数据或与已知物对照,它们分别鉴定为:(2S,3S,4R)-2-[(2R)-2-羟基-二十一酰胺基]-二十一烷-1,3,4-三醇(1)、(2S,3S,4R)-2-二十四酰胺基-十八烷-1,3,4-三醇(2)、胡萝卜甙(3)、β-谷甾醇(4)、(20S,22E,24R)-5α,8α-表二氧-麦角甾-6,22-二烯-3β-醇(5)、6β-羟基-豆甾-4-烯-3-酮(6)、十六烷酸-1-甘油酯(7)、桦木酸(8)、大黄素(9)、二十二烷酸-1-甘油酯(10)、对羟基苯甲醛(11)、十七烷酸-1-甘油酯(12)、金色酰胺醇乙酸酯(13)、十九烷酸-1-甘油酯(14)、棕榈酸(15)(、E)-p-香豆酸(16)、(22E,24S)-24-甲基-5α-胆甾-7,22-二烯-3β,5α,6β-三醇(17)、2-去氧-β-蜕皮激素(18)和auranamide(19)。  相似文献   

6.
石菖蒲的化学成分研究   总被引:2,自引:1,他引:1  
运用色谱法从石菖蒲根茎提取物中分离得到18个化合物,经波谱学分析鉴定为:(7S,8R)-4,9’-di-hydroxyl-3,3’-dimethoxyl-7,8-dihydrobenzofuran-1’-propylneolignan(1),(7S,8R)-4,9’-dihydroxyl-3,3’-dimethoxyl-7,8-dihydrobenzofuran-1’-propylneoligan-9-O-β-D-glucopyranoside(2),7’-hydroxylariciresinol-9-acetate(3),5-羟基-3,7,4’-三甲氧基黄酮(4),野漆树苷(5),紫云英苷(6),松属素-3-O-芸香糖苷(7),山奈酚-3-O-芸香糖苷(8),德钦红景天苷(9),isoschaftoside(10),5-羟甲基糠醛(11),反式桂皮酸(12),3,7-dihydroxy-11,15,23-trioxo-lanost-8,16-dien-26-oicacid(13),3,7-dihydroxy-11,15,23-trioxo-lanost-8,16-dien-26-oic acid methyl ester(14),环阿屯醇(15),胡萝卜苷(16),羽扇豆醇(17),(22E,24R)-ergosta-5,7,22-trien-3β-ol(18)。除化合物4、11和16外,其余15个化合物均为首次从该植物中分离得到。  相似文献   

7.
银杏叶聚戊烯醇抗肿瘤的生物活性研究   总被引:9,自引:0,他引:9  
目的 :从银杏叶中分离聚戊烯醇新的有效部位 ,研究聚戊烯醇抗肿瘤的药效。方法 :通过提取、分离、精制 75 %以上银杏叶聚戊烯醇 ,以氟脲嘧啶 (5 Fu)为对照 ,选择肝癌 (Heps)实体型、肉瘤 (S180 )、艾氏癌 (EC)实体型等瘤谱 ,用不同剂量的聚戊烯醇进行小鼠移植性抗肿瘤药效实验。结果 :银杏叶聚戊烯醇对Heps、S180 和EC等移植性瘤谱的最高抑瘤率分别为 4 9 2 9%、6 0 89%和 5 2 4 7% (p <0 .0 0 5 )。结论 :银杏叶聚戊烯醇具有明显的抑制肿瘤的生物活性。  相似文献   

