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通过固态19F-NMR观察到抗菌肽PGLa在脂质膜中浓度依赖性的重新排列。

Concentration-dependent realignment of the antimicrobial peptide PGLa in lipid membranes observed by solid-state 19F-NMR.

作者信息

Glaser Ralf W, Sachse Carsten, Dürr Ulrich H N, Wadhwani Parvesh, Afonin Sergii, Strandberg Erik, Ulrich Anne S

机构信息

Institute of Biochemistry and Biophysics, University of Jena, Jena, Germany.

出版信息

Biophys J. 2005 May;88(5):3392-7. doi: 10.1529/biophysj.104.056424. Epub 2005 Feb 4.

Abstract

The membrane-disruptive antimicrobial peptide PGLa is found to change its orientation in a dimyristoyl-phosphatidylcholine bilayer when its concentration is increased to biologically active levels. The alignment of the alpha-helix was determined by highly sensitive solid-state NMR measurements of (19)F dipolar couplings on CF(3)-labeled side chains, and supported by a nonperturbing (15)N label. At a low peptide/lipid ratio of 1:200 the amphiphilic peptide resides on the membrane surface in the so-called S-state, as expected. However, at high peptide concentration (>/=1:50 molar ratio) the helix axis changes its tilt angle from approximately 90 degrees to approximately 120 degrees , with the C-terminus pointing toward the bilayer interior. This tilted "T-state" represents a novel feature of antimicrobial peptides, which is distinct from a membrane-inserted I-state. At intermediate concentration, PGLa is in exchange between the S- and T-state in the timescale of the NMR experiment. In both states the peptide molecules undergo fast rotation around the membrane normal in liquid crystalline bilayers; hence, large peptide aggregates do not form. Very likely the obliquely tilted T-state represents an antiparallel dimer of PGLa that is formed in the membrane at increasing concentration.

摘要

膜破坏抗菌肽PGLa在其浓度增加到生物活性水平时,会在二肉豆蔻酰磷脂酰胆碱双层膜中改变其取向。α-螺旋的排列通过对CF(3)标记侧链上的(19)F偶极耦合进行高灵敏度固态核磁共振测量来确定,并得到无干扰的(15)N标记的支持。正如预期的那样,在低肽/脂比为1:200时,两亲性肽以所谓的S态存在于膜表面。然而,在高肽浓度(≥1:50摩尔比)下,螺旋轴的倾斜角从约90度变为约120度,C端指向双层膜内部。这种倾斜的“T态”代表了抗菌肽的一个新特征,它不同于膜插入的I态。在中间浓度下,PGLa在核磁共振实验的时间尺度内处于S态和T态之间的交换状态。在两种状态下,肽分子在液晶双层膜中围绕膜法线进行快速旋转;因此,不会形成大的肽聚集体。很可能倾斜的T态代表了在膜中随着浓度增加而形成的PGLa反平行二聚体。

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