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跨膜pH梯度诱导的大单层囊泡中的磷脂不对称性。

Phospholipid asymmetry in large unilamellar vesicles induced by transmembrane pH gradients.

作者信息

Hope M J, Redelmeier T E, Wong K F, Rodrigueza W, Cullis P R

机构信息

Biochemistry Department, University of British Columbia, Vancouver, Canada.

出版信息

Biochemistry. 1989 May 16;28(10):4181-7. doi: 10.1021/bi00436a009.

Abstract

The influence of membrane pH gradients on the transbilayer distribution of some common phospholipids has been investigated. We demonstrate that the transbilayer equilibrium of the acidic phospholipids egg phosphatidylglycerol (EPG) and egg phosphatidic acid (EPA) can be manipulated by membrane proton gradients, whereas phosphatidylethanolamine, a zwitterionic phospholipid, remains equally distributed between the inner and outer monolayers of large unilamellar vesicles (LUVs). Asymmetry of EPG is examined in detail and demonstrated by employing three independent techniques: ion-exchange chromatography, 13C NMR, and periodic acid oxidation of the (exterior) EPG headgroup. In the absence of a transmembrane pH gradient (delta pH) EPG is equally distributed between the outer and inner monolayers of LUVs. When vesicles composed of either egg phosphatidylcholine (EPC) or DOPC together with 5 mol % EPG are prepared with a transmembrane delta pH (inside basic, outside acidic), EPG equilibrates across the bilayer until 80-90% of the EPG is located in the inner monolayer. Reversing the pH gradient (inside acidic, outside basic) results in the opposite asymmetry. The rate at which EPG equilibrates across the membrane is temperature dependent. These observations are consistent with a mechanism in which the protonated (neutral) species of EPG is able to traverse the bilayer. Under these circumstances EPG would be expected to equilibrate across the bilayer in a manner that reflects the transmembrane proton gradient. A similar mechanism has been demonstrated to apply to simple lipids that exhibit weak acid or base characteristics [Hope, M. J., & Cullis, P. R. (1987) J. Biol. Chem 262, 4360-4366]

摘要

研究了膜pH梯度对一些常见磷脂跨膜分布的影响。我们证明,酸性磷脂卵磷脂酰甘油(EPG)和卵磷脂酸(EPA)的跨膜平衡可通过膜质子梯度来调控,而两性离子磷脂磷脂酰乙醇胺在大单层囊泡(LUVs)的内、外单层中保持均匀分布。通过三种独立技术详细研究并证明了EPG的不对称性:离子交换色谱法、13C核磁共振法以及(外部)EPG头基团的高碘酸氧化法。在不存在跨膜pH梯度(ΔpH)的情况下,EPG在LUVs的外单层和内单层之间均匀分布。当由卵磷脂酰胆碱(EPC)或二油酰磷脂酰胆碱(DOPC)与5 mol% EPG组成的囊泡在跨膜ΔpH(内部碱性,外部酸性)条件下制备时,EPG会跨双层达到平衡,直到80 - 90%的EPG位于内单层。反转pH梯度(内部酸性,外部碱性)会导致相反的不对称性。EPG跨膜达到平衡的速率取决于温度。这些观察结果与一种机制相符,即EPG的质子化(中性)形式能够穿过双层。在这种情况下,预计EPG会以反映跨膜质子梯度的方式跨双层达到平衡。已证明类似的机制适用于表现出弱酸或弱碱特性的简单脂质[霍普,M. J.,& 卡利斯,P. R.(1987年)《生物化学杂志》262,4360 - 4366]

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