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温度、压力和胆固醇对双层流动性的影响;芘准分子/单体比率与脂质体和微粒体中二苯基己三烯稳态荧光偏振的比较。

Temperature, pressure and cholesterol effects on bilayer fluidity; a comparison of pyrene excimer/monomer ratios with the steady-state fluorescence polarization of diphenylhexatriene in liposomes and microsomes.

作者信息

Macdonald A G, Wahle K W, Cossins A R, Behan M K

机构信息

Physiology Department, Marischal College, Aberdeen University, U.K.

出版信息

Biochim Biophys Acta. 1988 Feb 18;938(2):231-42. doi: 10.1016/0005-2736(88)90162-9.

DOI:10.1016/0005-2736(88)90162-9
PMID:3342234
Abstract

Pyrene excimer/monomer (E/M) ratios have been compared with the steady-state fluorescence polarization (P) of diphenylhexatriene (DPH) in multilamellar liposomes of dilaurylphosphatidylcholine and rat liver microsomes. The purpose was to use the well-understood properties of DPH to reveal the nature of bilayer fluidity which pyrene manifests as an E/M ratio. Reducing the temperature (from 37 degrees C to 8 degrees C), increasing the hydrostatic pressure (from 0.1 to 70 MPa), and, in liposomes, cholesterol enrichment (up to 0.30 mole fraction) separately decreased the E/M ratios and increased P. The pyrene membrane/buffer partition coefficient was affected by temperature but not by pressure, and in the case of cholesterol enrichment, it was assumed to be unaffected. Plots of P as a function of the E/M ratio showed the two to be closely correlated (r = 0.99 in liposomes and 0.96 in microsomes), independent of the treatment used to reduce fluidity. The apparent activation volume and enthalpy for excimer formation was calculated and compared with published data. Pyrene E/M ratios probably reflect the intermolecular volume (fluidity) of the outer region of the bilayer, which is reduced by a decrease in temperature and an increase in pressure and cholesterol. DPH reports the bilayer interior, which is similarly ordered by the experimental treatments. The regional distinction between the two probes, however, accounts for the divergence of E/M ratios and P, which has been reported in membranes enriched with fluidizing fatty acids.

摘要

已将芘激基缔合物/单体(E/M)比率与二月桂酰磷脂酰胆碱多层脂质体和大鼠肝微粒体中二苯基己三烯(DPH)的稳态荧光偏振(P)进行了比较。目的是利用DPH易于理解的特性来揭示芘以E/M比率表现出的双层流动性的本质。降低温度(从37℃降至8℃)、增加静水压力(从0.1MPa至70MPa)以及在脂质体中富集胆固醇(高达0.30摩尔分数)分别降低了E/M比率并增加了P。芘的膜/缓冲液分配系数受温度影响,但不受压力影响,对于胆固醇富集的情况,假定其不受影响。P作为E/M比率函数的曲线表明二者密切相关(在脂质体中r = 0.99,在微粒体中r = 0.96),与用于降低流动性的处理无关。计算了激基缔合物形成的表观活化体积和焓,并与已发表的数据进行了比较。芘E/M比率可能反映了双层外部区域的分子间体积(流动性),其会因温度降低、压力增加和胆固醇增加而减小。DPH反映的是双层内部,其在实验处理下也会以类似方式有序排列。然而,这两种探针的区域差异解释了在富含流化脂肪酸的膜中报道的E/M比率和P的差异。

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