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1.
1-苯乙醇是一种重要的手性药物中间体,并且(S)-1-苯乙醇和(R)-1-苯乙醇均具有应用价值.怎样获得光学醇的1-苯乙醇是药物合成中的重要问题.传统的化学合成手段不仅反应过程复杂,而且反应条件剧烈,对环境污染严重,因此生物催化方法越来越受到重视.脂肪酶和酯酶以其出色的立体选择性和温和的反应条件而被广泛用于手性药物的拆分制备.但是之前的一些研究发现脂肪酶和酯酶大都对(R)-1-苯乙醇及其衍生物有选择性,而我们发现并鉴定的脂肪酶MT6的立体选择性则与这些脂肪酶/酯酶完全相反,具体体现在以下两个方面:(1)MT6能够特异地催化(S)-1-苯乙醇和乙酸异丙烯酯的转酯反应,生成(R)-1-苯乙醇;(2)MT6能够选择性地水解(S)-乙酸苏合香酯,生成(S)-1-苯乙醇.可见,利用MT6催化的转酯反应和水解反应可以巧妙地进行(S)-1-苯乙醇和(R)-1-苯乙醇的制备.MT6来源于深海放线菌Marinactinospora thermotolerans SCSIO 00652,属于GDSL家族脂肪酶第II类群,这一类群的脂肪酶绝大多数来自微生物.有关GDSL家族脂肪酶在手性拆分中的应用研究非常少.我们之前报道了MT6的克隆、表达、纯化及转酯拆分反应,本文重点考察了MT6通过水解反应制备(S)-1-苯乙醇的条件,优化了酶促水解拆分反应温度、有机共溶剂、pH、离子强度、酶用量、底物浓度、反应时间以及底物侧链长度等参数.研究发现,在反应体系中加入一定量的有机共溶剂能够大大提高产物(S)-1-苯乙醇的光学纯度,其中添加二氯甲烷获得的结果最为理想,可以将产物光学纯度从43%提高到89%,E值从2.84提高至22.82.经过优化,最佳反应温度为40°C,共溶剂二氯甲烷浓度为5%(体积分数),反应缓冲液为0.1 mol/L Tris-HCl(p H=7.0),酶用量为150 mg/m L,底物为15 mmol/L乙酸苏合香酯,反应时间控制在12 h.在此条件下,制备的(S)-1-苯乙醇的光学纯度可达97%,转化率可达28.5%,E值为95.9.此外,还比较了侧链长度不同的1-苯基乙醇酯对水解反应的影响,结果表明1-苯基乙醇酯的侧链长度可极大影响光学选择性和产率.在反应条件相同时,MT6催化侧链长度为4个碳的丁酸-1-苯乙酯水解,生成(S)-1-苯乙醇的光学纯度仅为50%.利用Auto Dock软件进行分子对接,结果显示长侧链的1-苯基乙醇酯离活性中心His230的咪唑基较远,可能是导致酶立体选择性低的重要原因.值得注意的是,海洋微生物来源的GDSL脂肪酶MT6在水解反应和转酯反应中均表现出与一些已知脂肪酶/酯酶相反的立体选择性,因而具备进一步开发和应用价值.所制备的(S)-1-苯乙醇的光学纯度为97%,可以通过和转酯反应相结合的方式进一步提高产物的光学纯度和转化率.  相似文献   

2.
秦丽娜  喻晓蔚  徐岩 《催化学报》2011,(10):1639-1644
研究了非水有机溶剂体系中脂肪酶不对称转酯化拆分(R,S)-α-苯乙醇反应,比较了15种不同微生物来源的脂肪酶,从中优选出催化活性及对映选择性较高的脂肪酶Lipase PS,系统考察了影响该酶催化不对称转酯化反应的关键因素,获得了优化的催化拆分工艺条件.结果表明,脂肪酶Lipase PS在非水反应体系中,以正己烷为反应介...  相似文献   

