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1.
Biochim Biophys Acta ; 1798(2): 105-13, 2010 Feb.
Article in English | MEDLINE | ID: mdl-19632194

ABSTRACT

Plant defensins are cysteine-rich cationic peptides, components of the innate immune system. The antifungal sensitivity of certain exemplars was correlated to the level of complex glycosphingolipids in the membrane of fungi strains. Psd1 is a 46 amino acid residue defensin isolated from pea seeds which exhibit antifungal activity. Its structure is characterized by the so-called cysteine-stabilized alpha/beta motif linked by three loops as determined by two-dimensional NMR. In the present work we explored the measurement of heteronuclear Nuclear Overhauser Effects, R1 and R2 (15)N relaxation ratios, and chemical shift to probe the backbone dynamics of Psd1 and its interaction with membrane mimetic systems with phosphatidylcholine (PC) or dodecylphosphocholine (DPC) with glucosylceramide (CMH) isolated from Fusarium solani. The calculated R2 values predicted a slow motion around the highly conserved among Gly12 residue and also in the region of the Turn3 His36-Trp38. The results showed that Psd1 interacts with vesicles of PC or PC:CMH in slightly different forms. The interaction was monitored by chemical shift perturbation and relaxation properties. Using this approach we could map the loops as the binding site of Psd1 with the membrane. The major binding epitope showed conformation exchange properties in the mus-ms timescale supporting the conformation selection as the binding mechanism. Moreover, the peptide corresponding to part of Loop1 (pepLoop1: Gly12 to Ser19) is also able to interact with DPC micelles acquiring a stable structure and in the presence of DPC:CMH the peptide changes to an extended conformation, exhibiting NOE mainly with the carbohydrate and ceramide parts of CMH.


Subject(s)
Defensins/chemistry , Fusarium/chemistry , Membranes, Artificial , Models, Molecular , Phospholipids/chemistry , Pisum sativum/chemistry , Plant Proteins/chemistry , Amino Acid Motifs/physiology , Defensins/metabolism , Fusarium/metabolism , Micelles , Nuclear Magnetic Resonance, Biomolecular/methods , Pisum sativum/metabolism , Phospholipids/metabolism , Plant Proteins/metabolism , Structure-Activity Relationship
2.
J Pept Sci ; 14(4): 429-35, 2008 Apr.
Article in English | MEDLINE | ID: mdl-17985397

ABSTRACT

Entry of enveloped animal viruses into their host cells always depends on a step of membrane fusion triggered by conformational changes in viral envelope glycoproteins. Vesicular stomatitis virus (VSV) infection is mediated by virus spike glycoprotein G, which induces membrane fusion at the acidic environment of the endosomal compartment. In a previous work, we identified a specific sequence in the VSV G protein, comprising the residues 145-164, directly involved in membrane interaction and fusion. In the present work we studied the interaction of pep[145-164] with membranes using NMR to solve the structure of the peptide in two membrane-mimetic systems: SDS micelles and liposomes composed of phosphatidylcholine and phosphatidylserine (PC:PS vesicles). The presence of medium-range NOEs showed that the peptide has a tendency to form N- and C-terminal helical segments in the presence of SDS micelles. Analysis of the chemical shift index indicated helix-coil equilibrium for the C-terminal helix under all conditions studied. At pH 7.0, the N-terminal helix also displayed a helix-coil equilibrium when pep[145-164] was free in solution or in the presence of PC:PS. Remarkably, at the fusogenic pH, the region of the N-terminal helix in the presence of SDS or PC:PS presented a third conformational species that was in equilibrium with the helix and random coil. The N-terminal helix content decreases pH and the minor beta-structured conformation becomes more prevalent at the fusogenic pH. These data point to a beta-conformation as the fusogenic active structure-which is in agreement with the X-ray structure, which shows a beta-hairpin for the region corresponding to pep[145-164].


Subject(s)
Glycoproteins/chemistry , Peptides/chemistry , Vesicular stomatitis Indiana virus/metabolism , Amino Acid Sequence , Asparagine/chemistry , Circular Dichroism , Glutamic Acid/chemistry , Glycoproteins/chemical synthesis , Hydrogen-Ion Concentration , Liposomes/chemistry , Micelles , Models, Chemical , Molecular Conformation , Molecular Sequence Data , Molecular Weight , Nuclear Magnetic Resonance, Biomolecular , Phosphatidylcholines/chemistry , Phosphatidylserines/chemistry , Protein Structure, Secondary , Sodium Dodecyl Sulfate/chemistry , Tyrosine/chemistry , Valine/chemistry
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