8.
【目的】通过 (R) - 和(S) -羰基还原酶在大肠杆菌中偶联,实现了一步法制备(S)-苯乙二醇的生物转化过程。【方法】将来源于近平滑假丝酵母(Candida parapsilosis CCTCC M203011)的(R)- 羰基还原酶基因(rcr)和(S) -羰基还原酶基因(scr)串联于共表达载体pETDuetTM-1上。重组质粒pETDuet-rcr-scr转化稀有密码子优化型菌株Escherichia coli Rosetta,获得酶偶联重组菌株E. coli Rosetta / pETDuet-rcr-scr。当重组菌体培养至OD600 0.6-0.8时,添加终浓度1 mmol/L IPTG,30℃诱导蛋白表达10 h。【结果】SDS-PAGE结果表明(R)- 和(S) -羰基还原酶均明显表达,它们的相对分子质量分别为37 kDa和30 kDa。重组菌生物转化结果表明:在pH7.0的磷酸缓冲液中,添加5 mmol/L Zn2+时,获得产物(S)-苯乙二醇,产物光学纯度为91.3% e.e.,产率为75.9%。【讨论】采用分子重组技术成功整合了两种氧化还原酶的催化功能,实现了(S)- 苯乙二醇的一步法转化,为简化手性醇制备途径提供了一条崭新的思路。  相似文献   

9.
环氧基是一个非常活跃的基团,它能与酶、蛋白质和核酸等生物分子发生反应形成共价键,有利于生物分子的固定化。经共价结合法固定化的酶其稳定性及重复使用性可得到显著提高。用环氧树脂ES-103B为载体采用共价结合法对海洋细菌Bacillus sp. DL-2的胞外蛋白酶进行固定化,经过单因素实验优化条件得出最优固定化条件为:p H 8. 0的胞外蛋白酶溶液,25 g/L的ES-103B,45℃下反应8h。采用此最优条件下的固定化酶拆分(±)-乙酸苏合香酯制备出了e. e. p=97. 5%的(R)-1-苯乙醇(产率为45. 0%)和e. e. s=99. 2%的(S)-乙酸苏合香酯(产率为83. 9%)。该固定化酶拆分(±)-乙酸苏合香酯在重复使用8次后制备出的(R)-1-苯乙醇的e. e. p仍大于90%,且固定化胞外蛋白酶在4℃下具有较好的储存稳定性。  相似文献   

10.
从产量和有效成分含量两方面综合评价不同板蓝根种质在河北干旱地区的种植表现,筛选适宜当地种植的板蓝根优良种质。20份板蓝根种质按完全随机区组设计田间试验,采用高效液相色谱法测定(R,S)-告依春。20份种质的板蓝根产量范围为2.507~4.555 kg/m2,大青叶产量范围为66.070~118.897 g/m2,(R,S)-告依春含量范围为0.158%~0.315%。综合产量和含量数据,4号、13号、17号种质在根产量、叶产量和(R,S)-告依春含量三方面均表现优异。15号、3号、12号种质根产量和(R,S)-告依春含量两方面表现优异,而叶产量偏低。不同种质的板蓝根、大青叶产量及(R,S)-告依春含量均差异较大,综合产量与含量差异,筛选出根、叶产量和(R,S)-告依春含量均显著高的4号、13号、17号,根产量和(R,S)-告依春含量显著高,叶产量显著低的15号、3号、12号种质。可根据不同的生产需求选择适宜优良种质,用于后续大面积扩繁及作为育种材料继续选育新品种。  相似文献   

11.
Plasma concentrations of (R)- and (S)-amlodipine were measured after single oral administrations to 18 healthy volunteers of 20 mg amlodipine racemate. The contribution of the pharmacologically active (S)-enantiomer to the concentrations of total amlodipine (sum of enantiomers) was significantly higher than that of the inactive (R)-enantiomer, with mean values of 47% R to 53% S for the Cmax and 41% R to 59% S for the AUC (range between 24% R:76% S and 50% R:50% S). The oral clearance of the active (S)-form was subject to much less intersubject variation (25% CV) than that of the inactive (R)-form (52% CV). (R)-Amlodipine was more rapidly eliminated from plasma than (S)-amlodipine, with mean terminal half-lives of 34.9 h (R) and 49.6 h (S). The terminal half-lives of total amlodipine (mean 44.2 h) were strongly correlated with—and thus highly predictive for—the half-lives of the (S)-enantiomer. It is proposed that the observed enantioselectivity of oral amlodipine is due to differences in the systemic blood clearance of the enantiomers. © 1994 Wiley-Liss, Inc.  相似文献   

