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新型18残基肽菌素(trichorzins PA)的类短杆菌肽A行为。C端氨基醇在离子通道形成活性中的作用。

Alamethicin-like behaviour of new 18-residue peptaibols, trichorzins PA. Role of the C-terminal amino-alcohol in the ion channel forming activity.

作者信息

Duval D, Cosette P, Rebuffat S, Duclohier H, Bodo B, Molle G

机构信息

Laboratoire de Chimie des Substances Naturelles, URA 401 CNRS, GDR 1153 CNRS, IFR 63 CNRS-INSERM, Muséum National d'Histoire Naturelle, 63 rue Buffon, 75231 Paris Cedex 05, France.

出版信息

Biochim Biophys Acta. 1998 Mar 2;1369(2):309-19. doi: 10.1016/s0005-2736(97)00235-6.

Abstract

The influences of peptide length, absence of a Glx (Gln/Glu) residue and the C-terminal amino alcohol on liposome permeabilization and ion-channel characteristics in planar lipid bilayers were examined with two 18-residue peptaibols, PA V and PA IX. As compared to the 20-residue alamethicin, both peptides belonging to the newly isolated trichorzin family, lack a proline in the N-terminal part and one of the two Gln/Glu residues in the C-terminal part of the sequence. The two analogues studied here differ among themselves in their C-terminal amino alcohol (tryptophanol for PA V and phenylalaninol for PA IX). These alpha-helical peptaibols modify to a similar extent the permeability of liposomes, as measured by leakage of a previously entrapped fluorescent probe. Monitoring tryptophanol fluorescence, a greater embedment of the peptide PA V is observed in cholesterol-free bilayers. Macroscopic conductance studies for PA V and PA IX display alamethicin-like current-voltage curves, with a similar voltage dependence, but a smaller mean number of monomers per conducting aggregate is estimated for the tryptophanol analogue, PA V. Single-channel recordings indicate faster current fluctuations for PA IX, while amplitude histograms show lower conductance levels for PA V. Apart from underlining the role of the mismatch between helix length and bilayer hydrophobic thickness, these results stress that the C-terminal tryptophanol favours a stabilization of the conducting aggregates.

摘要

使用两种18个残基的短杆菌肽PA V和PA IX,研究了肽长度、缺少Glx(Gln/Glu)残基以及C末端氨基醇对平面脂质双层中脂质体通透性和离子通道特性的影响。与20个残基的短杆菌酪肽相比,这两种属于新分离的trichorzin家族的肽在序列的N末端部分缺少一个脯氨酸,在C末端部分缺少两个Gln/Glu残基中的一个。这里研究的两种类似物在其C末端氨基醇方面彼此不同(PA V为色醇,PA IX为苯丙醇)。这些α-螺旋短杆菌肽对脂质体通透性的修饰程度相似,通过先前包封的荧光探针的泄漏来测量。监测色醇荧光,在无胆固醇的双层中观察到肽PA V有更大的嵌入。对PA V和PA IX的宏观电导研究显示出类似短杆菌酪肽的电流-电压曲线,具有相似的电压依赖性,但对于色醇类似物PA V,估计每个导电聚集体的单体平均数量较少。单通道记录表明PA IX的电流波动更快,而幅度直方图显示PA V的电导水平较低。除了强调螺旋长度与双层疏水厚度不匹配的作用外,这些结果还强调C末端色醇有利于导电聚集体的稳定。

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