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Structure of the Pyoverdin PVD 2908 – a new Pyoverdin from Pseudomonas sp. 2908
Biometals, 1999An unknown siderophore (pyoverdin) was isolated from the strain Pseudomonas sp. 2908. The structure of the pyoverdin--called PVD 2908--was elucidated by spectroscopic methods and degradation studies. Some other siderophores were identified by LC/ESI-MS-screening based on the knowledge of PVD 2908.
W, Vossen, K, Taraz
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Pyoverdine and Pyochelin Measurements
2014Siderophores are small organic chelators (of molecular weight between 200 and 2,000 Da), having a very high affinity for iron (10(17)-10(43) M(-1)). They are synthesized by bacteria and secreted into their environment in order to get access to iron, an essential element for bacterial growth.
Hoegy, Françoise +2 more
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Solution Structure of Pyoverdin GM-II
Biochemistry, 1994The three-dimensional structure in solution of ferri-pyoverdin GM-II isolated from the culture medium of Pseudomonas fluorescens was determined by application of NMR methods to the Ga3+ analogue. Distance geometry calculations were performed with FILMAN using interproton distances and coupling constants as constraints.
G, Mohn +3 more
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Siderotyping A Powerful Tool for the Characterization of Pyoverdines
Current Topics in Medicinal Chemistry, 2001Tools for the identification of bacteria are of great importance especially for taxonomical and medical purposes. In the case of fluorescent pseudomonads a quick and unambiguous identification is possible by methods that are referred to as "siderotyping".
R, Fuchs +3 more
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Complexation of Th (IV) with the siderophore pyoverdine A
Journal of Alloys and Compounds, 1998The complexation of thorium (IV) ions in aqueous solutions by pyoverdine A has been studied. On the basis of a simple model, the thermodynamical equilibrium constant was determined and the value KTh=(0.15±0.03) M was compared with those previously obtained with uranyl ions.
Bouby, M., Billard, I., Maccordick, H.J.
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Ferrofluid effect on Pseudomonas pyoverdine
Journal of Magnetism and Magnetic Materials, 2005Abstract The magnetic fluid effect on some pigmented pathogen germs has been investigated. The fluorescence of the pyoverdine pigment obtained from Pseudomonas aeruginosa strain, cultivated in the presence of different magnetic fluid concentrations, was enhanced by magnetic fluid concentrations of 0.0015–1 ml/l.
Antoniea Poiata +2 more
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Activation of 6-phosphogluconate dehydrase by pyoverdine
Biochemical and Biophysical Research Communications, 1968Abstract Pseudomonas mildenbergii , when grown without iron, produces a green fluorescent pigment, pyoverdine ( Love & Hulcher, 1964 ), which has a molecular weight of 2,380 and consists of a peptide of threonine, serine, glutamic acid and lysine (4:2:1:1, molar ratio) with an N-methyl phenylacetyl hydroxamic acid group bound to the peptide
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Archives of Microbiology, 2001
The lungs of cystic fibrosis patients are frequently colonized by Pseudomonas aeruginosa, which produces high-affinity fluorescent peptidic siderophores, pyoverdines. Three pyoverdines which differ in their peptide chain and are easily differentiated by isoelectric focusing exist, only one being produced by a given strain. P.
De Vos, Daniel +6 more
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The lungs of cystic fibrosis patients are frequently colonized by Pseudomonas aeruginosa, which produces high-affinity fluorescent peptidic siderophores, pyoverdines. Three pyoverdines which differ in their peptide chain and are easily differentiated by isoelectric focusing exist, only one being produced by a given strain. P.
De Vos, Daniel +6 more
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Genomics of pyoverdine-mediated iron uptake in pseudomonads
Trends in Microbiology, 2003Pyoverdines (PVDs) are complex siderophores produced by members of the fluorescent Pseudomonas. They comprise a dihydroxyquinoline fluorescent chromophore joined to a peptide of remarkably variable length and composition. In Pseudomonas aeruginosa, PVDs also function as signal molecules for the production of virulence factors. Genes responsible for the
Jacques, Ravel, Pierre, Cornelis
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