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利用周期性图案光漂白法测定膜中的分子运动

Determination of molecular motion in membranes using periodic pattern photobleaching.

作者信息

Smith B A, McConnell H M

出版信息

Proc Natl Acad Sci U S A. 1978 Jun;75(6):2759-63. doi: 10.1073/pnas.75.6.2759.

Abstract

The lateral diffusion of a fluorescent phospholipid probe in oriented multibilayers of dimyristoylphosphatidylcholine has been measured by observing the redistribution of fluorescence after photobleaching of the membranes in a periodic pattern of parallel stripes. The diffusion constant D of the fluorescent lipid was found to vary between 1.5 X 10(-11) cm2/sec at 9.6 degrees and 2.0 X 10(-10) at 22.5 degrees in the monoclinic phase. Preliminary studies of dipalmitoylphosphatidylcholine liposomes in the Lbeta' and Pbeta' phases yielded diffusion constants of the order of 10(-11) cm2/sec. These data are relevant to earlier discussions of the rate of complement activation by hapten-sensitized liposomal membranes [Brûlet, P. and McConnell, H. M. (1976) Proc. Natl. Acad. Sci. USA 73,2977--2981; Parce, J. W., Henry, N. and McConnell, H.M. (1978) Proc. Natl. Acad. Sci. USA 75, 1515--1518)]. We have also used this method to study the motion of fluorescent antibodies bound to murine EL-4 tumor cells. Pattern photobleaching techniques have the advantages that cellular or liposomal translation has no major adverse effect on the measurements, that certain nondiffusive motions can be detected and characterized, and that diffusive or other motions can be recorded photographically.

摘要

通过观察以平行条纹的周期性模式对膜进行光漂白后荧光的重新分布,测定了荧光磷脂探针在二肉豆蔻酰磷脂酰胆碱定向多层膜中的横向扩散。发现在单斜相中,荧光脂质的扩散常数D在9.6摄氏度时为1.5×10⁻¹¹平方厘米/秒,在22.5摄氏度时为2.0×10⁻¹⁰平方厘米/秒。对处于Lβ'和Pβ'相的二棕榈酰磷脂酰胆碱脂质体的初步研究得出扩散常数约为10⁻¹¹平方厘米/秒。这些数据与早期关于半抗原致敏脂质体膜补体激活速率的讨论相关[Brûlet, P.和McConnell, H. M. (1976)《美国国家科学院院刊》73, 2977 - 2981;Parce, J. W., Henry, N.和McConnell, H. M. (1978)《美国国家科学院院刊》75, 1515 - 1518]。我们还使用这种方法研究了与小鼠EL - 4肿瘤细胞结合的荧光抗体的运动。图案光漂白技术具有以下优点:细胞或脂质体的平移对测量没有重大不利影响,可以检测和表征某些非扩散运动,并且可以通过摄影记录扩散或其他运动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a387/392643/b131977a1be7/pnas00018-0226-a.jpg

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