Mukherjee Soumi, Kombrabail Mamata, Krishnamoorthy G, Chattopadhyay Amitabha
Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad 500 007, India.
Biochim Biophys Acta. 2007 Sep;1768(9):2130-44. doi: 10.1016/j.bbamem.2007.05.025. Epub 2007 Jun 2.
The structural and dynamic consequence of alterations in membrane lipid composition (specifically cholesterol) in neuronal membranes is poorly understood. Previous work from our laboratory has established bovine hippocampal membranes as a convenient natural source for studying neuronal receptors. In this paper, we have explored the role of cholesterol and proteins in the dynamics and heterogeneity of bovine hippocampal membranes using fluorescence lifetime distribution analysis of the environment-sensitive fluorescent probe Nile Red incorporated into such membranes by the maximum entropy method (MEM), and time-resolved fluorescence anisotropy measurements. The peak position and the width of the lifetime distribution of Nile Red show a progressive reduction with increasing cholesterol depletion from native hippocampal membranes indicating that the extent of heterogeneity decreases with decrease in membrane cholesterol content. This is accompanied by a concomitant decrease of the fluorescence anisotropy and rotational correlation time. Our results point out that the microenvironment experienced by Nile Red is relatively insensitive to the presence of proteins in hippocampal membranes. Interestingly, Nile Red lifetime distribution in liposomes of lipid extracts is similar to that of native membranes indicating that proteins do not contribute significantly to the high level of heterogeneity observed in native membranes. These results could be relevant in understanding the neuronal diseases characterized by defective membrane lipid metabolism.
人们对神经元膜中膜脂成分(特别是胆固醇)改变所产生的结构和动态影响了解甚少。我们实验室之前的工作已将牛海马体膜确立为研究神经元受体的便利天然来源。在本文中,我们通过将环境敏感型荧光探针尼罗红掺入此类膜中,利用最大熵方法(MEM)进行荧光寿命分布分析以及时间分辨荧光各向异性测量,探讨了胆固醇和蛋白质在牛海马体膜的动态特性和异质性中的作用。尼罗红寿命分布的峰值位置和宽度显示,随着从天然海马体膜中去除胆固醇的程度增加而逐渐降低,这表明异质性程度随着膜胆固醇含量的降低而减小。同时,荧光各向异性和旋转相关时间也随之降低。我们的结果表明,尼罗红所处的微环境对海马体膜中蛋白质的存在相对不敏感。有趣的是,脂质提取物脂质体中的尼罗红寿命分布与天然膜相似,这表明蛋白质对天然膜中观察到的高水平异质性贡献不大。这些结果可能有助于理解以膜脂代谢缺陷为特征的神经元疾病。