scholarly journals Production, purification and physicochemical characterization of D-xylose/glucose isomerase from Escherichia coli strain BL21

3 Biotech ◽  
2020 ◽  
Vol 10 (2) ◽  
Author(s):  
Bilqees Fatima ◽  
Muhammad Mohsin Javed
2006 ◽  
Vol 148 (2) ◽  
pp. 239-245 ◽  
Author(s):  
Hongyan An ◽  
John M Fairbrother ◽  
J.Daniel Dubreuil ◽  
Josée Harel
Keyword(s):  

2010 ◽  
Vol 76 (15) ◽  
pp. 5290-5291 ◽  
Author(s):  
Lydia V. Rump ◽  
Lothar Beutin ◽  
Markus Fischer ◽  
Peter C. H. Feng

ABSTRACT Shiga-toxigenic Escherichia coli strains that are O rough:H7 due to gne::IS629 were thought to be rare and to have unknown pathogenic potential. Recently, an O rough:H7 strain caused by gne::IS629 was isolated from a hemorrhagic colitis patient, suggesting that these strains are pathogenic and may not be as rare as anticipated.


2019 ◽  
Vol 74 (7) ◽  
pp. 1807-1811 ◽  
Author(s):  
Ruichao Li ◽  
Kaichao Chen ◽  
Edward Wai-Chi Chan ◽  
Sheng Chen

2021 ◽  
Vol 9 (2) ◽  
pp. 23-29
Author(s):  
Nubli Shuhaimi ◽  
M. Abd AbdEl-Mongy ◽  
N.A. Shamaan ◽  
Chaing Hin Lee ◽  
M.A. Syed ◽  
...  

Molybdenum is a pollutant that shows toxicity to spermatogenesis while polyethylene glycols (PEG) are used predominantly in detergents. The pollution of molybdenum and PEGs are reported worldwide. We have isolated ten molybdenum-reducing bacterial isolates from soil that can reduce molybdenum (sodium molybdate) into the colloidal molybdenum blue (Mo-blue). The screening of these isolates for PEG-degrading ability showed that one isolate was capable to utilize PEG 200, 300 and 600 for optimal conditions were pHs between 5.5 and 8.0, temperatures between 30 and 37 oC, phosphate at 5 mM, molybdate between 10 and 30 mM, and glucose as the electron donor. Biochemical analysis of the bacterium identifies it as Escherichia coli strain Amr-13. Growth was best supported by all PEGs at concentrations of between 600 and 1,000 mg/L. A complete degradation for PEG 200 and PEG 300 at 1,000 mg/L was observed on day four and five, respectively, while nearly 90% of PEG 600 was degraded on day six. The growth of this bacterium on these PEGs was modelled using the modified Gompertz model, and produced growth parameters values, which were maximum specific growth rates of 1.51, 1.45 and 1.18 d-1 and lag periods of 0.53, 0.87 and 1.02 day for PEG 200, PEG 300 and PEG 600, respectively. PEG 200 was the most preferred substrate for this bacterium, while PEG 600 was the least preferred.


2020 ◽  
Vol 8 (6) ◽  
pp. 893 ◽  
Author(s):  
Daniel Jaén-Luchoro ◽  
Antonio Busquets ◽  
Roger Karlsson ◽  
Francisco Salvà-Serra ◽  
Christina Åhrén ◽  
...  

Escherichia coli strain CCUG 78773 is a virulent extended-spectrum β-lactamase (ESBL)-producing ST131-O25b type strain isolated during an outbreak at a regional university hospital. The complete and closed genome sequence, comprising one chromosome (5,076,638 bp) and six plasmids (1718–161,372 bp), is presented. Characterization of the genomic features detected the presence of 59 potential antibiotic resistance factors, including three prevalent β-lactamases. Several virulence associated elements were determined, mainly related with adherence, invasion, biofilm formation and antiphagocytosis. Twenty-eight putative type II toxin-antitoxin systems were found. The plasmids were characterized, through in silico analyses, confirming the two β-lactamase-encoding plasmids to be conjugative, while the remaining plasmids were mobilizable. BLAST analysis of the plasmid sequences showed high similarity with plasmids in E. coli from around the world. Expression of many of the described virulence and AMR factors was confirmed by proteomic analyses, using bottom-up, liquid chromatography-tandem mass spectrometry (LC-MS/MS). The detailed characterization of E. coli strain CCUG 78773 provides a reference for the relevance of genetic elements, as well as the characterization of antibiotic resistance and the spread of bacteria harboring ESBL genes in the hospital environment.


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