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溶菌酶与磷脂表面的结合及囊泡融合

Association of lysozyme to phospholipid surfaces and vesicle fusion.

作者信息

Arnold K, Hoekstra D, Ohki S

机构信息

Department of Biophysical Sciences, State University of New York, Buffalo.

出版信息

Biochim Biophys Acta. 1992 Feb 20;1124(1):88-94. doi: 10.1016/0005-2760(92)90130-n.

Abstract

Lysozyme-induced fusion of phosphatidylserine (PS) vesicles was studied as a function of pH. Fusion, monitored by lipid-mixing, was measured by following the dilution of pyrene-labelled phosphatidylcholine, incorporated in PS vesicles, into unlabelled bilayers. It is demonstrated that lysozyme-induced fusion is pH-dependent and significant fusion is triggered at pH 5 or below. The interaction of lysozyme with the vesicle bilayer was characterized by measuring resonance energy transfer from tryptophane, present in the protein, to pyrene. It is shown that concomitant with fusion, a strong resonance energy transfer signal appears at pH 5 or below. Furthermore, in monolayer experiments it was found that addition of lysozyme to the subphase caused an increase in surface pressure, when the pH was kept below 5.5. Very low concentrations of lysozyme sufficed to bring about the observed effects. The results are taken to indicate that lysozyme-induced fusion results from penetration of protein into the hydrophobic core of the bilayer, occurring at acidic pH.

摘要

研究了溶菌酶诱导的磷脂酰丝氨酸(PS)囊泡融合与pH的关系。通过脂质混合监测融合过程,具体方法是追踪掺入PS囊泡中的芘标记磷脂酰胆碱稀释到未标记双层中的情况。结果表明,溶菌酶诱导的融合依赖于pH,在pH 5或更低时会引发显著融合。通过测量蛋白质中色氨酸到芘的共振能量转移,表征了溶菌酶与囊泡双层的相互作用。结果显示,伴随着融合,在pH 5或更低时会出现强烈的共振能量转移信号。此外,在单层实验中发现,当pH保持在5.5以下时,向亚相添加溶菌酶会导致表面压力增加。极低浓度的溶菌酶就足以产生观察到的效果。这些结果表明,溶菌酶诱导的融合是由于蛋白质在酸性pH下渗透到双层的疏水核心中所致。

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