Literature DB >> 25621379

Cytotoxic Lipopeptide Muscotoxin A, Isolated from Soil Cyanobacterium Desmonostoc muscorum, Permeabilizes Phospholipid Membranes by Reducing Their Fluidity.

Petr Tomek, Pavel Hrouzek, Marek Kuzma, Jan Sýkora, Radovan Fiser, Jan Cerný, Petr Novák, Simona Bártová, Petr Simek, Martin Hof, Daniel Kavan, Jirí Kopecký.   

Abstract

There is mounting evidence that cyanobacterial lipopeptides can kill mammalian cells, presenting a hazard to human health. Unfortunately, their mechanism of toxicity is poorly understood. We have isolated new cyclic undecalipopeptides muscotoxin A and B containing unique lipophilicresidue 3-amino-2,5-dihydroxydecanoic acid (5-OH Ahdoa). Muscotoxin B was not used for biological studies due to its poor yield. Muscotoxin A was cytotoxic to YAC-1, Sp/2, and HeLa cancer cell lines (LC(50) ranged from 9.9 to 13.2 μM after 24 h of exposure), causing membrane damage and influx of calcium ions. Subsequently, we studied this lytic mechanism using synthetic liposomes with encapsulated fluorescent probes. Muscotoxin A permeabilized liposomes composed exclusively of phospholipids, demonstrating that no proteins or carbohydrates present in biomembranes are essential for its activity. Paradoxically, the permeabilization activity of muscotoxin A was mediated by a significant reduction in membrane surface fluidity (stiffening), the opposite of that caused by synthetic detergents and cytolytic lipopeptide puwainaphycin F. At 25 °C, muscotoxin A disrupted liposomes with and without cholesterol/sphingomyelin; however, at 37 °C, it was selective against liposomes with cholesterol/sphingomyelin. It appears that both membrane fluidity and organization can affect the lytic activity of muscotoxin A. Our findings strengthen the evidence that cyanobacterial lipopeptides specifically disrupt mammalian cell membranes and bring new insights into the mechanism of this effect.

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Year:  2015        PMID: 25621379     DOI: 10.1021/tx500382b

Source DB:  PubMed          Journal:  Chem Res Toxicol        ISSN: 0893-228X            Impact factor:   3.739


  4 in total

1.  Alternative Biosynthetic Starter Units Enhance the Structural Diversity of Cyanobacterial Lipopeptides.

Authors:  Jan Mareš; Jan Hájek; Petra Urajová; Andreja Kust; Jouni Jokela; Kumar Saurav; Tomáš Galica; Kateřina Čapková; Antti Mattila; Esa Haapaniemi; Perttu Permi; Ivar Mysterud; Olav M Skulberg; Jan Karlsen; David P Fewer; Kaarina Sivonen; Hanne Hjorth Tønnesen; Pavel Hrouzek
Journal:  Appl Environ Microbiol       Date:  2019-02-06       Impact factor: 4.792

2.  Fatty Acid Substitutions Modulate the Cytotoxicity of Puwainaphycins/Minutissamides Isolated from the Baltic Sea Cyanobacterium Nodularia harveyana UHCC-0300.

Authors:  Kumar Saurav; Alessia Caso; Petra Urajová; Pavel Hrouzek; Germana Esposito; Kateřina Delawská; Markéta Macho; Jan Hájek; José Cheel; Subhasish Saha; Petra Divoká; Sila Arsin; Kaarina Sivonen; David P Fewer; Valeria Costantino
Journal:  ACS Omega       Date:  2022-03-28

3.  Semi-synthetic puwainaphycin/minutissamide cyclic lipopeptides with improved antifungal activity and limited cytotoxicity.

Authors:  Jan Hájek; Sebastian Bieringer; Kateřina Voráčová; Markéta Macho; Kumar Saurav; Kateřina Delawská; Petra Divoká; Radovan Fišer; Gabriela Mikušová; José Cheel; David P Fewer; Dai Long Vu; Jindřiška Paichlová; Herbert Riepl; Pavel Hrouzek
Journal:  RSC Adv       Date:  2021-09-16       Impact factor: 4.036

4.  Application of HPCCC Combined with Polymeric Resins and HPLC for the Separation of Cyclic Lipopeptides Muscotoxins A⁻C and Their Antimicrobial Activity.

Authors:  José Cheel; Jan Hájek; Marek Kuzma; Kumar Saurav; Iva Smýkalová; Eliška Ondráčková; Petra Urajová; Dai Long Vu; Karine Faure; Jiří Kopecký; Pavel Hrouzek
Journal:  Molecules       Date:  2018-10-16       Impact factor: 4.411

  4 in total

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