A peptide derived from the rotavirus outer capsid protein VP7 permeabilizes artificial membranes. 2014

Sarah Elaid, and Sonia Libersou, and Malika Ouldali, and Nelly Morellet, and Bernard Desbat, and Isabel D Alves, and Jean Lepault, and Serge Bouaziz
LCRB, CNRS (UMR 8015), Université Paris Descartes, F-75270 Paris, France.

Biological membranes represent a physical barrier that most viruses have to cross for replication. While enveloped viruses cross membranes through a well-characterized membrane fusion mechanism, non-enveloped viruses, such as rotaviruses, require the destabilization of the host cell membrane by processes that are still poorly understood. We have identified, in the C-terminal region of the rotavirus glycoprotein VP7, a peptide that was predicted to contain a membrane domain and to fold into an amphipathic α-helix. Its structure was confirmed by circular dichroism in media mimicking the hydrophobic environment of the membrane at both acidic and neutral pHs. The helical folding of the peptide was corroborated by ATR-FTIR spectroscopy, which suggested a transmembrane orientation of the peptide. The interaction of this peptide with artificial membranes and its affinity were assessed by plasmon waveguide resonance. We have found that the peptide was able to insert into membranes and permeabilize them while the native protein VP7 did not. Finally, NMR studies revealed that in a hydrophobic environment, this helix has amphipathic properties characteristic of membrane-perforating peptides. Surprisingly, its structure varies from that of its counterpart in the structure of the native protein VP7, as was determined by X-ray. All together, our results show that a peptide released from VP7 is capable of changing its conformation and destabilizing artificial membranes. Such peptides could play an important role by facilitating membrane crossing by non-enveloped viruses during cell infection.

UI MeSH Term Description Entries
D008567 Membranes, Artificial Artificially produced membranes, such as semipermeable membranes used in artificial kidney dialysis (RENAL DIALYSIS), monomolecular and bimolecular membranes used as models to simulate biological CELL MEMBRANES. These membranes are also used in the process of GUIDED TISSUE REGENERATION. Artificial Membranes,Artificial Membrane,Membrane, Artificial
D008823 Micelles Particles consisting of aggregates of molecules held loosely together by secondary bonds. The surface of micelles are usually comprised of amphiphatic compounds that are oriented in a way that minimizes the energy of interaction between the micelle and its environment. Liquids that contain large numbers of suspended micelles are referred to as EMULSIONS. Micelle
D009682 Magnetic Resonance Spectroscopy Spectroscopic method of measuring the magnetic moment of elementary particles such as atomic nuclei, protons or electrons. It is employed in clinical applications such as NMR Tomography (MAGNETIC RESONANCE IMAGING). In Vivo NMR Spectroscopy,MR Spectroscopy,Magnetic Resonance,NMR Spectroscopy,NMR Spectroscopy, In Vivo,Nuclear Magnetic Resonance,Spectroscopy, Magnetic Resonance,Spectroscopy, NMR,Spectroscopy, Nuclear Magnetic Resonance,Magnetic Resonance Spectroscopies,Magnetic Resonance, Nuclear,NMR Spectroscopies,Resonance Spectroscopy, Magnetic,Resonance, Magnetic,Resonance, Nuclear Magnetic,Spectroscopies, NMR,Spectroscopy, MR
D010446 Peptide Fragments Partial proteins formed by partial hydrolysis of complete proteins or generated through PROTEIN ENGINEERING techniques. Peptide Fragment,Fragment, Peptide,Fragments, Peptide
D002463 Cell Membrane Permeability A quality of cell membranes which permits the passage of solvents and solutes into and out of cells. Permeability, Cell Membrane
D002942 Circular Dichroism A change from planar to elliptic polarization when an initially plane-polarized light wave traverses an optically active medium. (McGraw-Hill Dictionary of Scientific and Technical Terms, 4th ed) Circular Dichroism, Vibrational,Dichroism, Circular,Vibrational Circular Dichroism
D000956 Antigens, Viral Substances elaborated by viruses that have antigenic activity. Viral Antigen,Viral Antigens,Antigen, Viral
D017550 Spectroscopy, Fourier Transform Infrared A spectroscopic technique in which a range of wavelengths is presented simultaneously with an interferometer and the spectrum is mathematically derived from the pattern thus obtained. FTIR,Fourier Transform Infrared Spectroscopy,Spectroscopy, Infrared, Fourier Transform
D019295 Computational Biology A field of biology concerned with the development of techniques for the collection and manipulation of biological data, and the use of such data to make biological discoveries or predictions. This field encompasses all computational methods and theories for solving biological problems including manipulation of models and datasets. Bioinformatics,Molecular Biology, Computational,Bio-Informatics,Biology, Computational,Computational Molecular Biology,Bio Informatics,Bio-Informatic,Bioinformatic,Biologies, Computational Molecular,Biology, Computational Molecular,Computational Molecular Biologies,Molecular Biologies, Computational
D036022 Capsid Proteins Proteins that form the CAPSID of VIRUSES. Procapsid Protein,Procapsid Proteins,Viral Coat Protein,Viral Coat Proteins,Viral V Antigens,Viral V Proteins,Capsid Protein,Viral Outer Coat Protein,Antigens, Viral V,Coat Protein, Viral,V Antigens, Viral,V Proteins, Viral

