Esposito Cinzia, Tian Aiwei, Melamed Svetlana, Johnson Corinne, Tee Shang-You, Baumgart Tobias
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania, 19104, USA.
Biophys J. 2007 Nov 1;93(9):3169-81. doi: 10.1529/biophysj.107.111922. Epub 2007 Jul 20.
This contribution describes measurements of lipid bilayer domain line tension based on two-dimensional thermal undulations of membranes with liquid ordered/liquid disordered phase coexistence and near-critical composition at room temperature. Lateral inhomogeneity of lipid and protein composition is currently a subject of avid research aimed at determining both fundamental properties and biological relevance of membrane domains. Line tension at fluid lipid bilayer membrane domain boundaries controls the kinetics of domain growth and therefore regulates the size of compositional heterogeneities. High line tension promotes membrane domain budding and fission. Line tension could therefore be an important control parameter regulating functional aspects of biological membranes. Here the established method of fluid domain flicker spectroscopy is applied to examine thermal domain wall fluctuations of phase-separated bilayer membranes. We find a Gaussian probability distribution for the first few excited mode amplitudes, which permits an analysis by means of appropriately specialized capillary wave theory. Time autocorrelation functions are found to decay exponentially, and relaxation times are fitted by means of a hydrodynamic theory relating line tensions and excited mode relaxation kinetics. Line tensions below 1 pN are obtained, with these two approaches yielding similar results. We examine experimental artifacts that perturb the Fourier spectrum of domain traces and discuss ways to identify the number of modes that yield reliable line tension information.
本文描述了基于具有液相有序/液相无序相共存且在室温下接近临界组成的膜的二维热起伏对脂质双分子层域线张力的测量。脂质和蛋白质组成的横向不均匀性目前是一个热门研究课题,旨在确定膜域的基本性质和生物学相关性。流体脂质双分子层膜域边界处的线张力控制着域生长的动力学,因此调节了组成异质性的大小。高线张力促进膜域出芽和裂变。因此,线张力可能是调节生物膜功能方面的一个重要控制参数。在这里,已建立的流体域闪烁光谱法被应用于研究相分离双层膜的热域壁起伏。我们发现前几个激发模式振幅的高斯概率分布,这允许通过适当专门化的毛细波理论进行分析。发现时间自相关函数呈指数衰减,并且通过将线张力与激发模式弛豫动力学相关联的流体动力学理论来拟合弛豫时间。通过这两种方法获得了低于1皮牛的线张力,且结果相似。我们研究了干扰域迹线傅里叶光谱的实验假象,并讨论了识别产生可靠线张力信息的模式数量的方法。