3.
将天然聚合物壳聚糖(CS)涂覆在介孔分子筛MCM-48表面制得CS-MCM-48复合载体,控制CS与介孔分子筛MCM-48质量比为1∶10时,CS-MCM-48的比表面积、平均孔径和孔容分别为408 m2/g、2.14 nm和0.38 cm3/g.在磷酸盐缓冲溶液-异辛烷混合溶剂中制备了固定化假单胞菌脂肪酶(Pseudomonas CepaciaLipase,PSL)PSL/CS-MCM-48,并用于潜手性苯乙酮一锅法还原转酯化手性拆分反应.结果表明,PSL/CS-MCM-48的催化活性和对映选择性均明显优于纯介孔分子筛MCM-48和壳聚糖制备的固定化酶PSL/MCM-48和PSL/CS.甲苯作溶剂,反应温度为40℃时,底物1-苯乙醇转化率达15.3%,产物(R)-乙酸苯乙酯和(S)-1-苯乙醇的对映体过量值分别为99%和18.0%,对映选择性参数E值达237,固定化酶PSL/CS-MCM-48显示出良好的手性拆分性能.  相似文献   

4.
发现了一种催化效率较高的消旋催化剂——CD550树脂,其与脂肪酶耦合可成功催化1-苯乙醇的动态动力学拆分(DKR).该树脂60℃下可将100 mmol/L(S)-1-苯乙醇于1.5 h内完全消旋.当其应用于1-苯乙醇的DKR反应时,通过采用结构较复杂的邻苯二酚二乙酸酯、间苯二酚二乙酸酯、3,5-二甲基苯酸乙酸酯作为酰基供体,可有效抑制树脂催化的底物无选择性转酯化,极大提高底物转化率和产物ee值.以邻苯二酚二乙酸酯参与的DKR反应为例,反应10 h,转化率大于99%,eeP为90.5%.  相似文献   

5.
利用帆布固定化嗜热酯酶APE1547(3)在非水介质中催化转酯化反应进行酶促拆分(R,S)-2-甲基-1-丁醇制备(S)-2-甲基-1-丁醇(4).初步探讨了溶剂、酰基供体、温度及底物配比对3的催化活力(EA3)′与4对映选择性比率(E4)的影响.在最佳拆分条件下,EA3 =0.53 μmol·min-1·mg-1,E4=15.4.3套用8次后仍然保持较高的催化活性.  相似文献   

6.
脂肪酶催化二次动力学拆分制备高光学纯度(S)-萘普生   总被引:1,自引:1,他引:0  
辛嘉英 《分子催化》2015,29(1):90-95
设计了一种利用立体选择性相反的两种脂肪酶催化二次动力学拆分,由外消旋萘普生甲酯制备高光学纯度(S)-萘普生的方法。理论曲线预测,与简单的酶促动力学拆分反应相比,二次动力学拆分可以明显提高高光学纯度产物的产率.根据几种脂肪酶在微水/异辛烷双液相反应体系中不对称水解萘普生甲酯的立体选择性和对映体比率(E),首先选用R选择性的固定化南极假丝酵母脂肪酶(Novozym 435)对外消旋萘普生甲酯进行第一次拆分,然后选用S选择性的柱状假丝酵母脂肪酶(CRL)对S过量的剩余底物萘普生甲酯在同样的反应体系中进行第二次拆分.该二次拆分反应对映体过量值为96.8%的(S)-萘普生产率达19.9%.  相似文献   

7.
薛屏  严祥辉 《应用化学》2007,24(3):245-250
将天然聚合物壳聚糖(CS)涂覆在介孔分子筛MCM-48表面制得CS-MCM-48复合载体,控制CS与介孔分子筛MCM-48质量比为1∶10时,CS-MCM-48的比表面积、平均孔径和孔容分别为408m2/g、2.14nm和0.38cm3/g。在磷酸盐缓冲溶液-异辛烷混合溶剂中制备了固定化假单胞菌脂肪酶(Pseudomonas Cepacia Lipase,PSL)PSL/CS-MCM-48,并用于潜手性苯乙酮一锅法还原转酯化手性拆分反应。结果表明,PSL/CS-MCM-48的催化活性和对映选择性均明显优于纯介孔分子筛MCM-48和壳聚糖制备的固定化酶PSL/MCM-48和PSL/CS。甲苯作溶剂,反应温度为40℃时,底物1-苯乙醇转化率达15.3%,产物(R)-乙酸苯乙酯和(S)-1-苯乙醇的对映体过量值分别为99%和18.0%,对映选择性参数E值达237,固定化酶PSL/CS-MCM-48显示出良好的手性拆分性能。  相似文献   

