scholarly article | Q13442814 |
P50 | author | Stephen H. Leppla | Q59127270 |
P2093 | author name string | Inka Sastalla | |
Andrea Keane-Myers | |||
Andrei P. Pomerantsev | |||
Lauren M. Maltese | |||
Olga M. Pomerantseva | |||
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Distinct mutations in PlcR explain why some strains of the Bacillus cereus group are nonhemolytic | Q24563549 | ||
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The Bacillus anthracis cholesterol-dependent cytolysin, Anthrolysin O, kills human neutrophils, monocytes and macrophages | Q28390216 | ||
Identification of anthrax toxin genes in a Bacillus cereus associated with an illness resembling inhalation anthrax | Q28396307 | ||
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Characterization of Bacillus cereus isolates associated with fatal pneumonias: strains are closely related to Bacillus anthracis and harbor B. anthracis virulence genes. | Q30478084 | ||
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Comparative transcriptional profiling of Bacillus cereus sensu lato strains during growth in CO2-bicarbonate and aerobic atmospheres | Q33419368 | ||
Bacillus anthracis, Bacillus cereus, and Bacillus thuringiensis--one species on the basis of genetic evidence. | Q33786310 | ||
PlcR is a pleiotropic regulator of extracellular virulence factor gene expression in Bacillus thuringiensis | Q33864305 | ||
A superfamily of archaeal, bacterial, and eukaryotic proteins homologous to animal transglutaminases | Q33871440 | ||
Sequence analysis of three Bacillus cereus loci carrying PIcR-regulated genes encoding degradative enzymes and enterotoxin | Q33883010 | ||
Differential proteomic analysis of the Bacillus anthracis secretome: distinct plasmid and chromosome CO2-dependent cross talk mechanisms modulate extracellular proteolytic activities | Q34696713 | ||
Characterization of Bacillus anthracis-like bacteria isolated from wild great apes from Cote d'Ivoire and Cameroon | Q34976680 | ||
The Bacillus thuringiensis PlcR-regulated gene inhA2 is necessary, but not sufficient, for virulence. | Q34983773 | ||
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Identification of a Bacillus thuringiensis gene that positively regulates transcription of the phosphatidylinositol-specific phospholipase C gene at the onset of the stationary phase | Q35607044 | ||
Susceptibility to anthrax lethal toxin is controlled by three linked quantitative trait loci | Q35843437 | ||
Genomics of the Bacillus cereus group of organisms | Q36088680 | ||
Phosphatidylcholine-Specific Phospholipase C and Sphingomyelinase Activities in Bacteria of theBacillus cereusGroup | Q36375390 | ||
Useful criteria for the identification of Bacillus anthracis and related species. | Q36623782 | ||
Immunization studies with attenuated strains of Bacillus anthracis | Q37029061 | ||
Codon-optimized fluorescent proteins designed for expression in low-GC gram-positive bacteria | Q37145091 | ||
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What sets Bacillus anthracis apart from other Bacillus species? | Q37514144 | ||
A spontaneous translational fusion of Bacillus cereus PlcR and PapR activates transcription of PlcR-dependent genes in Bacillus anthracis via binding with a specific palindromic sequence | Q37523863 | ||
Characterization of anthrolysin O, the Bacillus anthracis cholesterol-dependent cytolysin | Q39755092 | ||
Identification of self-transmissible plasmids in four Bacillus thuringiensis subspecies | Q39962955 | ||
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The incompatibility between the PlcR- and AtxA-controlled regulons may have selected a nonsense mutation in Bacillus anthracis. | Q43910841 | ||
Anaerobic induction of Bacillus anthracis hemolytic activity | Q44386973 | ||
The NheA component of the non-hemolytic enterotoxin of Bacillus cereus is produced by Bacillus anthracis but is not required for virulence. | Q45046668 | ||
A comparative study of Bacillus cereus, Bacillus thuringiensis and Bacillus anthracis extracellular proteomes | Q46707005 | ||
Two-dimensional electrophoresis analysis of the extracellular proteome of Bacillus cereus reveals the importance of the PlcR regulon. | Q52546627 | ||
Production and purification of anthrax toxin | Q67240707 | ||
Characterisation of a non-haemolytic enterotoxin complex from Bacillus cereus isolated after a foodborne outbreak | Q71431902 | ||
Studies on sphingomyelinase of Bacillus cereus: hydrolytic and hemolytic actions on erythrocyte membranes | Q72846258 | ||
Cooperative, synergistic and antagonistic haemolytic interactions between haemolysin BL, phosphatidylcholine phospholipase C and sphingomyelinase from Bacillus cereus | Q73256435 | ||
Optimized production and purification of Bacillus anthracis lethal factor | Q73585813 | ||
P4510 | describes a project that uses | ImageJ | Q1659584 |
P433 | issue | Pt 10 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | Bacillus anthracis | Q614156 |
P304 | page(s) | 2982-2993 | |
P577 | publication date | 2010-08-05 | |
P1433 | published in | Microbiology | Q11339587 |
P1476 | title | Activation of the latent PlcR regulon in Bacillus anthracis | |
P478 | volume | 156 |
Q35243734 | A Bacillus anthracis strain deleted for six proteases serves as an effective host for production of recombinant proteins |
Q42028392 | A new quorum-sensing system (TprA/PhrA) for Streptococcus pneumoniae D39 that regulates a lantibiotic biosynthesis gene cluster |
Q28534615 | Bacterial adaptation through loss of function |
Q97519160 | Molecular and Genomic Characterization of PFAB2: A Non-virulent Bacillus anthracis Strain Isolated from an Indian Hot Spring |
Q37935265 | New insights into the biological effects of anthrax toxins: linking cellular to organismal responses |
Q35034919 | The Bacillus cereus Hbl and Nhe tripartite enterotoxin components assemble sequentially on the surface of target cells and are not interchangeable |
Q89595741 | The cereus matter of Bacillus endophthalmitis |
Q99711438 | You Can't B. cereus - A Review of Bacillus cereus Strains That Cause Anthrax-Like Disease |
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