期刊文献+

产芳香腈水解酶的恶臭假单胞菌Pseudomonas putida CGMCC3830的筛选、鉴定及发酵优化(英文) 被引量:4

Screening,identification and culture optimization of a newly isolated aromatic nitrilase-producing bacterium–Pseudomonas putida CGMCC3830
原文传递
导出
摘要 近年来微生物腈水解酶水解腈类化合物制备有机酸已逐步受到关注。本研究分离到一株表现出较高腈水解酶活力的细菌菌株,通过形态学、生理生化实验以及16S rRNA基因序列分析将其鉴定为恶臭假单胞菌Pseudomonas putida CGMCC3830。结合单因素及响应面法对该菌株产腈水解酶的发酵条件进行了优化,获得最适培养条件为:甘油13.54 g/L,胰蛋白胨11.59 g/L,酵母粉5.21 g/L,KH2PO4 1 g/L,NaCl 1 g/L,脲1 g/L,初始pH 6.0及培养温度30℃。通过优化,酶活由2.02 U/mL提升至36.12 U/mL。对该菌株底物特异性的考察结果表明,恶臭假单胞菌腈水解酶对芳香族腈类化合物具有较高的水解活力。将其应用于烟酸的生物合成中,2 mg/mL游离细胞能90 min内将20.8 g/L 3-氰基吡啶彻底转化,制备得到相应烟酸。这些结果表明恶臭假单胞菌P.putida CGMCC3830在烟酸的规模化生产中具有一定的应用潜力。 Microbial nitrilases have attracted increasing attention in nitrile hydrolysis for carboxylic acid production in recent years. A bacterium with nitrilase activity was isolated and identified as Pseudomonas putida CGMCC3830 based on its morphology, physiological and biochemical characteristics, as well as 16S rRNA gene sequence. The nitrilase production was optimized by varying culture conditions using the one-factor-at-a-time method and response surface methodology. Glycerol 13.54 g/L, tryptone 11.59 g/L, yeast extract 5.21 g/L, KH2PO4 1 g/L, NaC1 1 g/L, urea 1 g/L, initial pH 6.0 and culture temperature 30℃ were proved to be the optimal culture conditions. It resulted in the maximal nitrilase production of 36.12 U/mL from 2.02 U/mL. Investigations on substrate specificity demonstrate P. putida nitrilase preferentially hydrolyze aromatic nitriles. When applied in nicotinic acid synthesis, 2 mg/mL P. putida cells completely hydrolyzed 20.8 g/L 3-cyanopyridine into nicotinic acid in 90 min. The results indicated P. putida CGMCC3830 displayed potential for industrial production of nicotinic acid.
出处 《生物工程学报》 CAS CSCD 北大核心 2014年第3期412-424,共13页 Chinese Journal of Biotechnology
基金 National Natural Science Foundation of China(No.21206055) National High Technology Research and Development Program of China(863 Program)(No.2011AA02A211)~~
关键词 腈水解酶 恶臭假单胞菌 3-氰基吡啶 烟酸 发酵优化 nitrilase, Pseudomonas putida, 3-cyanopyridine, nicotinic acid, optimization
  • 相关文献

参考文献33

  • 1Schmid A, Dordick JS, Hauer B, et al. Industrial biocatalysis today and tomorrow. Nature, 2001, 409: 258-266.
  • 2Tao J, Xu JH. Biocatalysis in development of green pharmaceutical processes. Curr Opin Chem Biol, 2009, 13(1): 43-50.
  • 3Bornscheuer UT, Huisman GW, Kazlauskas RJ, et al. Engineering the third wave of biocatalysis. Nature, 2012, 485: 185-194.
  • 4Thuku RN, Brady D, Benedik M J, et al. Microbial nitrilases: versatile, spiral forming industrial enzymes. J Appl Microbiol, 2009, 106(3): 703-727.
  • 5Sharma NN, Sharma M, Bhalla TC. An improved nitrilase mediated bioprocess for synthesis of nicotinic acid from 3-cyanopyridine with hyperinduced Nocardia globerula NHB-2. J Ind Microbiol Biotechnol, 2011, 38(9): 1235-1243.
  • 6Martinkova L, Vejvoda V, Kaplan O, et al. Fungal nitrilases as biocatalysts: recent developments. Biotechnol Adv, 2009, 27(6): 661-670.
  • 7Velankar H, Clarke KG, Preez R, et al. Developments in nitrile and amide biotransformation processes. Trends Biotechnol, 2010, 28(11): 561-569.
  • 8Bhalla TC, Miura A, Wakamoto A, et al. Asymmetric hydrolysis of α-aminonitriles to optically active amino acids by a nitrilase of Rhodococcus rhodochrous PA-34. Appl Microbiol Biotechnol, 1992, 37(2): 184-190.
  • 9Brady D, Beeton A, Zeevaart J, et al. Characterization of nitrilase and nitrile hydratase biocatalytic systems. Appl Microbiol Biotechnol, 2004, 64(1): 76-85.
  • 10Sharma N, Sharma M, Bhalla T. Nocardia globerula NHB-2 nitrilase catalysed biotransformation of 4-cyanopyridine to isonicotinic acid. AMB Express, 2012, 2: 25.

同被引文献34

  • 1罗晖,王铁钢,于慧敏,杨慧芬,沈忠耀.Rhodococcus rhodochrous tg1-A6腈水解酶的表达和催化研究[J].现代化工,2006,26(z2):109-111. 被引量:5
  • 2徐建妙,郑裕国,沈寅初.腈水解酶的来源、结构、作用机制及其应用[J].微生物学通报,2005,32(5):141-146. 被引量:22
  • 3李艳云,尹振晏,宫彩红.烟酸的研究进展[J].北京石油化工学院学报,2006,14(1):59-64. 被引量:24
  • 4王铁钢,罗晖,朱燕勤,于慧敏,杨慧芬,沈忠耀.气相色谱法快速定量检测丙烯腈的生物催化产物[J].分析试验室,2007,26(1):54-57. 被引量:7
  • 5玄光善,王洪涛,吴效楠,姜皓然.微生物法生产丙烯酸的研究进展[J].生物技术,2007,17(2):89-92. 被引量:4
  • 6Gong J S,Lu Z M, Li H, et al. Nitrilases in nitrile biocatalysis :recent progress and forthcoming research [J]. Microbial Cell Factories,2012,11 : 142-159.
  • 7Banerjee A ,Kaul P,Banerjee U C. Purification and characterization of an enantioselective arylacetonitrilase from Pseudomonas putida[J]. Archives of Microbiology, 2006,184 (6) : 407-418.
  • 8Zheng Y G,Chen J,Liu Z Q,et al. Isolation,identification and characterization of Bacillus subtili. ZJB-063,a versatile nitrile- converting bacterium[J]. Applied Microbiology and Biotechnology, 2008,77 (5) : 985-993.
  • 9Kaplan O,Vejvoda V,Plihal O,et al. Purification and characterization of a nitrilase from Aspergillus niger K10 [J]. Applied Microbiology and Bioteehnology, 2006,73 (3) : 567-575.
  • 10Wu Y,Gong J S,Lu Z M,et al. Isolation and characterization of Gibberella intermedia CA3-1,a novel and versatile nitrilase- producing fungus[J]. Journal of Basic Microbiology, 2013,53 ( 11 ) : 934-941.

引证文献4

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部