Literature DB >> 25140425

Membrane interactions of phylloseptin-1, -2, and -3 peptides by oriented solid-state NMR spectroscopy.

Jarbas M Resende1, Rodrigo M Verly2, Christopher Aisenbrey3, Amary Cesar4, Philippe Bertani3, Dorila Piló-Veloso4, Burkhard Bechinger5.   

Abstract

Phylloseptin-1, -2, and -3 are three members of the family of linear cationic antimicrobial peptides found in tree frogs. The highly homologous peptides encompass 19 amino acids, and only differ in the amino acid composition and charge at the six most carboxy-terminal residues. Here, we investigated how such subtle changes are reflected in their membrane interactions and how these can be correlated to their biological activities. To this end, the three peptides were labeled with stable isotopes, reconstituted into oriented phospholipid bilayers, and their detailed topology determined by a combined approach using (2)H and (15)N solid-state NMR spectroscopy. Although phylloseptin-2 and -3 adopt perfect in-plane alignments, the tilt angle of phylloseptin-1 deviates by 8° probably to assure a more water exposed localization of the lysine-17 side chain. Furthermore, different azimuthal angles are observed, positioning the amphipathic helices of all three peptides with the charged residues well exposed to the water phase. Interestingly, our studies also reveal that two orientation-dependent (2)H quadrupolar splittings from methyl-deuterated alanines and one (15)N amide chemical shift are sufficient to unambiguously determine the topology of phylloseptin-1, where quadrupolar splittings close to the maximum impose the most stringent angular restraints. As a result of these studies, a strategy is proposed where the topology of a peptide structure can be determined accurately from the labeling with (15)N and (2)H isotopes of only a few amino acid residues.
Copyright © 2014 Biophysical Society. Published by Elsevier Inc. All rights reserved.

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Year:  2014        PMID: 25140425      PMCID: PMC4142234          DOI: 10.1016/j.bpj.2014.07.014

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  57 in total

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Authors:  B Bechinger
Journal:  Biochim Biophys Acta       Date:  1999-12-15

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Journal:  Nature       Date:  2002-01-24       Impact factor: 49.962

Review 3.  Mode of action of membrane active antimicrobial peptides.

Authors:  Yechiel Shai
Journal:  Biopolymers       Date:  2002       Impact factor: 2.505

Review 4.  The membrane interactions of antimicrobial peptides revealed by solid-state NMR spectroscopy.

Authors:  Burkhard Bechinger; Evgeniy S Salnikov
Journal:  Chem Phys Lipids       Date:  2012-02-17       Impact factor: 3.329

Review 5.  Solid-state NMR-based approaches for supramolecular structure elucidation.

Authors:  Markus Weingarth; Marc Baldus
Journal:  Acc Chem Res       Date:  2013-04-15       Impact factor: 22.384

Review 6.  The role of mammalian antimicrobial peptides and proteins in awakening of innate host defenses and adaptive immunity.

Authors:  D Yang; O Chertov; J J Oppenheim
Journal:  Cell Mol Life Sci       Date:  2001-06       Impact factor: 9.261

7.  An innovative procedure using a sublimable solid to align lipid bilayers for solid-state NMR studies.

Authors:  Kevin J Hallock; Katherine Henzler Wildman; Dong-Kuk Lee; Ayyalusamy Ramamoorthy
Journal:  Biophys J       Date:  2002-05       Impact factor: 4.033

8.  Geometry and intrinsic tilt of a tryptophan-anchored transmembrane alpha-helix determined by (2)H NMR.

Authors:  Patrick C A van der Wel; Erik Strandberg; J Antoinette Killian; Roger E Koeppe
Journal:  Biophys J       Date:  2002-09       Impact factor: 4.033

9.  Solid-state NMR approaches to study protein structure and protein-lipid interactions.

Authors:  Christopher Aisenbrey; Matthias Michalek; Evgeniy S Salnikov; Burkhard Bechinger
Journal:  Methods Mol Biol       Date:  2013

10.  High-resolution structures and orientations of antimicrobial peptides piscidin 1 and piscidin 3 in fluid bilayers reveal tilting, kinking, and bilayer immersion.

