The cyanobacterial strain Microcystis species CAWBG11 was investigated in order to isolate and characterise bioactive oligopeptides such as aeruginosins and microviridins. Liquid Chromatography tandem Mass Spectrometry (LC-MS/MS) Analysis of a methanol extract of a Microcystis CAWBG11 identified four known aeruginosin variants and four putatively new aeruginosin congeners as aeruginosins 618, 656A, 656B and 602B. Planar structures for these new congeners were proposed based on the MS/MS data, in conjunction with the sequence of the known aeruginosins. Amongst the aeruginosins detected there were three pairs, each with the same molecular masses but exhibiting different retention times. Each pair was assigned as stereoisomers since they yie...
Microcystins (MCs) are the most widely distributed and structurally diverse cyanotoxins that can hav...
Cyanobactins are cyclic peptides assembled through the cleavage and modification of short precursor ...
Cyanobacteria produce a plethora of structurally diverse bioactive secondary metabolites, including ...
The cyanobacterium Microcystis aeruginosa has been linked to toxic blooms worldwide. In addition to ...
Two new natural products, micropeptin TR1058 (1) and aeruginosin TR642 (2), were isolated from the h...
Two novel biologically active short peptides, aeruginosins IN608 and IN652, were isolated from the c...
Thirteen new and eighteen known natural products were isolated from a bloom material of an assembly ...
Nine new metabolites, aeruginosins DA495A (<b>1</b>), DA511 (<b>2</b>), DA642A (<b>3</b>), DA642B (<...
Cyanobacterial secondary metabolites, often identified as toxins such as microcystin, have also demo...
RATIONALE: High-resolution mass spectrometry was applied to the study of a Microcystis aeruginosa st...
International audienceThe cyanobacterial genus Microcystis is known to produce an elaborate array of...
The toxicity of the cyanobacterium Microcystis aeruginosa EAWAG 127a was evaluated against the sensi...
RATIONALE High-resolution mass spectrometry was applied to the study of a Microcystis aeruginosa str...
Abstract Background Microcystis aeruginosa is a species of cyanobacteria commonly found in a number ...
Cyanobacteria (blue-green algae) are a group of ancient prokaryotic organisms which have become syno...
Microcystins (MCs) are the most widely distributed and structurally diverse cyanotoxins that can hav...
Cyanobactins are cyclic peptides assembled through the cleavage and modification of short precursor ...
Cyanobacteria produce a plethora of structurally diverse bioactive secondary metabolites, including ...
The cyanobacterium Microcystis aeruginosa has been linked to toxic blooms worldwide. In addition to ...
Two new natural products, micropeptin TR1058 (1) and aeruginosin TR642 (2), were isolated from the h...
Two novel biologically active short peptides, aeruginosins IN608 and IN652, were isolated from the c...
Thirteen new and eighteen known natural products were isolated from a bloom material of an assembly ...
Nine new metabolites, aeruginosins DA495A (<b>1</b>), DA511 (<b>2</b>), DA642A (<b>3</b>), DA642B (<...
Cyanobacterial secondary metabolites, often identified as toxins such as microcystin, have also demo...
RATIONALE: High-resolution mass spectrometry was applied to the study of a Microcystis aeruginosa st...
International audienceThe cyanobacterial genus Microcystis is known to produce an elaborate array of...
The toxicity of the cyanobacterium Microcystis aeruginosa EAWAG 127a was evaluated against the sensi...
RATIONALE High-resolution mass spectrometry was applied to the study of a Microcystis aeruginosa str...
Abstract Background Microcystis aeruginosa is a species of cyanobacteria commonly found in a number ...
Cyanobacteria (blue-green algae) are a group of ancient prokaryotic organisms which have become syno...
Microcystins (MCs) are the most widely distributed and structurally diverse cyanotoxins that can hav...
Cyanobactins are cyclic peptides assembled through the cleavage and modification of short precursor ...
Cyanobacteria produce a plethora of structurally diverse bioactive secondary metabolites, including ...