8.
车超  张钟宁  黄桂兰  王信星 《有机化学》2004,24(10):1281-1283
利用Sharpless不对称环氧化反应动力学拆分二级烯丙醇DL-1-十四烯-3-醇,研究了不同手性酒石酸酯催化剂[酒石酸乙酯(DET)、酒石酸异丙酯(DIPT)、酒石酸环己酯(DCHT)以及酒石酸环十二酯(DCDT)]对该反应的催化选择性,拆分所得的烯丙醇的光学纯度有一定差异,从90%到99?.  相似文献   

9.
2-甲基丁酸手件中心碳原子上的基团差异较小,是一种典型的酶法动力学拆分较为困难的风味化合物.本文分别在不同体系中比较了几种商品化脂肪酶和华根霉脂肪酶(RCL)催化酯化和水解反应对2-甲基丁酸及其酯的拆分,结果表明,RCL不仅在非水相中具有一定的选择性酯化能力,而且在水相中具有更强的选择性水解2-甲基丁酸乙酯的能力,在40℃下优先水解(S-型底物,反应10h后(R)-2-甲基丁酸乙酯的ee值为92.4%.进一步考察了温度对RCL催化酯化拆分与水解拆分的影响,结果表明,低温下反应的对映体选择性较高,在4℃下通过水解拆分获得的(R)-2-甲基丁酸乙酯的ee值町提高至95.0%.  相似文献   

10.
利用CRL脂肪酶选择性催化外消旋萘普生甲酯与玉米淀粉进行转酯化反应合成光学纯S-萘普生淀粉酯,同时达到拆分外消旋萘普生的目的.考察了有机溶剂、脂肪酶用量、底物浓度比、反应温度对酯化协同拆分反应的影响,结果表明在异辛烷中脂肪酶CRL可以催化S-萘普生甲酯与淀粉发生转酯化反应同时完成外消旋萘普生的拆分,并且在脂肪酶用量为10%、底物浓度比为1∶3、异辛烷用量为15 m L、反应温度为60℃的条件下反应6d,外消旋萘普生甲酯的转化率为42.5%,产物对映体过量值eep高达99.1%.  相似文献   

11.
Fourteen noncommercial preparations of microbial lipases were investigated with respect to their catalytic activity for hydrolysis and synthesis of ester bonds. Six of the lipases were derived from microorganisms that have not previously been described as lipase producers, and another four were characterized for the first time. The synthetic reactions were carried out in two solvents of different polarities (n-heptane and acetone) using a series of fatty acids and primary and secondary alcohols with different chain lengths. Under the culture conditions employed, Pseudomonas cepacia produced more active enzyme than the other microorganisms. The lipase preparations produced using Ovadendron sulphureo-ochraceum, Monascus mucoroides, Monascus sp., Fusarium oxysporum, Penicillium chrysogenum, Rhodotorula araucariae, Pseudomonas cepacia, Streptomyces halstedii, and Streptomyces sp. were the most efficient catalysts for hydrolysis at lipid-water interfaces. Enzyme preparations from P. cepacia, Streptomyces sp., S. halstedii, and R. araucariae were good biocatalysts for esterification in the polar medium (acetone). When the lipase preparations with the greatest activity for hydrolytic, reactions were excluded, regression analysis of the data for the hydrolytic and synthetic activities of the remaining lipase preparations yielded high multiple correllation coefficients for these reactions in both n-heptane and acetone (R=0.82 and 0.91, respectively).  相似文献   