12.
β-methylaspartate ammonia-lyase, EC 4.3.1.2, (β-methylaspartase) from Clostridium tetanomorphum was used to produce a 40/60 molar ratio of (2S,3R) and (2S,3S)-3-methylaspartic acids, 2a and 2b , respectively, from mesaconic acid 1 as substrate, on a large scale. To prepare (3R,4R)-3-methyl-4-(benzyloxycarbonyl)-2-oxetanone (benzyl 3-methylmalolactonate) 6, 2a and 2b were transformed, in the first step, into 2-bromo-3-methylsuccinic acids 3a and 3b and separated. After three further steps, (2S,3S)- 3a yielded the α,β-substituted β-lactone (3R,4R) 6 with a very high diastereoisomeric excess (>95% by chiral gas chromatography). The corresponding crystalline polymer, poly[benzyl β-(2R,3S)-3-methylmalate] 8 , prepared by an anionic ring opening polymerization, was highly isotactic as determined by 13C NMR. Catalytic hydrogenolysis of lactone 6 yielded (3R,4R)-3-methyl-4-carboxy-2-oxetanone (3-methylmalolactonic acid) 7 , to which reactive, chiral, or bioactive molecules can be attached through ester bonds leading to polymers with possible therapeutic applications. Because of the ability of β-methylaspartase to catalyse both syn- and anti-elimination of ammonia from (2S,3RS)-3-methylaspartic acid 2ab at different rates, the (2S,3R)-stereoisomer 2a was retained and isolated for further reactions. These results permit the use of the chemoenzymatic route for the preparation of both optically active and racemic polymers of 3-methylmalic acid with well-defined enantiomeric and diastereoisomeric compositions. Chirality 10:727–733, 1998. © 1998 Wiley-Liss, Inc.  相似文献   

13.
Abstract

The stereoselective oxidation of (—)-isolongifolanol (1) with a longifolene skeleton by Aspergillus niger (NBRC 4414) as a biocatalyst and suppressive effect on umuC gene expression by chemical mutagens furylfuramid and AFB1 of the SOS response in Salmonella typhimurium TA1535/pSK1002 were investigated. Compound 1 was converted to a new terpenoid, (-)-(2S,8R)-8,12-dihydroxy-isolongifolanol (2). Its structure was determined by NMR, IR, specific rotation and mass spectrometry. The metabolites suppressed the SOS-inducing activity of furylfuramid and AFB1 in the umu test. Compound 1 suppressed 51% of the SOS-inducing activity against furylfuramid at < 1.0 mM. Compound 2 suppressed 15% and 24% of the SOS-inducing activity against furylfuramid and AFB1 at < 1.0 mM respectively.  相似文献   

14.
An evaluation of ibuprofen bioinversion by simulation.   总被引:3,自引:0,他引:3  
Using a pharmacokinetic model recently proposed to explain ibuprofen disposition in man, plasma concentrations of pure ibuprofen enantiomers were simulated following oral administration of (-)-(R)-ibuprofen, (+)-(S)-ibuprofen, or rac-ibuprofen. Simulated and literature values for AUC's were used to compare S/R ratios for different cases of the model and for different methods of calculating the fraction of R bioinverted to S. Numerical simulation using STELLA confirmed previous results for different cases of bioinversion. Simulated S/R AUC ratios, for administration of the racemate, ranged from 4.0 (presystemic bioinversion) to 1.66 (systemic bioinversion). Literature values for S/R AUC ratios averaged 1.53 +/- 0.2 for administration of the racemate; therefore, systemic bioinversion was concluded to be representative of ibuprofen disposition. Additional simulations of S/R AUC ratios, for administration of (-)-(R)-ibuprofen only, ranged from 1.5 (presystemic bioinversion) to 0.66 (systemic bioinversion). Literature values for S/R AUC ratios averaged 0.50 +/- 0.9 for administration of (-)-(R)-ibuprofen only, which again supported conclusions of systemic bioinversion. Using different equations for estimation of fraction of R inverted to S (FR----S), results based on simulated data were identical; however, FR----S values based on literature data were different. Therefore, assumptions made for different FR----S equations do not appear to be rigorous. Calculations of FR----S, based on literature data, averaged 0.52 overall, indicating bioavailability of (+)-(S)-ibuprofen may be similar for a 150 mg dose of (+)-(S)-ibuprofen compared to a 200 mg dose of racemate.  相似文献   

