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1-[4-(三甲氨基)苯基]-6-苯基-1,3,5-己三烯:合成、荧光性质及其作为脂质双层荧光探针的应用

1-[4-(Trimethylamino)phenyl]-6-phenylhexa-1,3,5-triene: synthesis, fluorescence properties, and use as a fluorescence probe of lipid bilayers.

作者信息

Prendergast F G, Haugland R P, Callahan P J

出版信息

Biochemistry. 1981 Dec 22;20(26):7333-8. doi: 10.1021/bi00529a002.

DOI:10.1021/bi00529a002
PMID:7326228
Abstract

1-[4-(Trimethylamino)phenyl]-6-phenylhexa-1,3,5-triene (TMA-DPH), a cationic analogue of diphenylhexatriene (DPH), has photophysical properties that are generally similar to those of DPH. In solution the fluorescence lifetime (tau) of TMA-DPH is short (less than 1.5 ns), but tau increases to approximately 7 ns when the probe is embedded in lipid bilayers at temperatures less than the thermal transition temperature (Tc) of the lipid. The cationic charge ensures that the probe is anchored at the lipid-water interface, most likely with the DPH moiety intercalated between the upper portions of the fatty acyl chains. The profiles of changes in steady-state anisotropies (rss) and limiting hindered anisotropies (r infinity) are similar for both TMA-DPH and DPH embedded in lipid bilayers, but r infinity values for TMA-DPH even at T much greater than Tc are generally greater than 0.14, e.g., at 35 degrees C in 1,2-dimyristoylglycero-3-phosphocholine (DMPC) (cf. 0.03 for DPH in DMPC at 35 degrees C). Electrostatic interactions of the cationic probe with head groups of phospholipids do not appear to significantly influence the apparent dynamics of the probe. TMA-DPH should prove useful in the study of the dynamics of phospholipid monolayers, e.g., in native or reconstituted lipoproteins.

摘要

1-[4-(三甲氨基)苯基]-6-苯基己-1,3,5-三烯(TMA-DPH)是二苯基己三烯(DPH)的阳离子类似物,其光物理性质通常与DPH相似。在溶液中,TMA-DPH的荧光寿命(tau)很短(小于1.5纳秒),但当探针在低于脂质热转变温度(Tc)的温度下嵌入脂质双层时,tau会增加到约7纳秒。阳离子电荷确保探针锚定在脂质-水界面,很可能是DPH部分插入脂肪酰链的上部之间。对于嵌入脂质双层的TMA-DPH和DPH,稳态各向异性(rss)和极限受阻各向异性(r infinity)的变化曲线相似,但即使在T远大于Tc时,TMA-DPH的r infinity值通常也大于0.14,例如,在35℃时于1,2-二肉豆蔻酰甘油-3-磷酸胆碱(DMPC)中(相比之下,35℃时DMPC中DPH的r infinity值为0.03)。阳离子探针与磷脂头部基团的静电相互作用似乎不会显著影响探针的表观动力学。TMA-DPH在磷脂单层动力学研究中应该会很有用,例如在天然或重组脂蛋白中。

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