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利用位移试剂核磁共振技术研究超声处理囊泡中磷脂的内外分布、膜间交换及跨膜运动。

Investigation of the inside-outside distribution, intermembrane exchange and transbilayer movement of phospholipids in sonicated vesicles by shift reagent NMR.

作者信息

Barsukov L I, Victorov A V, Vasilenko I A, Evstigneeva R P, Bergelson L D

出版信息

Biochim Biophys Acta. 1980 May 8;598(1):153-68. doi: 10.1016/0005-2736(80)90273-4.

Abstract
  1. A new NMR approach is described for the investigation of transbilayer asymmetry in phospholipid vesicles consisting of phosphatidylcholine and negatively charged phospholipids. The method makes use of the dependence of the psuedocontact shift of the N-methyl proton resonance induced by paramagnetic ions on the surface concentration of negatively charged phospholipids. When two differently shifting paramagnetic probes are applied from the outside and the inside of a vesicular membrane the transbilayer phospholipid distribution can be estimated without knowledge of the inner and outer radii of the vesicles and the packing density of the phospholipid molecules. 2. The method was employed to study the transbilayer asymmetry in vesicles obtained by cosonication of phosphatidylcholine with phosphatidylserine, phosphatidylglycerol or phosphatidylinositol. The three negative phospholipids were found to distribute with a higher surface concentration in the inner vesicular shell than in the outer one when their total content did not exceed 25 mol%. However, as the amount of negatively charged phospholipids increases the ratio of their inside to outside surface concentrations, i.e., the transbilayer asymmetry of the vesicles, decreases. Prolonged incubation (for several days) does not change the compositional asymmetry of the cosonicated vesicles. 3. By the 'double-probe' technique it was established that spontaneous exchange between separately sonicated phosphatidylcholine and phosphatidylinositol vesicles results in formation of highly asymmetric mixed vesicles with phosphatidylinositol residing only in the outer monolayer. In the presence of antioxidant (alpha-tocopherol) the bilayer asymmetry is preserved for days. However lipid peroxidation induces rapid transbilayer movement (flip-flop) of phospholipids leading to an 'inverted' asymmetry resembling that of cosonicated vesicles. It is suggested that lipid peroxidation promotes phospholipid flip-flop by partially converting the bilayer structure into a non-bilayer configuration. Moderate quantities of lysophosphatidylcholine (up to 15 mol%) induce neither detectable perturbations of the bilayer nor rapid phospholipid flip-flop.
摘要
  1. 本文描述了一种新的核磁共振方法,用于研究由磷脂酰胆碱和带负电荷的磷脂组成的磷脂囊泡中的跨膜不对称性。该方法利用了顺磁性离子诱导的N-甲基质子共振的赝接触位移对带负电荷磷脂表面浓度的依赖性。当从囊泡膜的外部和内部应用两种不同位移的顺磁性探针时,无需了解囊泡的内半径和外半径以及磷脂分子的堆积密度,就可以估计跨膜磷脂分布。2. 该方法用于研究通过磷脂酰胆碱与磷脂酰丝氨酸、磷脂酰甘油或磷脂酰肌醇共超声处理获得的囊泡中的跨膜不对称性。当三种带负电荷的磷脂总含量不超过25 mol%时,发现它们在内囊泡壳中的表面浓度高于外囊泡壳。然而,随着带负电荷磷脂数量的增加,它们内外表面浓度的比值,即囊泡的跨膜不对称性降低。长时间孵育(数天)不会改变共超声处理囊泡的组成不对称性。3. 通过“双探针”技术确定,单独超声处理的磷脂酰胆碱和磷脂酰肌醇囊泡之间的自发交换导致形成高度不对称的混合囊泡,其中磷脂酰肌醇仅存在于外单层中。在抗氧化剂(α-生育酚)存在下,双层不对称性可保持数天。然而,脂质过氧化会诱导磷脂的快速跨膜运动(翻转),导致类似于共超声处理囊泡的“倒置”不对称性。有人认为,脂质过氧化通过将双层结构部分转化为非双层结构来促进磷脂翻转。适量的溶血磷脂酰胆碱(高达15 mol%)既不会引起可检测到的双层扰动,也不会引起快速的磷脂翻转。

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