12.
A short and convenient synthesis of 3'- and 5'-O-levulinyl-2'-deoxynucleosides has been developed from the corresponding 3',5'-di-O-levulinyl derivatives by regioselective enzymatic hydrolysis, avoiding several tedious chemical protection/deprotection steps. Thus, Candida antartica lipase B (CAL-B) was found to selectively hydrolyze the 5'-levulinate esters, furnishing 3'-O-levulinyl-2'-deoxynucleosides 3 in >80% isolated yields. On the other hand, immobilized Pseudomonas cepacia lipase (PSL-C) and Candida antarctica lipase A (CAL-A) exhibit the opposite selectivity toward the hydrolysis at the 3'-position, affording 5'-O-levulinyl derivatives 4 in >70% yields. A similar hydrolysis procedure was successfully extended to the synthesis of 3'- and 5'-O-levulinyl-protected 2'-O-alkylribonucleosides 7 and 8. This work demonstrates for the first time application of commercial CAL-B and PSL-C toward regioselective hydrolysis of levulinyl esters with excellent selectivity and yields. It is noteworthy that protected cytidine and adenosine base derivatives were not adequate substrates for the enzymatic hydrolysis with CAL-B, whereas PSL-C was able to accommodate protected bases during selective hydrolysis. In addition, we report an improved synthesis of dilevulinyl esters using a polymer-bound carbodiimide as a replacement for dicyclohexylcarbodiimide (DCC), thus considerably simplifying the workup for esterification reactions.  相似文献   

13.
Three microbial lipases have been used to deracemize trans-2-fluorocycloalkanols 2 both by hydrolysis of the corresponding acetates 3 or chloroacetates 4 and by esterification of the fluorohydrins 2 using vinyl acetate and vinyl chloroacetate, respectively. Pseudomonas cepacia lipase was the most selective for the six- and the seven-membered-ring compounds, while the lipase from Candida rugosa was most useful for the eight-membered-ring compounds. Both lipases transform the (R)-enantiomers preferentially. In contrast the lipase from Candida antarctica hydrolyzed the esters of trans-2-fluorocyclohexanol 2a and esterified the fluorohydrin itself with very low enantiopreference for the (R)-isomers. The seven- and the eight-membered ring esters and the corresponding fluorohydrins were also transformed with low, but reverse, enantioselectivity.  相似文献   

14.
Lipase Candida sp. 99–125 has been proved to be quite effective in catalyzing organic synthesis reactions and is much cheaper than commercial lipases. Mesoporous silicates are attractive materials for the immobilization of enzymes due to their unique structures. The present research designed a hydrophobic silicate with uniform pore size suitable for the comfort of lipase Candida sp. 99–125 for improving its activity and stability. The resulting immobilized lipase (LP@PMO) by adsorption was employed to catalyze hydrolysis, esterification, and transesterification reactions, and the performances were compared with the lipase immobilized on hydrophilic silicate (LP@PMS) and native lipase. The LP@PMO showed as high activity as that of native lipase in hydrolysis and much increased catalytic activity and reusability in the reactions for biodiesel production. Besides, LP@PMO also possessed better organic stability. Such results demonstrate that immobilization of lipase onto hydrophobic supports is a promising strategy to fabricate highly active and stable biocatalysts for applications.  相似文献   

15.
脂肪酶催化一步酯化协同拆分合成S-萘普生淀粉酯前药   总被引:1,自引:1,他引:0  
利用CRL脂肪酶选择性催化外消旋萘普生甲酯与玉米淀粉进行转酯化反应合成光学纯S-萘普生淀粉酯前药,同时达到拆分外消旋萘普生的目的。考察了有机溶剂、脂肪酶用量、底物浓度比、反应温度对酯化协同拆分反应的影响,结果表明在异辛烷中脂肪酶CRL可以催化S-萘普生甲酯与淀粉发生转酯化反应同时完成外消旋萘普生的拆分,并且在脂肪酶用量为10%、底物浓度比为1:3、异辛烷用量为15mL、反应温度为60℃的条件下反应6d,外消旋萘普生甲酯的转化率为27.2%,产物对应体过量值eep高达99.4%可以作为萘普生的前药进行应用。  相似文献   

