Conformational study of bovine lactoferricin in membrane-micking conditions by molecular dynamics simulation and circular dichroism

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作者
Isabella Daidone
Alessandro Magliano
Alfredo Di Nola
Giuseppina Mignogna
Matilda Manuela Clarkson
Anna Rita Lizzi
Arduino Oratore
Fernando Mazza
机构
[1] University of L’Aquila,Department of Chemistry, Chemical Engineering and Materials
[2] University of Rome ‘‘La Sapienza’’,Department of Chemistry
[3] University of Rome ‘‘La Sapienza’’,Department of Biochemical Sciences ‘‘A. Rossi Fanelli’’
[4] University of L’Aquila,Department of Biomedical Sciences and Technologies
[5] University of L’Aquila,Department of Health Sciences
来源
BioMetals | 2011年 / 24卷
关键词
Antimicrobial peptides; Molecular dynamics simulation; Circular dichroism; Amphipathic; β-hairpin;
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摘要
Lactoferricins are potent antimicrobial peptides released by pepsin cleavage of Lactoferrins. Bovine Lactoferricin (LfcinB) has higher activity than the intact bovine Lactoferrin, and is the most active among the other Lactoferricins of human, murine and caprine origin. In the intact protein the fragment corresponding to LfcinB is in an helical conformation, while in water LfcinB adopts an amphipathic β-hairpin structure. However, whether any of these structural motifs is the antibacterial active conformation, i.e., the one interacting with bacterial membrane components, remains to be seen. Here we present Circular Dichroism (CD) spectra and Molecular Dynamics (MD) simulations indicating that in membrane-mimicking solvents the LfcinB adopts an amphipathic β-hairpin structure similar to that observed in water, but differing in the dynamic behavior of the side-chains of the two tryptophan residues. In the membrane-mimicking solvent these side-chains show a high propensity to point towards the hydrophobic environment, rather than being in the hydrophobic core as seen in water, while the backbone preserves the hairpin conformation as found in water. These results suggest that the tryptophans might act as anchors pulling the stable, solvent-invariant hairpin structure into the membrane.
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页码:259 / 268
页数:9
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