首页> 外文期刊>Protein Science: A Publication of the Protein Society >Fusogenic Alzheimer's peptide fragment Abeta (29-42) in interaction with lipid bilayers: secondary structure, dynamics, and specific interaction with phosphatidyl ethanolamine polar heads as revealed by solid-state NMR.
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Fusogenic Alzheimer's peptide fragment Abeta (29-42) in interaction with lipid bilayers: secondary structure, dynamics, and specific interaction with phosphatidyl ethanolamine polar heads as revealed by solid-state NMR.

机译:与脂质双层相互作用的融合型阿尔茨海默氏症多肽片段Abeta(29-42):二级结构,动力学和与磷脂酰乙醇胺极性头的特异性相互作用,如固态NMR所示。

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摘要

The interaction of the native Alzheimer's peptide C-terminal fragment Abeta (29-42), and two mutants (G33A and G37A) with neutral lipid bilayers made of POPC and POPE in a 9:1 molar ratio was investigated by solid-state NMR. This fragment and the lipid composition were selected because they represent the minimum requirement for the fusogenic activity of the Alzheimer's peptide. The chemical shifts of alanine methyl isotropic carbon were determined by MAS NMR, and they clearly demonstrated that the major form of the peptide equilibrated in membrane is not in a helical conformation. (2)H NMR, performed with acyl chain deuterated POPC, demonstrated that there is no perturbation of the acyl chain's dynamics and of the lipid phase transition temperature. (2)H NMR, performed with alanine methyl-deuterated peptide demonstrated that the peptide itself has a limited mobility below and above the lipid phase transition temperature (molecular order parameter equal to 0.94). MAS (31)P NMR revealed a specific interaction with POPE polar head as seen by the enhancement of POPE phosphorus nuclei T(2) relaxation. All these results are in favor of a beta-sheet oligomeric association of the peptide at the bilayer interface, preferentially recruiting phosphatidyl ethanolamine polar heads.
机译:通过固态NMR研究了天然Alzheimer肽C末端片段Abeta(29-42)和两个突变体(G33A和G37A)与POPC和POPE组成的中性脂质双层的摩尔比为9:1的相互作用。选择该片段和脂质组成,是因为它们代表了阿尔茨海默氏病多肽的融合活性的最低要求。丙氨酸甲基各向同性碳的化学位移通过MAS NMR测定,它们清楚地证明了在膜中平衡的肽的主要形式不是螺旋构象。用酰基链氘化的POPC进行的(2)H NMR表明,没有干扰酰基链的动力学和脂质相变温度。用丙氨酸甲基氘化的肽进行的(2)1 H NMR表明,该肽本身在脂质相变温度以下和之上(脂质分子序参数等于0.94)具有有限的迁移率。 MAS(31)P NMR揭示了与POPE极性头的特定相互作用,如POPE磷核T(2)弛豫的增强所见。所有这些结果都有利于该肽在双层界面处的β-折叠寡聚缔合,优先募集磷脂酰乙醇胺极性头。

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