Authors:  B Scott Perrin; Ye Tian; Riqiang Fu; Christopher V Grant; Eduard Y Chekmenev; William E Wieczorek; Alexander E Dao; Robert M Hayden; Caitlin M Burzynski; Richard M Venable; Mukesh Sharma; Stanley J Opella; Richard W Pastor; Myriam L Cotten
Journal:  J Am Chem Soc       Date:  2014-01-22       Impact factor: 15.419

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  14 in total

1.  Lipid-Mediated Interactions between the Antimicrobial Peptides Magainin 2 and PGLa in Bilayers.

Authors:  Nicole Harmouche; Burkhard Bechinger
Journal:  Biophys J       Date:  2018-08-16       Impact factor: 4.033

2.  Solid-State NMR Investigations of the MHC II Transmembrane Domains: Topological Equilibria and Lipid Interactions.

Authors:  Christopher Aisenbrey; Evgeniy S Salnikov; Burkhard Bechinger
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3.  Simultaneous acquisition of 2D and 3D solid-state NMR experiments for sequential assignment of oriented membrane protein samples.

Authors:  T Gopinath; Kaustubh R Mote; Gianluigi Veglia
Journal:  J Biomol NMR       Date:  2015-03-07       Impact factor: 2.835

4.  Structure and Function in Antimicrobial Piscidins: Histidine Position, Directionality of Membrane Insertion, and pH-Dependent Permeabilization.

Authors:  Mihaela Mihailescu; Mirco Sorci; Jolita Seckute; Vitalii I Silin; Janet Hammer; B Scott Perrin; Jorge I Hernandez; Nedzada Smajic; Akritee Shrestha; Kimberly A Bogardus; Alexander I Greenwood; Riqiang Fu; Jack Blazyk; Richard W Pastor; Linda K Nicholson; Georges Belfort; Myriam L Cotten
Journal:  J Am Chem Soc       Date:  2019-06-13       Impact factor: 15.419

5.  Membrane interactions of Ocellatins. Where do antimicrobial gaps stem from?

Authors:  José Muñoz-López; Jade C L Oliveira; Daniel A G R Michel; Carolina S Ferreira; Francisco Gomes Neto; Evgeniy S Salnikov; Rodrigo M Verly; Burkhard Bechinger; Jarbas M Resende
Journal:  Amino Acids       Date:  2021-07-12       Impact factor: 3.520

6.  Discovery of Novel Bacterial Cell-Penetrating Phylloseptins in Defensive Skin Secretions of the South American Hylid Frogs, Phyllomedusa duellmani and Phyllomedusa coelestis.

Authors:  Nan Yang; Lei Li; Di Wu; Yitian Gao; Xinping Xi; Mei Zhou; Lei Wang; Tianbao Chen; Chris Shaw
Journal:  Toxins (Basel)       Date:  2016-08-31       Impact factor: 4.546

7.  Membrane topologies of the PGLa antimicrobial peptide and a transmembrane anchor sequence by Dynamic Nuclear Polarization/solid-state NMR spectroscopy.

Authors:  Evgeniy Sergeevich Salnikov; Christopher Aisenbrey; Fabien Aussenac; Olivier Ouari; Hiba Sarrouj; Christian Reiter; Paul Tordo; Frank Engelke; Burkhard Bechinger
Journal:  Sci Rep       Date:  2016-02-15       Impact factor: 4.379

8.  Structure and membrane interactions of the homodimeric antibiotic peptide homotarsinin.

Authors:  Rodrigo M Verly; Jarbas M Resende; Eduardo F C Junior; Mariana T Q de Magalhães; Carlos F C R Guimarães; Victor H O Munhoz; Marcelo Porto Bemquerer; Fábio C L Almeida; Marcelo M Santoro; Dorila Piló-Veloso; Burkhard Bechinger
Journal:  Sci Rep       Date:  2017-01-19       Impact factor: 4.379

9.  Ocellatin peptides from the skin secretion of the South American frog Leptodactylus labyrinthicus (Leptodactylidae): characterization, antimicrobial activities and membrane interactions.

Authors:  Karla A G Gusmão; Daniel M Dos Santos; Virgílio M Santos; María Esperanza Cortés; Pablo V M Reis; Vera L Santos; Dorila Piló-Veloso; Rodrigo M Verly; Maria Elena de Lima; Jarbas M Resende
Journal:  J Venom Anim Toxins Incl Trop Dis       Date:  2017-01-19

Review 10.  Biophysical Investigations Elucidating the Mechanisms of Action of Antimicrobial Peptides and Their Synergism.

Authors:  Arnaud Marquette; Burkhard Bechinger
Journal:  Biomolecules       Date:  2018-04-18
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