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蜂毒肽对阴离子脂质囊泡的“去污剂样”通透作用

'Detergent-like' permeabilization of anionic lipid vesicles by melittin.

作者信息

Ladokhin A S, White S H

机构信息

Department of Physiology and Biophysics, University of California, 364-D Medical Sciences 1, Irvine, CA 92697-4560, USA.

出版信息

Biochim Biophys Acta. 2001 Oct 1;1514(2):253-60. doi: 10.1016/s0005-2736(01)00382-0.

Abstract

Melittin (MLT), the 26-residue toxic peptide from the European honeybee Apis mellifera, is widely used for studying the principles of membrane permeabilization by antimicrobial and other host-defense peptides. A striking property of MLT is that its ability to permeabilize zwitterionic phospholipid vesicles is dramatically reduced upon the addition of anionic lipids. Because the mechanism of permeabilization may be fundamentally different for the two types of lipids, we examined MLT-induced release of entrapped fluorescent dextran markers of two different molecular masses (4 and 50 kDa) from anionic palmitoyloleoylphosphatidylglycerol (POPG) vesicles. Unlike release from palmitoyloleoylphosphatidylcholine (POPC) vesicles, which is highly selective for the 4 kDa marker, implying release through pores of about 25 A diameter [Ladokhin et al., Biophys. J. 72 (1997) 1762], release from POPG vesicles was found to be non-selective, i.e., 'detergent-like'. Oriented circular dichroism measurements of MLT in oriented POPG and POPC multilayers disclosed that alpha-helical MLT can be induced to adopt a transbilayer orientation in POPC multilayers, but not in POPG multilayers. The apparent inhibition of MLT permeabilization by anionic membranes may thus be due to suppression of translocation ability.

摘要

蜂毒肽(MLT)是来自欧洲蜜蜂意大利蜜蜂的一种由26个氨基酸组成的毒性肽,被广泛用于研究抗菌肽和其他宿主防御肽使膜通透化的原理。MLT的一个显著特性是,在添加阴离子脂质后,其使两性离子磷脂囊泡通透化的能力会大幅降低。由于这两种脂质的通透化机制可能存在根本差异,我们研究了MLT诱导两种不同分子量(4 kDa和50 kDa)的包封荧光葡聚糖标记物从阴离子型棕榈酰油酰磷脂酰甘油(POPG)囊泡中释放的情况。与从棕榈酰油酰磷脂酰胆碱(POPC)囊泡中的释放不同,后者对4 kDa标记物具有高度选择性,这意味着是通过直径约25 Å的孔释放[Ladokhin等人,《生物物理学杂志》72 (1997) 1762],而从POPG囊泡中的释放是非选择性的,即“类似去污剂”。对MLT在定向的POPG和POPC多层膜中的定向圆二色性测量表明,α-螺旋MLT在POPC多层膜中可被诱导采取跨膜取向,但在POPG多层膜中则不然。因此,阴离子膜对MLT通透化的明显抑制可能是由于转运能力的抑制。

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