Literature DB >> 20655843

Cell-penetrating HIV1 TAT peptides can generate pores in model membranes.

Corina Ciobanasu1, Jan Peter Siebrasse, Ulrich Kubitscheck.   

Abstract

Cell-penetrating peptides like the cationic human immunodeficiency virus-1 trans-acting activator of transcription (TAT) peptide have the capability to traverse cell membranes and to deliver large molecular cargoes into the cellular interior. We used optical sectioning and state-of-the-art single-molecule microscopy to examine the passive membrane permeation of fluorescently labeled TAT peptides across the membranes of giant unilamellar vesicles (GUVs). In GUVs formed by phosphatidylcholine and cholesterol only, no translocation of TAT up to a concentration of 2 microM into the GUVs could be observed. At the same peptide concentration, but with 40 mol % of anionic phosphatidylserine in the membrane, rapid translocation of TAT peptides across the bilayers was detected. Efficient translocation of TAT peptides was observed across GUVs containing 20 mol % of phosphatidylethanolamine, which is known to induce a negative curvature into membranes. We discovered that TAT peptides are not only capable of penetrating membranes directly in a passive manner, but they were also able to form physical pores with sizes in the nanometer range, which could be passed by small dye tracer molecules. Lipid topology and anionic charge of the lipid bilayer are decisive parameters for pore formation. Copyright 2010 Biophysical Society. Published by Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20655843      PMCID: PMC2895395          DOI: 10.1016/j.bpj.2010.03.065

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


  43 in total

Review 1.  Single molecule microscopy of biomembranes (review).

Authors:  G J Schütz; M Sonnleitner; P Hinterdorfer; H Schindler
Journal:  Mol Membr Biol       Date:  2000 Jan-Mar       Impact factor: 2.857

Review 2.  Messenger proteins: homeoproteins, TAT and others.

Authors:  A Prochiantz
Journal:  Curr Opin Cell Biol       Date:  2000-08       Impact factor: 8.382

3.  High intranuclear mobility and dynamic clustering of the splicing factor U1 snRNP observed by single particle tracking.

Authors:  T Kues; A Dickmanns; R Lührmann; R Peters; U Kubitscheck
Journal:  Proc Natl Acad Sci U S A       Date:  2001-10-02       Impact factor: 11.205

4.  Cell-penetrating peptides. A reevaluation of the mechanism of cellular uptake.

Authors:  Jean Philippe Richard; Kamran Melikov; Eric Vives; Corinne Ramos; Birgit Verbeure; Mike J Gait; Leonid V Chernomordik; Bernard Lebleu
Journal:  J Biol Chem       Date:  2002-10-30       Impact factor: 5.157

5.  Roles of phosphatidylethanolamine and of its several biosynthetic pathways in Saccharomyces cerevisiae.

Authors:  R Birner; M Bürgermeister; R Schneiter; G Daum
Journal:  Mol Biol Cell       Date:  2001-04       Impact factor: 4.138

6.  Pseudomonas aeruginosa exhibits directed twitching motility up phosphatidylethanolamine gradients.

Authors:  D B Kearns; J Robinson; L J Shimkets
Journal:  J Bacteriol       Date:  2001-01       Impact factor: 3.490

7.  Artificial matrix barriers: a diffusion study utilizing dextrans and microspheres.

Authors:  B Persky; M J Hendrix
Journal:  Anat Rec       Date:  1990-09

8.  Arginine-rich molecular transporters for drug delivery: role of backbone spacing in cellular uptake.

Authors:  Jonathan B Rothbard; Erik Kreider; Christopher L VanDeusen; Lee Wright; Bryan L Wylie; Paul A Wender
Journal:  J Med Chem       Date:  2002-08-15       Impact factor: 7.446

9.  Phosphatidyl ethanolamine is essential for targeting the arginine transporter Can1p to the plasma membrane of yeast.

Authors:  Miroslava Opekarová; Ingrid Robl; Widmar Tanner
Journal:  Biochim Biophys Acta       Date:  2002-08-19

10.  Protein transduction domains of HIV-1 and SIV TAT interact with charged lipid vesicles. Binding mechanism and thermodynamic analysis.

Authors:  André Ziegler; Xiaochun Li Blatter; Anna Seelig; Joachim Seelig
Journal:  Biochemistry       Date:  2003-08-05       Impact factor: 3.162

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  32 in total

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Review 2.  Defining the molecular mechanisms of HIV-1 Tat secretion: PtdIns(4,5)P2 at the epicenter.

Authors:  Anthony R Mele; Jamie Marino; Kenneth Chen; Vanessa Pirrone; Chris Janetopoulos; Brian Wigdahl; Zachary Klase; Michael R Nonnemacher
Journal:  Traffic       Date:  2018-04-30       Impact factor: 6.215

3.  Sensing pH via p-cyanophenylalanine fluorescence: Application to determine peptide pKa and membrane penetration kinetics.

Authors:  Ileana M Pazos; Ismail A Ahmed; Mariana I León Berríos; Feng Gai
Journal:  Anal Biochem       Date:  2015-04-29       Impact factor: 3.365

Review 4.  Fluorescence spectroscopy and molecular dynamics simulations in studies on the mechanism of membrane destabilization by antimicrobial peptides.

Authors:  Gianfranco Bocchinfuso; Sara Bobone; Claudia Mazzuca; Antonio Palleschi; Lorenzo Stella
Journal:  Cell Mol Life Sci       Date:  2011-05-17       Impact factor: 9.261

5.  Transfer of arginine into lipid bilayers is nonadditive.

Authors:  Justin L MacCallum; W F Drew Bennett; D Peter Tieleman
Journal:  Biophys J       Date:  2011-07-06       Impact factor: 4.033

6.  Free energy of translocating an arginine-rich cell-penetrating peptide across a lipid bilayer suggests pore formation.

Authors:  Kun Huang; Angel E García
Journal:  Biophys J       Date:  2013-01-22       Impact factor: 4.033

7.  HIV-1 Tat membrane interactions probed using X-ray and neutron scattering, CD spectroscopy and MD simulations.

Authors:  Kiyotaka Akabori; Kun Huang; Bradley W Treece; Michael S Jablin; Brian Maranville; Arthur Woll; John F Nagle; Angel E Garcia; Stephanie Tristram-Nagle
Journal:  Biochim Biophys Acta       Date:  2014-08-19

Review 8.  Diatrack particle tracking software: Review of applications and performance evaluation.

Authors:  Pascal Vallotton; Antoine M van Oijen; Cynthia B Whitchurch; Vladimir Gelfand; Leslie Yeo; Georgios Tsiavaliaris; Stephanie Heinrich; Elisa Dultz; Karsten Weis; David Grünwald
Journal:  Traffic       Date:  2017-10-23       Impact factor: 6.215

9.  Effect of membrane potential on entry of lactoferricin B-derived 6-residue antimicrobial peptide into single Escherichia coli cells and lipid vesicles.

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Journal:  J Bacteriol       Date:  2021-02-08       Impact factor: 3.490

10.  Label-free probe of HIV-1 TAT peptide binding to mimetic membranes.

Authors:  Yi Rao; Sheldon J J Kwok; Julien Lombardi; Nicholas J Turro; Kenneth B Eisenthal
Journal:  Proc Natl Acad Sci U S A       Date:  2014-08-18       Impact factor: 11.205

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