Dos Santos Cabrera Marcia Perez, Arcisio-Miranda Manoel, Broggio Costa Sabrina Thais, Konno Katsuhiro, Ruggiero José Roberto, Procopio Joaquim, Ruggiero Neto João
USP, University of São Paulo, Department of Physiology and Biophysics, Biomedical Sciences Institute, São Paulo, SP, Brazil.
J Pept Sci. 2008 Jun;14(6):661-9. doi: 10.1002/psc.960.
Anoplin, an antimicrobial, helical decapeptide from wasp venom, looses its biological activities by mere deamidation of its C-terminus. Secondary structure determination, by circular dichroism spectroscopy in amphipathic environments, and lytic activity in zwitterionic and anionic vesicles showed quite similar results for the amidated and the carboxylated forms of the peptide. The deamidation of the C-terminus introduced a negative charge at an all-positive charged peptide, causing a loss of amphipathicity, as indicated by molecular dynamics simulations in TFE/water mixtures and this subtle modification in a peptide's primary structure disturbed the interaction with bilayers and biological membranes. Although being poorly lytic, the amidated form, but not the carboxylated, presented ion channel-like activity on anionic bilayers with a well-defined conductance step; at approximately the same concentration it showed antimicrobial activity. The pores remain open at trans-negative potentials, preferentially conducting cations, and this situation is equivalent to the interaction of the peptide with bacterial membranes that also maintain a high negative potential inside.
黄蜂毒液中的一种抗菌螺旋十肽——安诺普林,仅通过其C末端的脱酰胺作用就会丧失其生物活性。在两亲性环境中通过圆二色光谱法测定二级结构,以及在两性离子和阴离子囊泡中的裂解活性,结果表明该肽的酰胺化形式和羧化形式非常相似。C末端的脱酰胺作用在一个全带正电荷的肽上引入了一个负电荷,导致两亲性丧失,如在TFE/水混合物中的分子动力学模拟所示,肽一级结构的这种细微修饰扰乱了与双层膜和生物膜的相互作用。尽管酰胺化形式的裂解能力较弱,但在阴离子双层膜上具有明确的电导步骤,呈现出类似离子通道的活性;而羧化形式则没有这种活性;在大约相同浓度下,它表现出抗菌活性。这些孔在跨膜负电位下保持开放,优先传导阳离子,这种情况等同于该肽与细菌膜的相互作用,细菌膜内部也保持着高负电位。