Author(s): Hisamatsu K, Tsuda N, Goda S, Hatakeyama T
CEL-III is a haemolytic lectin, which has two beta-trefoil domains (domains 1 and 2) and a beta-sheet-rich domain (domain 3). In domain 3 (residues 284-432), there is a hydrophobic region containing two alpha-helices (H8 and H9, residues 317-357) and a loop between them, in which alternate hydrophobic residues, especially Val residues, are present. To elucidate the role of the alpha-helix region in the haemolytic process, peptides corresponding to different parts of this region were synthesized and characterized. The peptides containing the sequence that corresponded to the loop and second alpha-helix (H9) showed the strongest antibacterial activity for Staphylococcus aureus and Bacillus subtilis through a marked permeabilization of the bacterial cell membrane. The recombinant glutathione S-transferase (GST)-fusion proteins containing domain 3 or the alpha-helix region peptide formed self-oligomers, whereas mutations in the alternate Val residues in the alpha-helix region lead to decreased oligomerization ability of the fusion proteins. These results suggest that the alpha-helix region, particularly its alternate Val residues are important for oligomerization of CEL-III in target cell membranes, which is also required for a subsequent haemolytic action.
Referred From: https://www.ncbi.nlm.nih.gov/pubmed/17965430
Author(s): Castro MS, Fontes W
Author(s): Strominger JL
Author(s): Zasloff M
Author(s): Riley MA, Chavan MA
Author(s): Cotter PD, Hill C, Ross RP
Author(s): Rodríguez JM, Martínez MI, Kok J
Author(s): da Rocha Pitta MG, da Rocha Pitta MG, Galdino SL
Author(s): Thomas S, Karnik S, Barai RS, Jayaraman VK, Idicula-Thomas S
Author(s): Brogden KA
Author(s): Yount NY, Bayer AS, Xiong YQ, Yeaman MR
Author(s): Kamysz W, Okroj M, Lukasiak J
Author(s): Hale JD, Hancock RE
Author(s): Nicolas P
Author(s): Bowdish DM, Davidson DJ, Lau YE, Lee K, Scott MG, et al.
Author(s): Brown KL, Hancock RE
Author(s): Easton DM, Nijnik A, Mayer ML, Hancock RE
Author(s): Lai Y, Gallo RL
Author(s): Guaní-Guerra E, Santos-Mendoza T, Lugo-Reyes SO, Terán LM
Author(s): Hancock RE, Diamond G
Author(s): Hancock RE, Brown KL, Mookherjee N
Author(s): Bals R, Wilson JM
Author(s): Beauregard KA, Truong NT, Zhang H, Lin W, Beck G
Author(s): Haug T, Kjuul AK, Styrvold OB, Sandsdalen E, Olsen AM, et al.
Author(s): Ghanbari R, Ebrahimpour A, Abdul-Hamid A, Ismail A, Saari N
Author(s): Schillaci D, Arizza V, Parrinello N, Di Stefano V, Fanara S, et al.
Author(s): Huff T, M&uller CS, Otto AM, Netzker R, Hannappel E
Author(s): Tang YQ, Yeaman MR, Selsted ME
Author(s): Safer D, Chowrashi PK
Author(s): Saelee N, Noonin C, Nupan B, Junkunlo K, Phongdara A, et al.
Author(s): Zhang FX, Shao HL, Wang JX, Zhao XF
Author(s): Li C, Haug T, Styrvold OB, JØrgensen TØ, Stensvåg K
Author(s): Selsted ME, Ouellette AJ
Author(s): Daher KA, Selsted ME, Lehrer RI
Author(s): Mandal M, Nagaraj R
Author(s): Li C, Blencke HM, Smith LC, Karp MT, Stensvåg K
Author(s): Li C, Haug T, Moe MK, Styrvold OB, Stensvåg K
Author(s): Bjorn C, HÁkansson J, Myhrman E, Sjostrand V, Haug T, et al.
Author(s): Wilson M
Author(s): Parsek MR, Singh PK
Author(s): Archer NK, Mazaitis MJ, Costerton JW, Leid JG, Powers ME, et al.
Author(s): Obst U, Schwartz T, Volkmann H
Author(s): Horswill AR, Stoodley P, Stewart PS, Parsek MR
Author(s): Spoering AL, Gilmore MS
Author(s): Brogden NK, Brogden KA
Author(s): Huang Y, Huang J, Chen Y
Author(s): Hall-Stoodley L, Stoodley P
Author(s): Landini P, Antoniani D, Burgess JG, Nijland R
Author(s): Pieters RJ, Arnusch CJ, Breukink E
Author(s): Chan DI, Prenner EJ, Vogel HJ
Author(s): Schillaci D, Vitale M, Cusimano MG, Arizza V