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通过氘核磁共振光谱研究脂质六方相的曲率、有序性和动力学。

Curvature, order, and dynamics of lipid hexagonal phases studied by deuterium NMR spectroscopy.

作者信息

Thurmond R L, Lindblom G, Brown M F

机构信息

Department of Chemistry, University of Arizona, Tucson 85721.

出版信息

Biochemistry. 1993 May 25;32(20):5394-410. doi: 10.1021/bi00071a015.

Abstract

Solid-state deuterium (2H) NMR spectroscopy enables one to study both equilibrium and dynamical properties of membrane constituents at the molecular level and can yield significant insights regarding the organization of non-bilayer lipid aggregates. We have investigated a representative unsaturated phosphatidylethanolamine, viz., 1-perdeuteriopalmitoyl-2-linoleoyl-sn-glycero- 3-phosphoethanolamine, PLPE-d31, in the lamellar, or L alpha, phase and the reversed hexagonal, or HII, phase. Phosphorus-31 (31P) NMR studies of PLPE-d31 in the HII phase revealed that the chemical shift anisotropy of the phosphoethanolamine head groups, delta sigma, was scaled by the expected geometrical factor of -1/2 relative to the lamellar state. However, we found the occurrence of a further reduction in the 2H NMR quadrupolar splittings, delta vQ, of the 2H-labeled palmitoyl acyl chain segments. These observations point toward the role of interfacial curvature with regard to properties of reverse hexagonal phase lipids, and indicate that the pivotal position or neutral surface of approximately constant area may lie near the glycerol or polar head group region. Variations in the acyl chain packing due to curvature of the aqueous interface yield significant differences in the segmental order profiles as determined by 2H NMR spectroscopy. The latter reflect the local orientational order of the acyl chains and can be used together with simple statistical theories to extract positional or structural information. Average projected acyl chain lengths and mean interfacial or cross-sectional areas for PLPE-d31 in the different phases have been calculated. In addition, we describe a new means of estimating the radius of curvature of HII phase lipid aggregates utilizing 2H NMR spectroscopy, which is based on the difference between the lamellar and hexagonal phase order profiles. Here the radius of curvature, Rc, is defined as the distance from the center of the water core to the lipid/water interface, near the carbonyl segments of the acyl chains, giving Rc = 25.4-28.1 A for PLPE-d31 in the HII phase at 60 degrees C. This value is in good agreement with previous X-ray diffraction studies of 1,2-dioleoyl-sn-glycero-3-phosphoethanolamine (DOPE). Alternatively, the data yield for the radius of the central water core that Rw = 17.8-20.5 A at 60 degrees C. The differences in geometry also lead to higher quadrupolar echo relaxation rates (R2e) for the lipid acyl segments closest to the aqueous interface in the HII versus the L alpha phase.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

固态氘(2H)核磁共振光谱能够在分子水平上研究膜成分的平衡和动力学性质,并能提供有关非双层脂质聚集体组织的重要见解。我们研究了一种代表性的不饱和磷脂酰乙醇胺,即1-全氘代棕榈酰-2-亚油酰-sn-甘油-3-磷酸乙醇胺,PLPE-d31,在片层相(或Lα相)和反相六角相(或HII相)中的情况。对处于HII相的PLPE-d31进行的磷-31(31P)核磁共振研究表明,相对于片层状态,磷酸乙醇胺头部基团的化学位移各向异性δσ按预期的几何因子-1/2进行缩放。然而,我们发现2H标记的棕榈酰酰基链段的2H核磁共振四极分裂δvQ进一步减小。这些观察结果表明界面曲率对反相六角相脂质性质的作用,并表明近似恒定面积的关键位置或中性表面可能位于甘油或极性头部基团区域附近。由于水界面曲率导致的酰基链堆积变化,在通过2H核磁共振光谱测定的链段序参数方面产生了显著差异。后者反映了酰基链的局部取向序,可与简单的统计理论一起用于提取位置或结构信息。已经计算了不同相中PLPE-d31的平均投影酰基链长度和平均界面或横截面积。此外,我们描述了一种利用2H核磁共振光谱估计HII相脂质聚集体曲率半径的新方法,该方法基于片层相和六角相序参数之间的差异。这里,曲率半径Rc定义为从水核中心到脂质/水界面的距离,靠近酰基链的羰基段,在60℃时,PLPE-d31在HII相中的Rc = 25.4 - 28.1 Å。该值与先前对1,2-二油酰-sn-甘油-3-磷酸乙醇胺(DOPE)的X射线衍射研究结果吻合良好。或者,数据得出在60℃时中心水核半径Rw = 17.8 - 20.5 Å。几何结构的差异还导致HII相比Lα相更靠近水界面的脂质酰基段具有更高的四极回波弛豫率(R2e)。

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