Antifungal Mechanism of Antifungal Peptide Derived from Cecropin A(1-8)- Melittin(1-12) Hybrid against Aspergillus fumigatus

  • Lee, Dong-Gun (Peptide Engineering Research Unit, Korea Research Institute of Bioscience and Biotechnology) ;
  • Jin, Zhe-Zhu (Medical College, Yanbian University) ;
  • Maeng, Cheol-Young (Peptide Engineering Research Unit, Korea Research Institute of Bioscience and Biotechnology) ;
  • Shin, Song-Yub (Peptide Engineering Research Unit, Korea Research Institute of Bioscience and Biotechnology) ;
  • Seo, Moo-Yeol (Peptide Engineering Research Unit, Korea Research Institute of Bioscience and Biotechnology) ;
  • Kim, Kil-Lyong (Peptide Engineering Research Unit, Korea Research Institute of Bioscience and Biotechnology) ;
  • Hahm, Kyung-Soo (Peptide Engineering Research Unit, Korea Research Institute of Bioscience and Biotechnology)
  • Published : 1999.04.01

Abstract

The antifungal mechanism of the antifungal peptide against Aspergillus fumigatus, $K^{18,19}$-CA(l-8)-ME(l-12), derived from cecropin A(l-8)-melittin(l-12) was investigated by confocal laser scanning microscopy, cell wall regeneration, ATPase activity inhibition, and released potassium ion. By confocal laser scanning microscopy, $K^{18,19}$-CA(l-8)-ME(l-12) was detected on the surface of A. fumigatus, while cecropin A used as a negative control peptide was not detected. The protoplast of A. fumigatus treated with$K^{18,19}$-CA(1-8)-ME(1-12) failed to regenerate the fungal cell walls. Compared with cecropin A, the amount of potassium ion released by $K^{18,19}$-CA(l-8)-ME(l-12) was increased. Furthermore, $K^{18,19}$-CA(l-8)-ME(l-12) inhibited the ATPase activity on the plasma membrane. These results suggested that $K^{18,19}$-CA(l-8)-ME(1-12) acts on the plasma membrane of A. fumigatus and its antifungal action is due to the ion channel or pore formation on the plasma membrane.

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