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Charged N-terminus of Influenza Fusion Peptide Facilitates Membrane Fusion. | LitMetric

Charged N-terminus of Influenza Fusion Peptide Facilitates Membrane Fusion.

Int J Mol Sci

Centre of New Technologies, University of Warsaw, Banacha 2C Street, 02-097 Warsaw, Poland.

Published: February 2018

AI Article Synopsis

  • Cleavage of hemagglutinin precursor (HA0) results in HA1 and HA2 subunits, with the N-terminal fragment of HA2 (HAfp) having a charged amine N-terminus.
  • The study investigates how this N-terminal charge affects the fusion efficiency and structural conformations of peptides at the membrane interface by comparing peptides of 20 and 23 amino acids in length.
  • Results indicate that unmodified peptides exhibit higher fusogenic activity and preferred helical hairpin structures, while acetylated peptides adopt more open conformations that disturb the membrane less effectively.

Article Abstract

Cleavage of hemagglutinin precursor (HA0) by cellular proteases results in the formation of two subunits, HA1 and HA2. The N-terminal fragment of HA2, named a fusion peptide (HAfp), possess a charged, amine N-terminus. It has been shown that the N-terminus of HAfp stabilizes the structure of a helical hairpin observed for a 23-amino acid long peptide (HAfp1-23), whose larger activity than HAfp1-20 has been demonstrated recently. In this paper, we analyze the effect of N-terminal charge on peptide-mediated fusion efficiency and conformation changes at the membrane interface by comparison with the corresponding -acetylated peptides of 20- and 23-amino acid lengths. We found that higher fusogenic activities of peptides with unmodified amino termini correlates with their ability to form helical hairpin structures oriented perpendicularly to the membrane plane. Molecular dynamics simulations showed that acetylated peptides adopt open and surface-bound conformation more often, which induced less disorder of the phospholipid chains, as compared to species with unmodified amino termini.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5855800PMC
http://dx.doi.org/10.3390/ijms19020578DOI Listing

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