16.
An efficient synthesis of monoacylated 1alpha,25-dihydroxyvitamin D3 A-ring precursors 15, 16, 18, and 19 has been described through an enzymatic hydrolysis process. Candida antarctica A lipase (CAL-A) hydrolyzes the C-5 acetate ester in trans stereoisomers 9 and 13, with complete and high selectivity, respectively. In the case of cis isomers 11 and 14, Chromobacterium viscosum lipase (CVL) is the enzyme of choice, exhibiting opposite selectivity for these two enantiomers. This lipase selectively catalyzes the hydrolysis at the C-3 acetate in diester 11 and at C-5 position in diester 14. It is noteworthy that through a hydrolysis reaction CAL-A and CVL allow the synthesis of the four A-ring monoacetylated precursors of 1alpha,25-dihydroxyvitamin D3, precursors which are complementary to those obtained by the enzymatic acylation process. In addition, with excellent yield CVL selectively hydrolyzes the C-3 chloroacetate ester instead of the C-5 acetate in diester 22, a key intermediate in the synthesis of new A-ring modified 1alpha,25-dihydroxyvitamin D3 analogues.  相似文献   

17.
Seven food grade commercially available lipases were immobilized by covalent binding on polysiloxane–polyvinyl alcohol (POS-PVA) hybrid composite and screened to mediate reactions of industrial interest. The synthesis of butyl butyrate and the interesterification of tripalmitin with triolein were chosen as model reactions. The highest esterification activity (240.63 μM/g min) was achieved by Candida rugosa lipase, while the highest interesterification yield (31%, in 72 h) was achieved by lipase from Rhizopus oryzae, with the production of about 15 mM of the triglycerides C50 and C52. This lipase also showed a good performance in butyl butyrate synthesis, with an esterification activity of 171.14 μM/g min. The results demonstrated the feasibility of using lipases from C. rugosa for esterification and R. oryzae lipase for both esterification and interesterification reactions.  相似文献   

18.
《Comptes Rendus Chimie》2016,19(8):971-977
We have studied the effects of the acyl moiety on the enantioselectivity of three lipases: Candida antarctica B, Pseudomonas cepacia and Candida cylindracea, frequently used in kinetic resolutions by acylation or hydrolysis. The size of the acyl group was examined using various enol esters during the transesterification of 1-phenylethanol and the hydrolysis of the corresponding phenylethylesters. C. antarctica-B lipase showed the highest selectivity in the transesterification of 1-phenylethanol with isopropenyl and vinyl acetate, vinyl decanoate, vinyl laurate, (E > 200). The esters 1-phenyl -ethyl-acetate, decanoate and laurate are also hydrolyzed with high selectivities (E > 150) with CAL-B. The results can be correlated to the three-dimensional form of each lipase. The effect of the migrating group on the reactivity and selectivity of the lipases are discussed for both reactions.  相似文献   

19.
Purified lipases (via interfacial activation on hydrophobic supports) from different microbial extracts have been evaluated in the regio-selective hydrolysis of peracetylated sugars (peracetylated glucose, ribose and sucrose). Among the enzymes tested, lipases from Candida rugosa (CRL) and from Pseudomonas fluorescens (PFL) exhibited the best properties in these reactions.Then, we have prepared two different immobilized lipase preparations obtained by interfacial activation on hydrophobic supports or by covalent attachment on glutaraldehyde agarose. Interfacially activated lipases exhibited a higher activity than covalently attached enzymes (even by a 100-fold factor), giving the higher yields of mono deacetylated sugars (in some instances by more than a threefold factor) in short reaction times. In the hydrolysis of 1,2,3,5-tetra-O-acetyl-β-d-ribofuranose catalyzed by PFL adsorbed on octyl agarosa, hydrolyzed mainly the 3 position (30% of yield) while the CRL gave the hydrolysis only in position 5 (about 50% of yield).Depending on the enzyme immobilized preparation, we have been able also to obtain selective hydrolysis of 1,2,3,4,6-penta-O-acetyl-α/β-d-glucopyranose obtaining a free hydroxyl group in position 1, 4 or 6. Moreover, selective hydrolysis in the 4′ position of peracetylated sucrose was achieved when the hydrolysis is performed with CRL immobilized on octyl-agarose (yield was 77%).  相似文献   

20.
Microwave irradiation increased enzymatic affinity and selectivity of supported lipases in esterification and transesterification reactions carried out in dry media and at temperature near 100 degrees C.  相似文献   

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