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富含脯氨酸的中央铰链在抗菌肽家族成员PMAP-23的抗菌活性及膜相互作用中的可能作用

Possible role of a PXXP central hinge in the antibacterial activity and membrane interaction of PMAP-23, a member of cathelicidin family.

作者信息

Yang Sung-Tae, Jeon Jae-Hyuck, Kim Yangmee, Shin Song Yub, Hahm Kyung-Soo, Kim Jae Il

机构信息

Department of Life Science, Gwangju Institute of Science and Technology, Gwangju 500-712, Korea.

出版信息

Biochemistry. 2006 Feb 14;45(6):1775-84. doi: 10.1021/bi051524k.

Abstract

Cathelicidins are essential components of the innate immune system of mammals, providing them a weapon against microbial invasion. PMAP-23 adopting a helix-hinge-helix structure with a central PXXP motif is a member of the cathelicidin family and has potent killing activities against a broad spectrum of microbial organisms. Although the antimicrobial effect of PMAP-23 is believed to be mediated by membrane disruption, many details of this event remain unclear. Here, we try to characterize the interaction between PMAP-23 and membrane phospholipids, focusing on the function of the central PXXP motif. PMAP-PA, in which the Pro residues were substituted by Ala, had significantly more alpha-helical content than PMAP-23, but was less amphipathic and more damaging to human erythrocytes and zwitterionic liposomes. The observed differences in the structures and biological activities of PMAP-23 and PMAP-PA confirmed the functional importance of the central hinge PXXP motif, which enables PMAP-23 to adopt a well-defined amphipathic conformation along its entire length and to have selective antimicrobial activity. CD and Trp fluorescence studies using fragments corresponding to the two helical halves of PMAP-23 revealed that the N-terminal half binds to anionic phospholipids and is more stable than the C-terminal half. In addition, Trp fluorescence quench analyses revealed that the C-terminal helix inserts more deeply into the hydrophobic region of the membrane than the N-terminal helix. Finally, observations made using biosensor technology enabled us to distinguish between the membrane binding and insertion steps, substantiating a proposed kinetic mode of the peptide-membrane interaction in which PMAP-23 first attaches to the membrane via the N-terminal amphipathic helix, after which bending and/or swiveling of the PXXP motif enables insertion of the C-terminal helix into the lipid bilayer.

摘要

Cathelicidin是哺乳动物先天免疫系统的重要组成部分,为它们提供了抵御微生物入侵的武器。PMAP-23是Cathelicidin家族的成员,具有螺旋-铰链-螺旋结构,中间有一个PXXP基序,对多种微生物具有强大的杀伤活性。虽然PMAP-23的抗菌作用被认为是通过膜破坏介导的,但这一过程的许多细节仍不清楚。在这里,我们试图表征PMAP-23与膜磷脂之间的相互作用,重点关注中间PXXP基序的功能。将Pro残基替换为Ala的PMAP-PA比PMAP-23具有更多的α-螺旋含量,但两亲性较低,对人红细胞和两性离子脂质体的损伤更大。PMAP-23和PMAP-PA在结构和生物活性上的差异证实了中间铰链PXXP基序的功能重要性,该基序使PMAP-23能够沿其全长形成明确的两亲性构象,并具有选择性抗菌活性。使用与PMAP-23的两个螺旋半段相对应的片段进行的圆二色性(CD)和色氨酸荧光研究表明,N端半段与阴离子磷脂结合,比C端半段更稳定。此外,色氨酸荧光猝灭分析表明,C端螺旋比N端螺旋更深入地插入膜的疏水区域。最后,使用生物传感器技术进行的观察使我们能够区分膜结合和插入步骤,证实了肽-膜相互作用的一种提出的动力学模式,即PMAP-23首先通过N端两亲性螺旋附着于膜,然后PXXP基序的弯曲和/或旋转使C端螺旋插入脂质双层。

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