Structure-Activity Analysis of an Antimicrobial Peptide Derived from Bovine Apolipoprotein A-II

We previously showed that bovine apolipoprotein A-II (apoA-II) has antimicrobial activity against Escherichia coli in PBS, and its C-terminal residues 49–76 are responsible for the activity using synthetic peptides. In order to understand the structural requirements of peptide 49–76 for the antimicr...

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Veröffentlicht in:Journal of biochemistry (Tokyo) 2002-07, Vol.132 (1), p.115-119
Hauptverfasser: Motizuki, Mitsuyoshi, Satoh, Takanori, Takei, Toshiaki, Itoh, Takehito, Yokota, Sadaki, Kojima, Shuichi, Miura, Kin-ichiro, Samejima, Tatsuya, Tsurugi, Kunio
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Sprache:eng
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Zusammenfassung:We previously showed that bovine apolipoprotein A-II (apoA-II) has antimicrobial activity against Escherichia coli in PBS, and its C-terminal residues 49–76 are responsible for the activity using synthetic peptides. In order to understand the structural requirements of peptide 49–76 for the antimicrobial activity, the N- or C-terminus was truncated and then the charged (Lys or Asp) or Ser residues were replaced by Ala. Deletion of the first or last three amino acids and replacement of Lys-54/55 or 71/72 by Ala caused a substantial decreases in α-helical content in 50% TFE, showing the possible presence of helices in N- and C-terminal regions, respectively. The anti-Escherichia coli activity of the peptide correlated with its liposome-binding activity. Replacement of Lys-54/55 or 71/72 by Ala resulted in an almost complete loss of anti-E. coli activity with a substantial decrease in liposome-binding activity. Moreover, deletion of the last three amino acids caused a reduction to 1/17 of the original anti-E. coli activity with a moderate decrease in liposome-binding activity. In contrast, replacement of Ser-65/66, Asp-59, or Asp-69 by Ala hardly affected the anti-E. coli activity. These findings suggest that Lys-54/55 and Lys-71/72 on the putative helices are critical for antimicrobial activity, and the C-terminal 3 amino acids are important for the structural integrity of the C-terminal region for effective antimicrobial activity.
ISSN:0021-924X
DOI:10.1093/oxfordjournals.jbchem.a003187