15.
With the hydrolytic resolution of (R,S)-naproxen 2,2,2-trifluoroethyl thioesters in water-saturated isooctane as a model system, improvements of the specific lipase activity and thermal stability were found when a crude Carica papaya lipase (CPL) was partially purified and employed as the biocatalyst. The partially purified Carica papaya lipase (PCPL) was furthermore explored as an effective enantioselective biocatalyst for the hydrolytic resolution of (R,S)-profen thioesters in water-saturated organic solvents. The kinetic analysis in water-saturated isooctane indicated that both acyl donor and acyl acceptor have profound influences on the lipase activity, E-value, and enantioselectivity. Inversion of the enantioselectivity from (S)- to (R)-thioester was found for (R,S)-fenoprofen and (R,S)-ketoprofen thioesters that contained a bulky substituent at the meta-position of 2-phenyl moiety of the acyl part. Kinetic constants for the acylation step were furthermore estimated for elucidating the kinetic data and postulating an active site model. The thermodynamic analysis indicated that the enantiomer discrimination was driven by the difference of activation enthalpy (DeltaDeltaH) and that of activation entropy (DeltaDeltaS), yet the latter was dominated for most of the reacting systems. The postulated active site model was supported from the variation of DeltaDeltaH and DeltaDeltaS with the acyl moiety, in which a good linear enthalpy-entropy compensation relationship was also illustrated. A comparison of the performances between Candida rugosa lipase (CRL) and PCPL indicated that PCPL was superior to CRL in terms of the better thermal stability, similar or better lipase activity for the fast-reacting substrate, time-course-stability, and lower enzyme cost.  相似文献   

16.
We recently reported a new C3‐symmetric (R)‐phenylglycinol N‐1,3,5‐benzenetricarboxylic acid‐derived chiral high‐performance liquid chromatography (HPLC) stationary phase (CSP 1) that demonstrated better results as compared to a previously described N‐3,5‐dintrobenzoyl (DNB) (R)‐phenylglycinol‐derived CSP. Over a decade ago, (S)‐leucinol, (R)‐phenylglycine, and (S)‐leucine derivatives were used as the starting materials of 3,5‐DNB‐based Pirkle‐type CSPs for chiral separation. In this study, three new C3‐symmetric CSPs (CSP 2, 3, and 4) were prepared by combining the ideas and results mentioned above. Here we describe the synthetic procedures and applications of the new C3‐symmetric CSPs (CSP 2–CSP 4).  相似文献   

17.
Lou WY  Zong MH 《Chirality》2006,18(10):814-821
Efficient enantioselective acylation of (R,S)-1-trimethylsilylethanol {(R,S)-1-TMSE} with vinyl acetate catalyzed by immobilized lipase from Candida antarctica B (i.e., Novozym 435) was successfully conducted in ionic liquids (ILs). A remarkable enhancement in the initial rate and the enantioselectivity of the acylation was observed by using ILs as the reaction media when compared to the organic solvents tested. Also, the activity, enantioselectivity, and thermostability of Novozym 435 increased with increasing hydrophobicity of ILs. Of the six ILs examined, the IL C4MIm.PF6 gave the fastest initial rate and the highest enantioselectivity, and was consequently chosen as the favorable medium for the reaction. The optimal molar ratio of vinyl acetate to (R,S)-1-TMSE, water activity, and reaction temperature range were 4:1, 0.75, and 40 -50 degrees C, respectively, under which the initial rate and the enantioselectivity (E value) were 27.6 mM/h and 149, respectively. After a reaction time of 6 h, the ee of the remaining (S)-1-TMSE reached 97.1% at the substrate conversion of 50.7%. Additionally, Novozym 435 was effectively recycled and reused in C4MIm.PF6 for five consecutive runs without substantial lose in activity and enantioselectivity. The preparative scale kinetic resolution of (R,S)-1-TMSE in C4MIm.PF6 is shown to be very promising and useful for the industrial production of enantiopure (S)-1-TMSE.  相似文献   

