The synthetic rate of dipeptide catalyzed by organic solvent-stable protease from Pseudomonas aeruginosa PST-01 in the presence of water-soluble organic solvents

2000 ◽  
Vol 5 (3) ◽  
pp. 219-223 ◽  
Author(s):  
Hiroyasu Ogino ◽  
Yuichi Gemba ◽  
Mitsuharu Yamada ◽  
Michiko Shizuka ◽  
Masahiro Yasuda ◽  
...  
Extremophiles ◽  
2007 ◽  
Vol 11 (6) ◽  
pp. 809-817 ◽  
Author(s):  
Hiroyasu Ogino ◽  
Yoshikazu Katou ◽  
Rieko Akagi ◽  
Takashi Mimitsuka ◽  
Shinichi Hiroshima ◽  
...  

2001 ◽  
Vol 67 (2) ◽  
pp. 942-947 ◽  
Author(s):  
Hiroyasu Ogino ◽  
Takeshi Uchiho ◽  
Jyunko Yokoo ◽  
Reina Kobayashi ◽  
Rikiya Ichise ◽  
...  

ABSTRACT The PST-01 protease is secreted by the organic solvent-tolerant microorganism Pseudomonas aeruginosa PST-01 and is stable in the presence of various organic solvents. Therefore, the PST-01 strain and the PST-01 protease are very useful for fermentation and reactions in the presence of organic solvents, respectively. The organic solvent-stable PST-01 protease has two disulfide bonds (between Cys-30 and Cys-58 and between Cys-270 and Cys-297) in its molecule. Mutant PST-01 proteases in which one or both of the disulfide bonds were deleted were constructed by site-directed mutagenesis, and the effect of the disulfide bonds on the activity and the various stabilities was investigated. The disulfide bond between Cys-270 and Cys-297 in the PST-01 protease was found to be essential for its activity. The disulfide bond between Cys-30 and Cys-58 played an important role in the organic solvent stability of the PST-01 protease.


1999 ◽  
Vol 88 (5) ◽  
pp. 513-518 ◽  
Author(s):  
Hiroyasu Ogino ◽  
Mitsuharu Yamada ◽  
Fumitake Watanabe ◽  
Humiko Ichinose ◽  
Masahiro Yasuda ◽  
...  

2020 ◽  
Vol 86 (9) ◽  
Author(s):  
Alexander Bollinger ◽  
Rebecka Molitor ◽  
Stephan Thies ◽  
Rainhard Koch ◽  
Cristina Coscolín ◽  
...  

ABSTRACT Biocatalysis has emerged as an important tool in synthetic organic chemistry enabling the chemical industry to execute reactions with high regio- or enantioselectivity and under usually mild reaction conditions while avoiding toxic waste. Target substrates and products of reactions catalyzed by carboxylic ester hydrolases are often poorly water soluble and require organic solvents, whereas enzymes are evolved by nature to be active in cells, i.e., in aqueous rather than organic solvents. Therefore, biocatalysts that withstand organic solvents are urgently needed. Current strategies to identify such enzymes rely on laborious tests carried out by incubation in different organic solvents and determination of residual activity. Here, we describe a simple assay useful for screening large libraries of carboxylic ester hydrolases for resistance and activity in water-miscible organic solvents. We have screened a set of 26 enzymes, most of them identified in this study, with four different water-miscible organic solvents. The triglyceride tributyrin was used as a substrate, and fatty acids released by enzymatic hydrolysis were detected by a pH shift indicated by the indicator dye nitrazine yellow. With this strategy, we succeeded in identifying a novel highly organic-solvent-tolerant esterase from Pseudomonas aestusnigri. In addition, the newly identified enzymes were tested with sterically demanding substrates, which are common in pharmaceutical intermediates, and two enzymes from Alcanivorax borkumensis were identified which outcompeted the gold standard ester hydrolase CalB from Candida antarctica. IMPORTANCE Major challenges hampering biotechnological applications of esterases include the requirement to accept nonnatural and chemically demanding substrates and the tolerance of the enzymes toward organic solvents which are often required to solubilize such substrates. We describe here a high-throughput screening strategy to identify novel organic-solvent-tolerant carboxylic ester hydrolases (CEs). Among these enzymes, CEs active against water-insoluble bulky substrates were identified. Our results thus contribute to fostering the identification and biotechnological application of CEs.


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