Fast and economic immobilization methods described for non-commercial Pseudomonas lipases

被引:22
作者
Cesarini, Silvia [1 ]
Infanzon, Belen [1 ]
Pastor, F. I. Javier [1 ]
Diaz, Pilar [1 ]
机构
[1] Univ Barcelona, Dept Microbiol, E-08028 Barcelona, Spain
关键词
Pseudomonas; Lipase; Immobilization; Accurel; Celite; FAMEs; CANDIDA-RUGOSA LIPASE; BIODIESEL; OIL; POLYPROPYLENE; BIOCATALYSTS; ACTIVATION; SUNFLOWER; CLONING; CELITE; LIPC;
D O I
10.1186/1472-6750-14-27
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background: There is an increasing interest to seek new enzyme preparations for the development of new products derived from bioprocesses to obtain alternative bio-based materials. In this context, four non-commercial lipases from Pseudomonas species were prepared, immobilized on different low-cost supports, and examined for potential biotechnological applications. Results: To reduce costs of eventual scaling-up, the new lipases were obtained directly from crude cell extracts or from growth culture supernatants, and immobilized by simple adsorption on Accurel EP100, Accurel MP1000 and Celite (R) 545. The enzymes evaluated were LipA and LipC from Pseudomonas sp. 42A2, a thermostable mutant of LipC, and LipI. 3 from Pseudomonas CR611, which were produced in either homologous or heterologous hosts. Best immobilization results were obtained on Accurel EP100 for LipA and on Accurel MP1000 for LipC and its thermostable variant. Lip I. 3, requiring a refolding step, was poorly immobilized on all supports tested ( best results for Accurel MP1000). To test the behavior of immobilized lipases, they were assayed in triolein transesterification, where the best results were observed for lipases immobilized on Accurel MP1000. Conclusions: The suggested protocol does not require protein purification and uses crude enzymes immobilized by a fast adsorption technique on low-cost supports, which makes the method suitable for an eventual scaling up aimed at biotechnological applications. Therefore, a fast, simple and economic method for lipase preparation and immobilization has been set up. The low price of the supports tested and the simplicity of the procedure, skipping the tedious and expensive purification steps, will contribute to cost reduction in biotechnological lipase-catalyzed processes.
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页数:9
相关论文
共 39 条
[1]   Characterisation of a novel support for biocatalysis in supercritical carbon dioxide [J].
Al-Duri, B ;
Goddard, R ;
Bosley, J .
JOURNAL OF MOLECULAR CATALYSIS B-ENZYMATIC, 2001, 11 (4-6) :825-834
[2]   Lipase improvement: goals and strategies [J].
Bassegoda, Arnau ;
Cesarini, Silvia ;
Diaz, Pilar .
COMPUTATIONAL AND STRUCTURAL BIOTECHNOLOGY JOURNAL, 2012, 2 (03) :e201209005
[3]   Differential behaviour of Pseudomonas sp 42A2 LipC, a lipase showing greater versatility than its counterpart LipA [J].
Bofill, Cristina ;
Prim, Nuria ;
Mormeneo, Maria ;
Manresa, Angeles ;
Javier Pastor, F. I. ;
Diaz, Pilar .
BIOCHIMIE, 2010, 92 (03) :307-316
[4]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[5]  
Casas Godoy L, 2012, LIPASES PHOSPHOLIPAS, V861
[6]   Improvement of P. aeruginosa 42A2 lipase preparations for FAMEs production, both in immobilized and soluble form [J].
Cesarini, Silvia ;
Javier Pastor, F. I. ;
Diaz, Pilar .
JOURNAL OF MOLECULAR CATALYSIS B-ENZYMATIC, 2014, 99 :1-7
[7]   Exploring a new, soluble lipase for FAMEs production in water-containing systems using crude soybean oil as a feedstock [J].
Cesarini, Silvia ;
Diaz, Pilar ;
Nielsen, Per Munk .
PROCESS BIOCHEMISTRY, 2013, 48 (03) :484-487
[8]   A thermostable variant of P. aeruginosa cold-adapted LipC obtained by rational design and saturation mutagenesis [J].
Cesarini, Silvia ;
Bofill, Cristina ;
Javier Pastor, F. I. ;
Reetz, Manfred T. ;
Diaz, Pilar .
PROCESS BIOCHEMISTRY, 2012, 47 (12) :2064-2071
[9]   Optimum immobilization of Candida rugosa lipase on Celite by RSM [J].
Chang, Shuo-Fen ;
Chang, Shu-Wei ;
Yen, Yue-Horng ;
Shieh, Chwen-Jen .
APPLIED CLAY SCIENCE, 2007, 37 (1-2) :67-73
[10]   Biodiesel production from sunflower, soybean, and waste cooking oils by transesterification using lipase immobilized onto a novel microporous polymer [J].
Dizge, Nadir ;
Aydiner, Coskun ;
Imer, Derya Y. ;
Bayramoglu, Mahmut ;
Tanriseven, Aziz ;
Keskinlera, Buelent .
BIORESOURCE TECHNOLOGY, 2009, 100 (06) :1983-1991