Enhanced production and organic solvent stability of a protease from Brevibacillus laterosporus strain PAP04

被引:14
作者
Anbu, P. [1 ]
机构
[1] Inha Univ, Dept Biol Engn, Inchon, South Korea
关键词
Brevibacillus; Organic solvent-stable protease; Peptide synthesis; Solvent stability; RESPONSE-SURFACE METHODOLOGY; PSEUDOMONAS-AERUGINOSA PSEA; ALKALINE PROTEASE; TOLERANT-PROTEASE; BACILLUS SP; STABLE PROTEASE; SALT-TOLERANT; OPTIMIZATION; BACTERIUM; ENZYMES;
D O I
10.1590/1414-431X20165178
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
A bacterial strain (PAP04) isolated from cattle farm soil was shown to produce an extracellular, solvent-stable protease. Sequence analysis using 16S rRNA showed that this strain was highly homologous (99%) to Brevibacillus laterosporus. Growth conditions that optimize protease production in this strain were determined as maltose (carbon source), skim milk (nitrogen source), pH 7.0, 40 degrees C temperature, and 48 h incubation. Overall, conditions were optimized to yield a 5.91-fold higher production of protease compared to standard conditions. Furthermore, the stability of the enzyme in organic solvents was assessed by incubation for 2 weeks in solutions containing 50% concentration of various organic solvents. The enzyme retained activity in all tested solvents except ethanol; however, the protease activity was stimulated in benzene (74%) followed by acetone (63%) and chloroform (54.8%). In addition, the plate assay and zymography results also confirmed the stability of the PAP04 protease in various organic solvents. The organic solvent stability of this protease at high (50%) concentrations of solvents makes it an alternative catalyst for peptide synthesis in non-aqueous media.
引用
收藏
页数:7
相关论文
共 31 条
[21]   Purification and characterization of alkaline protease from a newly isolated haloalkaliphilic Bacillus sp. [J].
Patel, Rajesh K. ;
Dodia, Mital S. ;
Joshi, Rupal H. ;
Singh, Satya P. .
PROCESS BIOCHEMISTRY, 2006, 41 (09) :2002-2009
[22]   Optimization of alkaline protease production from Bacillus sp by response surface methodology [J].
Puri, S ;
Beg, QK ;
Gupta, R .
CURRENT MICROBIOLOGY, 2002, 44 (04) :286-290
[23]   An organic solvent-tolerant protease from Pseudomonas aeruginosa strain K -: Nutritional factors affecting protease production [J].
Rahman, RNZRA ;
Geok, LP ;
Basri, M ;
Salleh, AB .
ENZYME AND MICROBIAL TECHNOLOGY, 2005, 36 (5-6) :749-757
[24]   Industrial potential of organic solvent tolerant bacteria [J].
Sardessai, YN ;
Bhosle, S .
BIOTECHNOLOGY PROGRESS, 2004, 20 (03) :655-660
[25]  
Sardessai YN, 2002, CURR SCI INDIA, V82, P622
[26]   Optimization and partial characterization of culture conditions for the production of alkaline protease from Bacillus licheniformis P003 [J].
Sarker, Palash Kumar ;
Talukdar, Saimon Ahmad ;
Deb, Promita ;
Abu Sayem, S. M. ;
Mohsina, Kaniz .
SPRINGERPLUS, 2013, 2 :1-11
[27]  
Sevinc N., 2011, J BIOL ENV SCI, V5, P95
[28]   Screening and isolation of an organic solvent-tolerant bacterium for high-yield production of organic solvent-stable protease [J].
Tang, X. Y. ;
Pan, Y. ;
Li, S. ;
He, B. F. .
BIORESOURCE TECHNOLOGY, 2008, 99 (15) :7388-7392
[29]   Organic solvent tolerance of an alkaline protease from salt-tolerant alkaliphilic Streptomyces clavuligerus strain Mit-1 [J].
Thumar, Jignasha T. ;
Singh, Satya P. .
JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2009, 36 (02) :211-218
[30]  
Wipat A, 1999, FEMS MICROBIOL ECOL, V28, P1, DOI 10.1111/j.1574-6941.1999.tb00555.x