18.
A new C27-steroidal sapogenin-peptide ester, fenugreekine, has been isolated from seeds of Trigonella foenum-graecum. On acid hydrolysis, it afforded diosgenin, yamogenin, (25R)-spirosta-3,5-diene, a mixture of three isomeric (2S,3R,4R-, 2S,3R,4S-, 2S,3S,4R-)-4-hydroxyisoleucine lactones, 4′-hydroxyisoleucyl-4-hydroxyisoleucine lactone, and a C14-dipeptide which was partially characterized. On the basis of this chemical transformation and spectral (UV, IR, PMR, MS) evidence of fenugreekine and its transformation products, the steroidal sapogenin-peptide ester is assigned structure (1). The two dipeptides also have not been encountered before in nature or prepared synthetically. The compound shows a number of interesting pharmacological and virological activities.  相似文献   

19.
Methyl (R)‐N‐(2,6‐dimethylphenyl)alaninate ((R)‐DMPM) is a key chiral intermediate for the production of (R)‐metalaxyl, which is one of the best‐selling fungicides. A new strain, Pseudochrobactrum asaccharolyticum WZZ003, was identified as a biocatalyst for the enantioselective hydrolysis of (R,S)‐DMPM. The key parameters including pH, temperature, rotation speed and substrate concentrations were optimized in the enantioselective hydrolysis of (R,S)‐DMPM. After the 48 h hydrolysis of 256 mM (R,S)‐DMPM under the optimized reaction conditions, the enantiomeric excess of product (e.e.p) was up to 99% and the conversion was nearly 50%. Subsequently, the unhydrolyzed (S)‐DMPM was converted to (R,S)‐DMPM through the n‐butanal‐catalyzed racemization. Furthermore, stereoselective hydrolysis of (R,S)‐DMPM catalyzed by whole cells of P. asaccharolyticum WZZ003 was scaled up to kilogram‐scale, offering (R)‐MAP‐acid with 98.6% e.e.p and 48.0% yield. Moreover, (R)‐metalaxyl was prepared at kilogram scale after subsequent esterification and coupling reactions. Therefore, a practical production process of (R)‐DMPM and (R)‐metalaxyl with the prospect of industrialization was developed in this study. © 2018 American Institute of Chemical Engineers Biotechnol. Prog., 34:921–928, 2018  相似文献   

20.
(2S,3S)-3-methyl- and 3-isopropylaspartic acids were synthesized by bioconversion of the corresponding alkylfumarates (mesaconate and 3-isopropylfumarate) using β-methylaspartase from cell-free extracts of Clostridium tetanomorphum. Optically pure (2S,3S)-3-alkylaspartic acids were transformed in several steps to benzyl (3S,4R)-3-alkylmalolactonates without any racemization of the two chiral centers. These optically active α,β-substituted-β-lactones were polymerized by anionic ring opening polymerization yielding optically active semi-crystalline polyesters. 13C NMR analysis of poly[benzyl β-3-isopropylmalate] in CDCl3 has shown that only the iso-type stereosequence is present in the polymer, indicating that the macromolecular chain is constituted by the only units of benzyl β-(2S,3S)-3-isopropylmalate monomer. The polymerization reaction was done without any racemization of the two stereogenic centers as in the case of benzyl (3S,4R)-3-methylmalolactonate. © 1996 Wiley-Liss, Inc.  相似文献   

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