Kinoshita Masanao, Kato Satoru
Department of Physics, School of Science and Technology, Kwansei-Gakuin University, Gakuen 2-1, Sanda, Hyogo 669-1337, Japan.
Biophysics (Nagoya-shi). 2008 May 16;4:1-9. doi: 10.2142/biophysics.4.1. eCollection 2008.
Diacylphosphatidylinositol (PI) is the starting reactant in the process of phosphatidylinositide-related signal transduction mediated through the lipid raft domain. We investigated intermolecular interactions of PI with major raft components, sphingomyelin (SM) and cholesterol (Chol), using surface pressure-molecular area (-) isotherm measurements. The classical mean molecular area versus composition plot showed that the measured mean molecular areas are smaller in PI/Chol mixed monolayers and larger in PI/SM mixed monolayers than those calculated on the basis of the ideal additivity. These results indicate that PI interacts attractively with Chol and repulsively with SM. In addition, we energetically evaluated the interaction of PI with SM/Chol mixtures and found that the mixing energy of PI/SM/Chol ternary monolayers decreased as the molar ratio of Chol to SM increased. In order to quantitatively analyze the distribution of PI we calculated the chemical potentials of mixing of PI into the SM/Chol mixed monolayer and into the dioleoylphosphatidylcholine (DOPC) monolayer, which was used as a model for the fluid matrix, on the basis of partial molecular area analysis. Analysis using the chemical potential of mixing of PI suggested that partition of PI molecules between these two monolayers can be changed by a factor of about 1.7 in response to change in Chol molar fraction in the SM/Chol mixed monolayer from 0.3 to 0.6 when the concentration of PI in the DOPC monolayer is kept constant at 7 mol%.
二酰基磷脂酰肌醇(PI)是通过脂筏结构域介导的磷脂酰肌醇相关信号转导过程中的起始反应物。我们使用表面压力-分子面积(-)等温线测量法研究了PI与主要脂筏成分鞘磷脂(SM)和胆固醇(Chol)之间的分子间相互作用。经典的平均分子面积与组成关系图表明,与基于理想加和性计算出的结果相比,PI/Chol混合单层中的测量平均分子面积较小,而PI/SM混合单层中的测量平均分子面积较大。这些结果表明,PI与Chol有吸引作用,与SM有排斥作用。此外,我们对PI与SM/Chol混合物的相互作用进行了能量评估,发现PI/SM/Chol三元单层的混合能随着Chol与SM摩尔比的增加而降低。为了定量分析PI的分布,我们基于部分分子面积分析计算了PI混入SM/Chol混合单层和二油酰磷脂酰胆碱(DOPC)单层(用作流体基质模型)中的混合化学势。使用PI混合化学势的分析表明,当DOPC单层中PI的浓度保持在7 mol%不变时,随着SM/Chol混合单层中Chol摩尔分数从0.3变为0.6,PI分子在这两个单层之间的分配可以改变约1.7倍。