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利用抗单萜类重组恶臭假单胞菌GS1对1,8-桉叶素进行高效羟基化反应。

Efficient hydroxylation of 1,8-cineole with monoterpenoid-resistant recombinant Pseudomonas putida GS1.

作者信息

Mi Jia, Schewe Hendrik, Buchhaupt Markus, Holtmann Dirk, Schrader Jens

机构信息

Biochemical Engineering, DECHEMA-Forschungsinstitut, Theodor-Heuss-Allee 25, 60486, Frankfurt, Germany.

出版信息

World J Microbiol Biotechnol. 2016 Jul;32(7):112. doi: 10.1007/s11274-016-2071-y. Epub 2016 Jun 4.

Abstract

In this work, monoterpenoid hydroxylation with Pseudomonas putida GS1 and KT2440 were investigated as host strains, and the cytochrome P450 monooxygenase CYP176A1 (P450cin) and its native redox partner cindoxin (CinC) from Citrobacter braakii were introduced in P. putida to catalyze the stereoselective hydroxylation of 1,8-cineole to (1R)-6β-hydroxy-1,8-cineole. Growth experiments in the presence of 1,8-cineole confirmed pseudomonads' superior resilience compared to E. coli. Whole-cell P. putida harboring P450cin with and without CinC were capable of hydroxylating 1,8-cineole, whereas coexpression of CinC has been shown to accelerate this bioconversion. Under the same conditions, P. putida GS1 produced more than twice the amount of heterologous P450cin and bioconversion product than P. putida KT2440. A concentration of 1.1 ± 0.1 g/L (1R)-6β-hydroxy-1,8-cineole was obtained within 55 h in shake flasks and 13.3 ± 1.9 g/L in 89 h in a bioreactor, the latter of which corresponds to a yield YP/S of 79 %. To the authors' knowledge, this is the highest product titer for a P450 based whole-cell monoterpene oxyfunctionalization reported so far. These results show that solvent-tolerant P. putida GS1 can be used as a highly efficient recombinant whole-cell biocatalyst for a P450 monooxygenase-based valorization of monoterpenoids.

摘要

在本研究中,以恶臭假单胞菌GS1和KT2440作为宿主菌株,对单萜类化合物的羟基化反应进行了研究,并将来自布氏柠檬酸杆菌的细胞色素P450单加氧酶CYP176A1(P450cin)及其天然氧化还原伴侣辛多oxin(CinC)引入恶臭假单胞菌中,以催化1,8-桉叶素立体选择性羟基化为(1R)-6β-羟基-1,8-桉叶素。在1,8-桉叶素存在下的生长实验证实,与大肠杆菌相比,假单胞菌具有更强的耐受性。携带P450cin且有或没有CinC的恶臭假单胞菌全细胞都能够使1,8-桉叶素羟基化,而CinC的共表达已被证明可加速这种生物转化。在相同条件下,恶臭假单胞菌GS1产生的异源P450cin和生物转化产物的量是恶臭假单胞菌KT2440的两倍多。在摇瓶中55小时内获得了浓度为1.1±0.1 g/L的(1R)-6β-羟基-1,8-桉叶素,在生物反应器中89小时内获得了13.3±1.9 g/L,后者对应的产物得率YP/S为79%。据作者所知,这是迄今为止报道的基于P450的全细胞单萜类氧化官能化反应的最高产物滴度。这些结果表明,耐溶剂的恶臭假单胞菌GS1可作为一种高效的重组全细胞生物催化剂,用于基于P450单加氧酶的单萜类化合物的增值利用。

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