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首页> 外文期刊>Bioresources and Bioprocessing >Biocatalytic synthesis of ethyl (R)-2-hydroxy-4-phenylbutyrate with a newly isolated Rhodotorula mucilaginosa CCZU-G5 in an aqueous/organic biphasic system
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Biocatalytic synthesis of ethyl (R)-2-hydroxy-4-phenylbutyrate with a newly isolated Rhodotorula mucilaginosa CCZU-G5 in an aqueous/organic biphasic system

机译:水/有机双相体系中新分离的粘粘红毛杜鹃CCZU-G5的生物催化合成(R)-2-羟基-4-苯基丁酸乙酯

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Background: Optically active ethyl (R)-2-hydroxy-4-phenylbutyrate [(R)-HPBE] is an important chiral building block for the synthesis of angiotensin-converting enzyme (ACE) inhibitors. It is reported that microbial or enzymatic reduction of ethyl 2-oxo-4-phenyl-butyrate (OPBE) is an attractive way to produce optically active (R)-HPBE. Results: The asymmetric reduction of OPBE to synthesize optically active (R)-HPBE with a newly isolated Rhodotorula mucilaginosa CCZU-G5 as catalyst was investigated in an aqueous/organic solvent biphasic system. R. mucilaginosa CCZU-G5 showed a good tolerance (the metabolic activity retention 80%) in the biphasic system composed of aqueous buffer and organic solvent with a log P value over 4.6. Isooctane was found to be the most suitable organic phase solvent. In the biphasic system, the volumetric phase ratio, OPBE concentration, cell concentration, reaction temperature, and buffer pH were optimized. Under the optimum conditions (volumetric phase ratio: 1/1, OPBE concentration: 100 mM, cell concentration: 0.075 g/mL, pH 7.5, 35℃), the final yield and the optical purity of (R)-HPBE reached 98.3% and 99.0% enantiomeric excess (ee), respectively, after 12 h of reaction. Conclusions: All the results suggested that the OPBE-reducing enzymes in a newly isolated R. mucilaginosa cells possess highly stable and excellent stereoselectivity by establishing an aqueous/organic biphasic system.
机译:背景:旋光的(R)-2-羟基-4-苯基丁酸乙酯[(R)-HPBE]是合成血管紧张素转化酶(ACE)抑制剂的重要手性构件。据报道,微生物或酶促还原2-氧代-4-苯基丁酸乙酯(OPBE)是生产光学活性(R)-HPBE的一种有吸引力的方法。结果:在水/有机溶剂双相体系中,研究了使用新分离的粘枝红假单胞菌CCZU-G5作为催化剂的OPBE的不对称还原,以合成旋光(R)-HPBE。 R. mucilaginosa CCZU-G5在由水缓冲液和有机溶剂组成的双相系统中显示出良好的耐受性(代谢活性保留> 80%),log P值超过4.6。发现异辛烷是最合适的有机相溶剂。在双相系统中,优化了体积相比,OPBE浓度,细胞浓度,反应温度和缓冲液pH。在最佳条件下(体积相比:1/1,OPBE浓度:100 mM,细胞浓度:0.075 g / mL,pH 7.5,35℃),(R)-HPBE的最终收率和光学纯度达到98.3%反应12小时后,对映体过量(ee)和> 99.0%。结论:所有结果表明,通过建立水/有机双相系统,新分离的粘液红单胞菌细胞中的OPBE还原酶具有高度稳定和优异的立体选择性。

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