Related Publications

Sarah Elaid, and Sonia Libersou, and Malika Ouldali, and Nelly Morellet, and Bernard Desbat, and Isabel D Alves, and Jean Lepault, and Serge Bouaziz
April 1999, Journal of virology,
Sarah Elaid, and Sonia Libersou, and Malika Ouldali, and Nelly Morellet, and Bernard Desbat, and Isabel D Alves, and Jean Lepault, and Serge Bouaziz
July 2004, Journal of virology,
Sarah Elaid, and Sonia Libersou, and Malika Ouldali, and Nelly Morellet, and Bernard Desbat, and Isabel D Alves, and Jean Lepault, and Serge Bouaziz
October 2011, Journal of virology,
Sarah Elaid, and Sonia Libersou, and Malika Ouldali, and Nelly Morellet, and Bernard Desbat, and Isabel D Alves, and Jean Lepault, and Serge Bouaziz
March 1997, Journal of virology,
Sarah Elaid, and Sonia Libersou, and Malika Ouldali, and Nelly Morellet, and Bernard Desbat, and Isabel D Alves, and Jean Lepault, and Serge Bouaziz
September 1999, Biotechnic & histochemistry : official publication of the Biological Stain Commission,
Sarah Elaid, and Sonia Libersou, and Malika Ouldali, and Nelly Morellet, and Bernard Desbat, and Isabel D Alves, and Jean Lepault, and Serge Bouaziz
July 2002, Journal of virology,
Sarah Elaid, and Sonia Libersou, and Malika Ouldali, and Nelly Morellet, and Bernard Desbat, and Isabel D Alves, and Jean Lepault, and Serge Bouaziz
August 1990, Journal of virology,
Sarah Elaid, and Sonia Libersou, and Malika Ouldali, and Nelly Morellet, and Bernard Desbat, and Isabel D Alves, and Jean Lepault, and Serge Bouaziz
April 1988, The Journal of general virology,
Sarah Elaid, and Sonia Libersou, and Malika Ouldali, and Nelly Morellet, and Bernard Desbat, and Isabel D Alves, and Jean Lepault, and Serge Bouaziz
October 1991, Virology,
Sarah Elaid, and Sonia Libersou, and Malika Ouldali, and Nelly Morellet, and Bernard Desbat, and Isabel D Alves, and Jean Lepault, and Serge Bouaziz
February 2011, Journal of virology,
Copied contents to your clipboard!