Javascript must be enabled to continue!
WITHDRAWN: Evaluating the Five Escherichia coli Derivative Strains as Platform for Arginine Deiminase Overproduction
View through CrossRef
Abstract
Escherichia coli is one of the most preferred host microorganisms for the production of recombinant proteins due to its well-characterized genome, availability of various expression vectors and host strains. Choosing a proper host strain for the overproduction of a desired recombinant protein is very important because of the diversity of genetically modified expression strains. This study attempted to evaluate the five host strains including BL21 (DE3), Rosetta (DE3), DH5α, XL1-BLUE and SHuffle in terms of arginine deiminase (ADI) production and enzyme activity. Arginine deiminase (ADI) was chosen a bacterial enzyme which degrades L-arginine. It is effective in treatment of some types of human cancers like melanoma and hepatocellular carcinoma (HCC) which are arginine-auxotrophic. Five mentioned E. coli strains were cultivated. The pET-3a was used as the expression vector. The competent E. coli cells were obtained through CaCl 2 method. It was then transformed with the construct of pET3a-ADI using heat shock strategy. The ADI production levels were examined by 10% SDS-PAGE analysis. The ability of host strains for expression of the requested recombinant protein was compared. The enzymatic activity of the obtained recombinant ADI from each studied strain was assessed by a colorimetric 96-well microtiter plate assay. All the five strains exhibited a significant band at 46 kDa. BL21 (DE3) produced the highest amount of ADI protein followed by Rosetta (DE3). The following activity assay showed that ADI from BL21 (DE3) and Rosetta (DE3) had the most activity. There are some genetic and metabolic differences among the various E. coli strains, leading to differences in the amount of recombinant protein production. The results of this study can be used for the efficacy evaluation of the five studied strains for the production of similar pharmaceutical enzymes. The strains also could be analyzed in terms of proteomics.
Springer Science and Business Media LLC
Title: WITHDRAWN: Evaluating the Five Escherichia coli Derivative Strains as Platform for Arginine Deiminase Overproduction
Description:
Abstract
Escherichia coli is one of the most preferred host microorganisms for the production of recombinant proteins due to its well-characterized genome, availability of various expression vectors and host strains.
Choosing a proper host strain for the overproduction of a desired recombinant protein is very important because of the diversity of genetically modified expression strains.
This study attempted to evaluate the five host strains including BL21 (DE3), Rosetta (DE3), DH5α, XL1-BLUE and SHuffle in terms of arginine deiminase (ADI) production and enzyme activity.
Arginine deiminase (ADI) was chosen a bacterial enzyme which degrades L-arginine.
It is effective in treatment of some types of human cancers like melanoma and hepatocellular carcinoma (HCC) which are arginine-auxotrophic.
Five mentioned E.
coli strains were cultivated.
The pET-3a was used as the expression vector.
The competent E.
coli cells were obtained through CaCl 2 method.
It was then transformed with the construct of pET3a-ADI using heat shock strategy.
The ADI production levels were examined by 10% SDS-PAGE analysis.
The ability of host strains for expression of the requested recombinant protein was compared.
The enzymatic activity of the obtained recombinant ADI from each studied strain was assessed by a colorimetric 96-well microtiter plate assay.
All the five strains exhibited a significant band at 46 kDa.
BL21 (DE3) produced the highest amount of ADI protein followed by Rosetta (DE3).
The following activity assay showed that ADI from BL21 (DE3) and Rosetta (DE3) had the most activity.
There are some genetic and metabolic differences among the various E.
coli strains, leading to differences in the amount of recombinant protein production.
The results of this study can be used for the efficacy evaluation of the five studied strains for the production of similar pharmaceutical enzymes.
The strains also could be analyzed in terms of proteomics.
Related Results
Arginine metabolism in lactic streptococci
Arginine metabolism in lactic streptococci
Streptococcus lactis metabolizes arginine via the arginine deiminase pathway producing ornithine, ammonia, carbon dioxide, and ATP. In the four strains of S. lactis examined, the s...
Leishmania
parasite arginine deprivation response pathway influences the host macrophage lysosomal arginine sensing machinery
Leishmania
parasite arginine deprivation response pathway influences the host macrophage lysosomal arginine sensing machinery
Abstract
Extensive interaction between the host and pathogen metabolic networks decidedly shapes the outcome of infection. Infection with
...
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Abstract
Introduction
Hospitals are high-risk environments for infections. Despite the global recognition of these pathogens, few studies compare microorganisms from community-acqu...
Pathogenicity Classification using Phylogenetic Analysis of Escherichia coli Strains
Pathogenicity Classification using Phylogenetic Analysis of Escherichia coli Strains
Escherichia coli (E. coli) is an adaptable gram-negative bacillus facultative an aerobic bacterium that belongs to the family of Enterobacteriaceae. It is well known to be a commen...
Modeling the response of Japanese quail to arginine intake
Modeling the response of Japanese quail to arginine intake
Background
Understanding how Japanese quails respond to arginine intake has been an objective that previous studies have not fulfilled. The main responses to be quan...
Molecular Characterization and Antimicrobial Resistance of Pathogenic Escherichia coli Strains in Children from Wolaita Sodo, Southern Ethiopia
Molecular Characterization and Antimicrobial Resistance of Pathogenic Escherichia coli Strains in Children from Wolaita Sodo, Southern Ethiopia
Introduction. Pathogenic Escherichia coli strains cause diarrheal infection in children due to their virulence factors. A nonanalytical observational study followed by a purposive ...
Arginine Signaling and Cancer Metabolism
Arginine Signaling and Cancer Metabolism
Arginine is an amino acid critically involved in multiple cellular processes including the syntheses of nitric oxide and polyamines, and is a direct activator of mTOR, a nutrient-s...
AVIAN PATHOGENIC <i>ESCHERICHIA COLI</i> IN DISEASED CHICKENS FROM COMMERCIAL FARMS IN NORTHWEST, NIGERIA
AVIAN PATHOGENIC <i>ESCHERICHIA COLI</i> IN DISEASED CHICKENS FROM COMMERCIAL FARMS IN NORTHWEST, NIGERIA
Avian colibacillosis, which is caused by avian pathogenic Escherichia coli (APEC), is a major bacterial disease that affects birds of all ages worldwide, causing significant econom...

