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肽的柔韧性和疏水力矩是评估抗菌肽 Magainin 临床潜力的决定因素。

Peptide Flexibility and the Hydrophobic Moment are Determinants to Evaluate the Clinical Potential of Magainins.

机构信息

Laboratorio de Microbiología, Unidad de Investigación y Desarrollo en Alimentos, Instituto Tecnológico de Veracruz, Tecnológico Nacional de México, Veracruz, Mexico.

出版信息

J Membr Biol. 2023 Dec;256(4-6):317-330. doi: 10.1007/s00232-023-00286-w. Epub 2023 Apr 25.

Abstract

Using a flexibility prediction algorithm and in silico structural modeling, we have calculated the intrinsic flexibility of several magainin derivatives. In the case of magainin-2 (Mag-2) and magainin H2 (MAG-H2) we have found that MAG-2 is more flexible than its hydrophobic analog, Mag-H2. This affects the degree of bending of both peptides, with a kink around two central residues (R10, R11), whereas, in Mag-H2, W10 stiffens the peptide. Moreover, this increases the hydrophobic moment of Mag-H2, which could explain its propensity to form pores in POPC model membranes, which exhibit near-to-zero spontaneous curvatures. Likewise, the protective effect described in DOPC membranes for this peptide regarding its facilitation in pore formation would be related to the propensity of this lipid to form membranes with negative spontaneous curvature. The flexibility of another magainin analog (MSI-78) is even greater than that of Mag-2. This facilitates the peptide to present a kind of hinge around the central F12 as well as a C-terminal end prone to be disordered. Such characteristics are key to understanding the broad-spectrum antimicrobial actions exhibited by this peptide. These data reinforce the hypothesis on the determinant role of spontaneous membrane curvature, intrinsic peptide flexibility, and specific hydrophobic moment in assessing the bioactivity of membrane-active antimicrobial peptides.

摘要

我们使用柔韧性预测算法和计算机结构建模,计算了几种抗菌肽衍生物的固有柔韧性。在抗菌肽 2(Mag-2)和抗菌肽 H2(MAG-H2)的情况下,我们发现 MAG-2 比其疏水性类似物 Mag-H2 更具柔韧性。这会影响两种肽的弯曲程度,在两个中心残基(R10、R11)周围形成一个拐点,而在 Mag-H2 中,W10 使肽变硬。此外,这增加了 Mag-H2 的疏水性矩,这可以解释其在具有近零自发曲率的 POPC 模型膜中形成孔的倾向。同样,该肽在 DOPC 膜中描述的保护作用,关于其促进孔形成的作用,可能与该脂质形成具有负自发曲率的膜的倾向有关。另一种抗菌肽类似物(MSI-78)的柔韧性甚至比 Mag-2 还要大。这使得该肽在中央 F12 周围呈现一种铰链样结构,并使 C 末端易于无序化。这些特征是理解该肽广谱抗菌作用的关键。这些数据加强了关于自发膜曲率、固有肽柔韧性和特定疏水性矩在评估膜活性抗菌肽生物活性方面的决定性作用的假设。

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