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α-防御素中的精氨酸:杀菌活性的差异效应与膜曲率生成的几何形状和肽-脂相间行为相对应。

Arginine in α-defensins: differential effects on bactericidal activity correspond to geometry of membrane curvature generation and peptide-lipid phase behavior.

机构信息

Department of Bioengineering, UCLA, Los Angeles, California 90095-1600, USA.

出版信息

J Biol Chem. 2012 Jun 22;287(26):21866-72. doi: 10.1074/jbc.M112.358721. Epub 2012 May 7.

Abstract

The conserved tridisulfide array of the α-defensin family imposes a common triple-stranded β-sheet topology on peptides that may have highly diverse primary structures, resulting in differential outcomes after targeted mutagenesis. In mouse cryptdin-4 (Crp4) and rhesus myeloid α-defensin-4 (RMAD4), complete substitutions of Arg with Lys affect bactericidal peptide activity very differently. Lys-for-Arg mutagenesis attenuates Crp4, but RMAD4 activity remains mostly unchanged. Here, we show that the differential biological effect of Lys-for-Arg replacements can be understood by the distinct phase behavior of the experimental peptide-lipid system. In Crp4, small-angle x-ray scattering analyses showed that Arg-to-Lys replacements shifted the induced nanoporous phases to a different range of lipid compositions compared with the Arg-rich native peptide, consistent with the attenuation of bactericidal activity by Lys-for-Arg mutations. In contrast, such phases generated by RMAD4 were largely unchanged. The concordance between small-angle x-ray scattering measurements and biological activity provides evidence that specific types of α-defensin-induced membrane curvature-generating tendencies correspond directly to bactericidal activity via membrane destabilization.

摘要

α-防御素家族保守的三硫键阵列赋予了具有高度不同一级结构的肽共同的三股β-折叠拓扑结构,导致靶向突变后的结果不同。在鼠源防御素 4(Crp4)和恒河猴髓系α-防御素 4(RMAD4)中,精氨酸完全替换为赖氨酸会极大地影响杀菌肽活性。Lys-for-Arg 突变会削弱 Crp4 的活性,但 RMAD4 的活性基本不变。在这里,我们通过实验肽-脂质体系的不同相行为表明,Lys-for-Arg 取代的不同生物学效应是可以理解的。在 Crp4 中,小角 X 射线散射分析表明,与富含精氨酸的天然肽相比,Arg 到 Lys 的替换将诱导纳米孔相转移到不同的脂质组成范围,这与 Lys-for-Arg 突变削弱杀菌活性一致。相比之下,RMAD4 产生的这些相基本不变。小角 X 射线散射测量和生物学活性之间的一致性提供了证据,即特定类型的α-防御素诱导的膜曲率产生倾向通过膜去稳定化直接对应于杀菌活性。

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