Results 231 to 240 of about 146,400 (289)
A plasmid-encoded detoxification system contributing to the survival of <i>Klebsiella oxytoca</i> complex bacteria in the presence of the isothiazolinone biocide MIT/CMIT. [PDF]
Hauf S +3 more
europepmc +1 more source
Diverse Horizontally Transferred Cellulose Biosynthesis Gene Clusters in <i>Escherichia coli</i> Strains. [PDF]
Hosseinpourlamardi S +5 more
europepmc +1 more source
On the role of choline in natural DNA transformation in <i>Streptococcus pneumoniae</i>. [PDF]
Peillard-Fiorente F +5 more
europepmc +1 more source
The relative value of operon predictions. [PDF]
For most organisms, computational operon predictions are the only source of genome-wide operon information. Operon prediction methods described in literature are based on (a combination of) the following five criteria: (i) intergenic distance, (ii ...
Oscar P Kuipers +2 more
exaly +3 more sources
Glucomannan utilization operon of Bacillus subtilis. [PDF]
This study characterizes the glucomannan utilization operon (gmuBACDREFG, formerly ydhMNOPQRST) of Bacillus subtilis. Transcription of the operon is induced by konjac glucomannan and requires the last mannanase gene (gmuG).
Yoshito Sadaie
exaly +2 more sources
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Proteins: Structure, Function, and Bioinformatics, 2006
AbstractOperons are clusters of genes that are transcribed as a single message, and regulated by the same gene expression machinery. They are found primarily in prokaryotic genomes. Because genes in the same operon are likely to have related functions, identification of the operon structure is potentially useful for assigning gene function.
Yongpan, Yan, John, Moult
openaire +2 more sources
AbstractOperons are clusters of genes that are transcribed as a single message, and regulated by the same gene expression machinery. They are found primarily in prokaryotic genomes. Because genes in the same operon are likely to have related functions, identification of the operon structure is potentially useful for assigning gene function.
Yongpan, Yan, John, Moult
openaire +2 more sources
Microbial & Comparative Genomics, 1998
To achieve coordinate gene regulation, yeast (Saccharomyces cerevisiae) appears to have exploited two distinct multifunction "operon" schemas: one, by concatenating originally separate functional domains into single polypeptides, and two, by linking opposite strand genes through common promoter elements.
X, Zhang, T F, Smith
openaire +2 more sources
To achieve coordinate gene regulation, yeast (Saccharomyces cerevisiae) appears to have exploited two distinct multifunction "operon" schemas: one, by concatenating originally separate functional domains into single polypeptides, and two, by linking opposite strand genes through common promoter elements.
X, Zhang, T F, Smith
openaire +2 more sources
2003
The major factor determining the different pathogenicities of meningococci and their close relatives, the gonococci, is the polysaccharide capsule. The capsule protects meningococci from complement attack and phagocytosis and is indispensable for systemic spread of the bacteria during sepsis and meningitis (1-5).
U, Vogel, H, Claus, M, Frosch
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The major factor determining the different pathogenicities of meningococci and their close relatives, the gonococci, is the polysaccharide capsule. The capsule protects meningococci from complement attack and phagocytosis and is indispensable for systemic spread of the bacteria during sepsis and meningitis (1-5).
U, Vogel, H, Claus, M, Frosch
openaire +2 more sources
Annual Review of Genetics, 1972
Simple observation of living organisms allows one to conclude that the entire genetic potential of any given cell is never expressed at any given moment. In bacteria this phenomenon is termed genetic adaptation and it occurs in two apparently contradictory ways. The synthesis of enzymes responsible for a catabolic process generally appears to be turned
openaire +2 more sources
Simple observation of living organisms allows one to conclude that the entire genetic potential of any given cell is never expressed at any given moment. In bacteria this phenomenon is termed genetic adaptation and it occurs in two apparently contradictory ways. The synthesis of enzymes responsible for a catabolic process generally appears to be turned
openaire +2 more sources
2013
The biosynthesis of histidine has been studied extensively in Salmonella enterica and Escherichia coli. In these enterobacteria, a single operon composed of eight adjacent genes encodes the complete set of histidine biosynthetic enzymes. Three (hisD, hisNB,andhisIE) of the eight genes encode bifunctional enzymes, while two (hisH and hisF) encode a ...
P. Alifano, FANI, RENATO
openaire +3 more sources
The biosynthesis of histidine has been studied extensively in Salmonella enterica and Escherichia coli. In these enterobacteria, a single operon composed of eight adjacent genes encodes the complete set of histidine biosynthetic enzymes. Three (hisD, hisNB,andhisIE) of the eight genes encode bifunctional enzymes, while two (hisH and hisF) encode a ...
P. Alifano, FANI, RENATO
openaire +3 more sources

