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卵磷脂晶体的磁取向

Magneto-orientation of lecithin crystals.

作者信息

Sakurai I, Kawamura Y, Ikegami A, Iwayanagi S

出版信息

Proc Natl Acad Sci U S A. 1980 Dec;77(12):7232-6. doi: 10.1073/pnas.77.12.7232.

DOI:10.1073/pnas.77.12.7232
PMID:6938970
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC350476/
Abstract

For the purpose of clarifying the magneto-orientation mechanism of several biological membrane systems, xylene-suspended thin-layered single crystals of lecithin, which is a major component of membranes, were subjected to magnetic fields of various strengths, and the orientation behavior of the crystals was analyzed. Lecithin crystals oriented in such a way that the directions of both the hydrocarbon chains and the phosphorylcholine group of the lecithin molecule were perpendicular to the magnetic field, suggesting that the crystals were diamagnetically biaxial. In contrast, hydrocarbon chains of phospholipids in many biological membranes are known to orient parallel to magnetic fields. The value of the volume diamagnetic susceptibility anisotropy, delta chi (i.e. the difference between susceptibilities parallel and perpendicular to the direction of the hydrocarbon chain in the lecithin crystals), estimated from the magneto-orientation behavior was about -9 X 10(-8) cgs. This is distinctly larger than that of vesicles of egg yolk lecithin measured by Boroske and Helfrich [Boroske, E. & Helfrich, W. (1978) Biophys. J. 24, 863-868] and also larger than that of single crystals of polyethylene, which was measured for comparison by the same technique as that used for lecithin in this study. The differences between these values of delta chi seem to result from the contribution of the polar head (i.e., the part of the lecithin molecule other than the two hydrocarbon chains), which is ordered, less ordered, or deleted in the respective cases above, although mainly from the contribution of the hydrocarbon chains, which are ordered in crystals and disordered in vesicles.

摘要

为了阐明几种生物膜系统的磁取向机制,对作为膜主要成分的卵磷脂的二甲苯悬浮薄层单晶施加不同强度的磁场,并分析晶体的取向行为。卵磷脂晶体的取向方式是,卵磷脂分子的烃链和磷酰胆碱基团的方向都垂直于磁场,这表明晶体是抗磁性双轴的。相比之下,已知许多生物膜中磷脂的烃链平行于磁场取向。根据磁取向行为估计的体积抗磁磁化率各向异性值Δχ(即卵磷脂晶体中平行和垂直于烃链方向的磁化率之差)约为 -9×10⁻⁸ cgs。这明显大于Boroske和Helfrich [Boroske, E. & Helfrich, W. (1978) Biophys. J. 24, 863 - 868] 测量的蛋黄卵磷脂囊泡的值,也大于用与本研究中用于卵磷脂相同的技术测量的聚乙烯单晶的值。这些Δχ值之间的差异似乎是由极性头部(即卵磷脂分子中除两条烃链之外的部分)的贡献导致的,在上述各自情况下,极性头部的有序程度不同或被去除,尽管主要是由在晶体中有序而在囊泡中无序的烃链的贡献导致的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14e1/350476/bdc87aecc0d1/pnas00499-0295-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14e1/350476/bdc87aecc0d1/pnas00499-0295-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14e1/350476/bdc87aecc0d1/pnas00499-0295-a.jpg

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Magnetic field effect on the chlorophyll fluorescence in Chlorella.磁场对小球藻叶绿素荧光的影响。
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Magnetic field induced orientation of photosynthetic systems.磁场诱导光合系统的取向
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Micro-compartment specific T2* relaxation in the brain.脑内微区室特异性 T2*弛豫。
Neuroimage. 2013 Aug 15;77:268-78. doi: 10.1016/j.neuroimage.2013.03.005. Epub 2013 Mar 22.
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Magnetoreception in plants.植物中的磁感受
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31P NMR first spectral moment study of the partial magnetic orientation of phospholipid membranes.磷脂膜部分磁取向的31P核磁共振首次谱矩研究。
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