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Dipyrenylphosphatidylcholines as membrane fluidity probes. Relationship between intramolecular and intermolecular excimer formation rates.

机译:二苯甲基磷脂酰胆碱作为膜流动性探针。分子内和分子间准分子形成速率之间的关系。

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摘要

In the intramolecular excimeric membrane probe, dipyrenylphosphatidylcholine (dipyn PC), pyrene moieties are linked to the terminal carbons of the two acyl chains, each of which contains n carbons. We show here how the probe intramolecular excimer production rate, K, may be determined from the excimer/monomer intensity ratio, rl, by making use of the fluorescence titrations of the related monopyrenyl probe, pyn PC, analyzed according to the milling crowd model. rl and the rate K of dipy10 PC in four model membrane systems were measured over a wide temperature range and both parameters are shown to be sensitive functions of the lateral fluidity of the host matrix. A model for relating the intramolecular and intermolecular excimer formation rates is proposed according to which both processes are limited by the reorientational rate of the pyrene moiety. Above the fluid-gel transition temperature, Tc, the diffusion rate (f) of the monopyrenyl probe (pyn PC) is accordingly related to K by: pE approximately K/(K + 1/2f + tau -1M), where pE is the probability of excimer formation between nearest neighbor pyn PC probes, and tau M is the monomer lifetime. Values of pE derived in this way are found to be consistent with pE values derived from the milling crowd analysis of fluorescence yield titration experiments. K for dipy10 PC in DMPC multibilayers ranges from 0.21 x 10(7) s-1 at 10 degrees C in the gel phase, to 5.7 x 10(7) s-1 at 60 degrees C in the fluid phase, whereas the lateral diffusion coefficient, D, for py10 PC in the same bilayers ranged from 8 to 34 microns2 s-1, when calculated with D = fL2/4, L being the average lipid-lipid spacing of the host membrane. Above Tc and at the same reduced temperature, (T - Tc)/Tc, both f for py10 PC, and K for dipy10 PC were found to have relative magnitudes in the order: DPPC greater than DMPC greater than POPC greater than DOPC. This and the similarity of the activation energies for f and K suggest that the rotation of the the pyrene moiety is the rate-limiting step for both the lateral mobility of py10 PC and intramolecular excimer formation in dipy10 PC.
机译:在分子内准分子膜探针二,基磷脂酰胆碱(dipyn PC)中,pyr部分连接至两个酰基链的末端碳,每个酰基链均包含n个碳。我们在这里展示了如何根据准分子/单体强度比r1,利用相关的单py基探针pyn PC的荧光滴定,根据铣削人群模型进行分析,从而确定探针分子内准分子的生产率K。在很宽的温度范围内测量了四个模型膜系统中的d1和dipy10 PC的比率K,并且两个参数均显示为主体基质横向流动性的敏感函数。提出了一种用于关联分子内和分子间准分子形成速率的模型,根据该模型,这两个过程都受到the部分的重新定向速率的限制。因此,在液凝胶转变温度Tc以上,一py烯基探针(pyn PC)的扩散速率(f)与K有关,其关系为:pE约为K /(K + 1 / 2f + tau -1M),其中pE为在最邻近的Pyn PC探针之间形成准分子的概率,tau M为单体寿命。发现以这种方式得出的pE值与从荧光产量滴定实验的研磨人群分析得出的pE值一致。 DMPC多层膜中dipy10 PC的K值在凝胶相中在10摄氏度时为0.21 x 10(7)s-1,在液相中在60摄氏度时为5.7 x 10(7)s-1,而横向扩散当使用D = fL2 / 4计算时,相同双层中py10 PC的系数D在8到34微米2 s-1之间,其中L是宿主膜的平均脂质-脂质间距。高于Tc且在相同的降低温度下(T-Tc)/ Tc,py10 PC的f和dipy10 PC的K均具有以下相对量级:DPPC大于DMPC大于POPC大于DOPC。 f和K的活化能的相似性表明,the部分的旋转是py10 PC的横向迁移率和dipy10 PC中分子内准分子形成的速率限制步骤。

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