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在实验室规模的生物反应器中由克拉维链霉菌生产全细胞脂肪酶及其作为有机介质合成生物催化剂的首次评估。

Production of Whole-Cell Lipase from Streptomyces clavuligerus in a Bench-Scale Bioreactor and Its First Evaluation as Biocatalyst for Synthesis in Organic Medium.

作者信息

Dos Santos Jéssica Bravin Carmello, da Silva Cruz Rosineide Gomes, Tardioli Paulo Waldir

机构信息

Programa de Pós-Graduação em Engenharia Química, Universidade Federal de São Carlos, Rod. Washington Luiz, km 235, São Carlos, SP, 13565-905, Brazil.

Departamento de Engenharia Química, Universidade Federal de São Carlos, Rod. Washington Luiz, km 235, São Carlos, SP, 13565-905, Brazil.

出版信息

Appl Biochem Biotechnol. 2017 Sep;183(1):218-240. doi: 10.1007/s12010-017-2440-5. Epub 2017 Feb 24.

DOI:10.1007/s12010-017-2440-5
PMID:28236191
Abstract

This work evaluated a wild-type Streptomyces clavuligerus strain as a whole-cell lipase (Sc-WCL) producer by submerged fermentation. In an orbital shaker, lipase hydrolytic activity of 3000 U L, measured at pH 9.0 and 37 °C by using p-nitrophenyl palmitate as substrate, was achieved after 36 h fermentation using glycerol-free production medium in a baffled Erlenmeyer flask at 28 °C and pH 6.8. Maximum productivity of 52.5 U L h was achieved after 24 h in bioreactor using glycerol-free production medium at pH 6.8 and 28 °C, with agitation at 400 rpm and aeration at 1 vvm. Sc-WCL was shown to be more active at 60 °C and pH 10.7, while higher activity retention was observed at 30-40 °C after 1 h incubation at pH 10. Sc-WCL showed to have potential to be used as biocatalyst in hydrolysis and esterification reactions. In the hydrolysis of p-nitrophenyl palmitate, lyophilized Sc-WCL expressed a hydrolytic activity (330 units g solid, measured at 37 °C and pH 9.0) around 100-fold higher than the ones declared by a supplier of lyophilized powders of mixtures of intracellular lipases from Thermus thermophiles and Thermus flavus (≥3.0 units g solid, measured at 65 °C and pH 8.0). In the synthesis of butyl butyrate in anhydrous medium, 85% ester conversion was achieved at 37 °C after 8 h reaction. Thus, Sc-WCL showed to be a promising biocatalyst because it is cheaper than the isolated and purified lipases.

摘要

本研究通过深层发酵评估了野生型棒状链霉菌菌株作为全细胞脂肪酶(Sc-WCL)产生菌的性能。在28℃、pH 6.8的条件下,于装有挡板的锥形瓶中使用无甘油生产培养基进行36小时发酵后,在28℃、pH 6.8的条件下,使用无甘油生产培养基在生物反应器中培养24小时后,以对硝基苯基棕榈酸酯为底物,在pH 9.0和37℃下测得脂肪酶水解活性为3000 U/L。在pH 6.8和28℃下,使用无甘油生产培养基,搅拌速度为400 rpm,通气量为1 vvm,在生物反应器中培养24小时后,最大生产力达到52.5 U/(L·h)。Sc-WCL在60℃和pH 10.7时活性更高,而在pH 10下孵育1小时后,在30-40℃观察到更高的活性保留率。Sc-WCL显示出有潜力用作水解和酯化反应的生物催化剂。在对硝基苯基棕榈酸酯的水解反应中,冻干的Sc-WCL表现出的水解活性(在37℃和pH 9.0下测得为330单位/克固体)比嗜热栖热菌和黄栖热菌细胞内脂肪酶混合物冻干粉末供应商宣称的活性(在65℃和pH 8.0下测得≥3.0单位/克固体)高约100倍。在无水介质中丁酸丁酯的合成反应中,反应8小时后,在37℃下酯转化率达到85%。因此,Sc-WCL被证明是一种有前景的生物催化剂,因为它比分离纯化的脂肪酶更便宜。

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