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Isolation and characterization of a newly isolated Pseudomonas mutant for protease production

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TLDR
In this paper, a potent bacterium for extracellular protease production was isolated from local soil and identified as Pseudomonas sp. RAJR 044, a mutant of this strain JNGR 242 with protease productivity 2.5 fold higher was obtained by ultraviolet irradiation under experimentally optimized conditions of pH 7.0, temperature of 34oC, inoculum volume of 1.0 mL and incubation time of 24 hours.
Abstract
A potent bacterium for extracellular protease production was isolated from local soil and identified as Pseudomonas sp. RAJR 044. A mutant of this strain JNGR 242 with protease productivity 2.5 fold higher was obtained by ultraviolet irradiation under experimentally optimized conditions of pH 7.0, temperature of 34oC, inoculum volume of 1.0 mL and incubation time of 24 hours. Comparative analysis of the chemical characteristics i.e. assimilation of carbon and nitrogen sources were also carried out. Maximum growth of the mutant strain in 2% gelatin agar plate was obtained in presence of dextrose (2%), maltose (2%), ammonium sulfate (2%) and potassium nitrate (2%) whereas, that of the parent strain was found in sucrose (2%) and ammonium nitrate (2%). The purified proteases from both the strains (parent and mutant) appeared as single homogeneous bands corresponding to 14.4 kDa molecular weight on SDS-PAGE. On studying the kinetic properties of both strains it was observed that the rate of casein hydrolysis was maximum at pH 8.0 and 7.0 and temperatures 45o C and 60o C for the parent and mutant strains respectively. It was also observed that both the extracellular proteases were inhibited by a serine protease inhibitor i.e. PMSF at 2mM concentration.

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Hyper-production of Alkaline Protease by Mutagenic Treatmentof Bacillus subtilis M-9 using Agroindustrial Wastes in SubmergedFermentation

TL;DR: Alkaline protease production and stability of biocatalyst were investigated in both free and immobilized cells and it was concluded from the study, immobilization cells were more efficient for enzyme production then free cells when used repeatedly.
Journal ArticleDOI

Effect of Different Rennet Type on Physico-Chemical Properties and Bitterness in White Cheese

TL;DR: In this article, the changes in physico- chemical properties, proteolysis and bitterness of white cheeses made from animal-calf rennet (A) and microbial rennet from Rhizomucor miehei (M) were investigated during a 90 day ripening period.
Journal ArticleDOI

Production and some properties of crude alkaline proteases of indigenous Central Amazonian rhizobia strains

TL;DR: Two rhizobia strains isolated from soils of the Central Amazonian floodplain produced appreciable quantities of crude alkaline protease extracts with inexpensive carbon and nitrogen sources, which were optimally active at pH 9.0-11.0.

Isolation of Proteolytic Bacteria and Characterization of their Proteolytic Activity

TL;DR: Findings clearly explain that proteolytic activity was hindered by increase in temperature to 55 o C and proteolyic activity was decreased to around 90% in both the cultures.
References
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Journal ArticleDOI

Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4

TL;DR: Using an improved method of gel electrophoresis, many hitherto unknown proteins have been found in bacteriophage T4 and some of these have been identified with specific gene products.
Journal Article

Cleavage of structural proteins during the assemble of the head of bacterio-phage T4

U. K. Laemmli
- 01 Jan 1970 - 
TL;DR: Using an improved method of gel electrophoresis, many hitherto unknown proteins have been found in bacteriophage T4 and some of these have been identified with specific gene products as mentioned in this paper.
Journal ArticleDOI

Bacterial Biocatalysts: Molecular Biology, Three-Dimensional Structures, and Biotechnological Applications of Lipases

TL;DR: Three-dimensional structures of bacterial lipases were solved to understand the catalytic mechanism of lipase reactions and will enable researchers to tailor new lipases for biotechnological applications.
Journal ArticleDOI

Production of extremely thermostable alkaline protease from Bacillus sp. no. AH-101

TL;DR: Alkalophilic Bacillus sp.
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