首页> 外文期刊>The journal of peptide research: official journal of the American Peptide Society >NMR structural characterization of cecropin A(1-8) - magainin 2(1-12) and cecropin A (1-8) - melittin (1-12) hybrid peptides.
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NMR structural characterization of cecropin A(1-8) - magainin 2(1-12) and cecropin A (1-8) - melittin (1-12) hybrid peptides.

机译:cecropin A(1-8)-magainin 2(1-12)和cecropin A(1-8)-melittin(1-12)杂合肽的NMR结构表征。

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摘要

In order to elucidate the structure-antibiotic activity relationships of the peptides, the three-dimensional structures of two hybrid peptides, CA(1-8) - MA(1-12) and CA(1-8) - ME(1-12) in trifluoroethanol-containing aqueous solution were investigated by NMR spectroscopy. Both CA(1-8) - MA(1-12) and CA(1-8) - ME(1-12) have strong antibacterial activity but only CA(1-8) - ME(1-12) has hemolytic activity against human erythrocytes. CA(1-8) - MA(1-12) has a hydrophobic 310-helix of only two turns combined with one short helix in the N-terminus with a flexible hinge section in between. CA(1-8) - MA(1-12) has a severely bent structure in the middle of the peptide. These structural features as well as the low hydrophobicity of CA(1-8) - MA(1-12) seem to be crucial for the selective lysis against the membrane of prokaryotic cells. CA(1-8) - ME(1-12) has an alpha-helical structure of about three turns in the melittin domain and a flexible structure with one turn in the cecropin domain connected with a flexible hinge section in between, and these might be the structural features required for membrane disruption against prokaryotic and eukaryotic cells. The central hinge region (Gly9-Ile10-Gly11) in an amphipathic antibacterial peptide is considered to play an important role in providing the conformational flexibility required for ion channel formation of the C-terminal hydrophobic alpha-helix on cell membrane.
机译:为了阐明这些肽的结构-抗生素活性关系,两个杂合肽CA(1-8)-MA(1-12)和CA(1-8)-ME(1-12)的三维结构通过NMR光谱研究在含三氟乙醇的水溶液中的)。 CA(1-8)-MA(1-12)和CA(1-8)-ME(1-12)都具有较强的抗菌活性,但只有CA(1-8)-ME(1-12)具有溶血活性对抗人类的红细胞。 CA(1-8)-MA(1-12)具有仅两匝的疏水性310螺旋,在N端具有一个短螺旋,两者之间具有柔性铰链部分。 CA(1-8)-MA(1-12)在肽的中间严重弯曲。这些结构特征以及CA(1-8)-MA(1-12)的低疏水性似乎对于针对原核细胞膜的选择性裂解至关重要。 CA(1-8)-ME(1-12)在蜂毒肽结构域中具有大约三匝的α螺旋结构,而在天蚕素结构域中具有一匝并在其之间连接有柔性铰链部分的柔性结构,这些可能是针对原核和真核细胞膜破坏所需的结构特征。两亲性抗菌肽中的中央铰链区(Gly9-Ile10-Gly11)被认为在提供细胞膜上C端疏水性α-螺旋的离子通道形成所需的构象柔韧性中起着重要作用。

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