Gregory Sonia M, Cavenaugh Allison, Journigan Velvet, Pokorny Antje, Almeida Paulo F F
Department of Chemistry and Biochemistry, University of North Carolina-Wilmington, Wilmington, North Carolina, USA.
Biophys J. 2008 Mar 1;94(5):1667-80. doi: 10.1529/biophysj.107.118760. Epub 2007 Oct 5.
The mechanism of the all-or-none release of the contents of phospholipid vesicles induced by the antimicrobial peptide cecropin A was investigated. A detailed experimental study of the kinetics of dye release showed that the rate of release increases with the ratio of peptide bound per vesicle and, at constant concentration, with the fraction of the anionic lipid phosphatidylglycerol in neutral, phosphatidylcholine membranes. Direct measurement of the kinetics of peptide binding and dissociation from vesicles revealed that the on-rate is almost independent of vesicle composition, whereas the off-rate decreases by orders of magnitude with increasing content of anionic lipid. A simple, exact model fits all experimental kinetic data quantitatively. This is the first time that an exact kinetic model is implemented for a peptide with an all-or-none mechanism. In this model, cecropin A binds reversibly to vesicles, which at a certain point enter an unstable state. In this state, a pore probably opens and all vesicle contents are released, consistent with the all-or-none mechanism. This pore state is a state of the whole vesicle, but does not necessarily involve all peptides on that vesicle. No peptide oligomerization on the vesicle is involved; alternative models that assume oligomerization are inconsistent with the experimental data. Thus, formation of well-defined, peptide-lined pores is unlikely.
对抗菌肽天蚕素A诱导磷脂囊泡内容物全或无释放的机制进行了研究。对染料释放动力学的详细实验研究表明,释放速率随每个囊泡结合肽的比例增加而增加,并且在恒定浓度下,随中性磷脂酰胆碱膜中阴离子脂质磷脂酰甘油的比例增加而增加。对肽与囊泡结合和解离动力学的直接测量表明,结合速率几乎与囊泡组成无关,而解离速率随着阴离子脂质含量的增加而降低几个数量级。一个简单、精确的模型定量拟合了所有实验动力学数据。这是首次为具有全或无机制的肽建立精确的动力学模型。在该模型中,天蚕素A可逆地与囊泡结合,囊泡在某一时刻进入不稳定状态。在这种状态下,可能会打开一个孔,所有囊泡内容物都会释放,这与全或无机制一致。这种孔状态是整个囊泡的一种状态,但不一定涉及该囊泡上的所有肽。不涉及囊泡上的肽寡聚化;假设寡聚化的替代模型与实验数据不一致。因此,不太可能形成明确的、由肽构成的孔。