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由蛙皮素诱导产生的膜孔。

Membrane pores induced by magainin.

作者信息

Ludtke S J, He K, Heller W T, Harroun T A, Yang L, Huang H W

机构信息

Physics Department, Rice University, Houston, Texas 77005-1892, USA.

出版信息

Biochemistry. 1996 Oct 29;35(43):13723-8. doi: 10.1021/bi9620621.

Abstract

Magainin, found in the skin of Xenopus laevis, belongs to a broad class of antimicrobial peptides which kill bacteria by permeabilizing the cytoplasmic membrane but do not lyse eukaryotic cells. The 23-residue peptide has been shown to form an amphiphilic helix when associated with membranes. However, its molecular mechanism of action has been controversial. Oriented circular dichroism has detected helical magainin oriented perpendicular to the plane of the membrane at high peptide concentrations, but Raman, fluorescence, differential scanning calorimetry, and NMR all indicate that the peptide is associated with the head groups of the lipid bilayer. Here we show that neutron in-plane scattering detects pores formed by magainin 2 in membranes only when a substantial fraction of the peptide is oriented perpendicular to the membrane. The pores are almost twice as large as the alamethicin pores. On the basis of the in-plane scattering data, we propose a toroidal (or wormhole) model, which differs from the barrel-stave model of alamethicin in that the lipid bends back on itself like the inside of a torus. The bending requires a lateral expansion in the head group region of the bilayer. Magainin monomers play the role of fillers in the expansion region thereby stabilizing the pore. This molecular configuration is consistent with all published magainin data.

摘要

爪蟾抗菌肽(magainin)是在非洲爪蟾(Xenopus laevis)皮肤中发现的,属于一类广泛的抗菌肽,这类抗菌肽通过使细胞质膜通透性增加来杀死细菌,但不会裂解真核细胞。这种由23个氨基酸残基组成的肽在与膜结合时会形成两亲性螺旋。然而,其作用的分子机制一直存在争议。取向圆二色性检测到在高肽浓度下,爪蟾抗菌肽螺旋垂直于膜平面取向,但拉曼光谱、荧光光谱、差示扫描量热法和核磁共振都表明该肽与脂质双层的头部基团相关联。在这里我们表明,只有当相当一部分肽垂直于膜取向时,中子面内散射才能检测到膜中由爪蟾抗菌肽2形成的孔。这些孔几乎是短杆菌肽孔的两倍大。基于面内散射数据,我们提出了一种环形(或虫洞)模型,它与短杆菌肽的桶板模型不同,因为脂质会像圆环内部一样自身向后弯曲。这种弯曲需要双层膜头部基团区域的横向扩展。爪蟾抗菌肽单体在扩展区域中起到填充剂的作用,从而稳定孔。这种分子构型与所有已发表的爪蟾抗菌肽数据一致。

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