Literature DB >> 32886515

Daptomycin Strongly Affects the Phase Behavior of Model Lipid Bilayers.

Andrea Mescola1, Gregorio Ragazzini1,2, Andrea Alessandrini1,2.   

Abstract

Daptomycin (DAP) is a calcium-dependent cyclic lipopeptide with great affinity for negatively charged phospholipids bearing the phosphatidylglycerol (PG) headgroup and has been used since 2003 as a last resort antibiotic in the treatment of severe infections caused by Gram-positive bacteria. The first step of its mechanism of action involves the interaction with the bacterial membrane, which not only represents a physical barrier but also accommodates transmembrane proteins, such as receptors, transporters, and enzymes, whose activity is crucial for the survival of bacteria. This results in a less efficient development of resistance strategies by pathogens compared to common antibiotics that activate or inhibit biochemical pathways connected to specific target proteins. Although already on the market, the molecular mechanism of action of DAP is still a controversial subject of investigation and it is most likely the result of a combination of distinct effects. Understanding how DAP targets the membrane of pathogens could be of great help in finding its analogues that could better avoid the development of resistance. Here, exploiting fluorescence microscopy and atomic force microscopy (AFM), we demonstrated that DAP affects the thermodynamic behavior of lipid mixtures containing PG moieties. Regardless of whether the PG lipids are in the liquid or solid phase, DAP preferably interacts with this headgroup and is able to penetrate more deeply into the lipid bilayer in the regions where this headgroup is present. In particular, considering the results of an AFM/spectroscopy investigation, DAP appears to produce a stiffening effect of the domains where PG lipids are mainly in the fluid phase, whereas it causes fluidification of the domains where PG lipids are in the solid phase.

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Year:  2020        PMID: 32886515     DOI: 10.1021/acs.jpcb.0c06640

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   2.991


  7 in total

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2.  Antibacterial Effect of Aluminum Surfaces Untreated and Treated with a Special Anodizing Based on Titanium Oxide Approved for Food Contact.

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Journal:  Biology (Basel)       Date:  2020-12-10

3.  Modification of the Polymer of a Bone Cement with Biodegradable Microspheres of PLGA and Loading with Daptomycin and Vancomycin Improve the Response to Bone Tissue Infection.

Authors:  Joaquin García-García; Galo Azuara; Oscar Fraile-Martinez; Cielo García-Montero; Miguel Angel Álvarez-Mon; Sara Ruíz-Díez; Melchor Álvarez-Mon; Julia Buján; Natalio García-Honduvilla; Miguel A Ortega; Basilio De la Torre
Journal:  Polymers (Basel)       Date:  2022-02-23       Impact factor: 4.329

Review 4.  Amphiphilic Gold Nanoparticles: A Biomimetic Tool to Gain Mechanistic Insights into Peptide-Lipid Interactions.

Authors:  Ester Canepa; Annalisa Relini; Davide Bochicchio; Enrico Lavagna; Andrea Mescola
Journal:  Membranes (Basel)       Date:  2022-06-29

5.  Interaction of Oxicam Derivatives with the Artificial Models of Biological Membranes-Calorimetric and Fluorescence Spectroscopic Study.

Authors:  Jadwiga Maniewska; Żaneta Czyżnikowska; Berenika M Szczęśniak-Sięga; Krystyna Michalak
Journal:  Membranes (Basel)       Date:  2022-08-17

6.  Physical Properties and Reactivity of Microdomains in Phosphatidylinositol-Containing Supported Lipid Bilayer.

Authors:  Toshinori Motegi; Kingo Takiguchi; Yohko Tanaka-Takiguchi; Toshiki Itoh; Ryugo Tero
Journal:  Membranes (Basel)       Date:  2021-05-03

Review 7.  Quantitative Analysis of the Interactions of Metal Complexes and Amphiphilic Systems: Calorimetric, Spectroscopic and Theoretical Aspects.

Authors:  Rossella Migliore; Tarita Biver; Giampaolo Barone; Carmelo Sgarlata
Journal:  Biomolecules       Date:  2022-03-07
  7 in total

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