Quantification of Aminophospholipid Asymmetry in Supported Lipid Bilayers by Neutron Reflectometry
Quantification of Aminophospholipid Asymmetry in Supported Lipid Bilayers by Neutron Reflectometry
批准号:
264479891
负责人:
Dr. Ilya Reviakine, Ph.D.
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2014
资助国家:
德国
项目状态:
已结题
起止时间:
2013-12-31 至 2014-12-31
中文摘要
细胞膜是基于表现出复杂的组成和组织的脂质双层。在健康细胞中,脂质在双层的两个小叶之间的分布是不对称的:磷脂酰丝氨酸(PS)被限制在膜的内小叶,而外小叶主要由磷脂酰胆碱和鞘磷脂组成。脂质也是横向组织的,在几十nm的长度尺度上具有不均匀性。这些是如何产生的尚不清楚,因为通常用于模拟细胞膜的磷脂酰胆碱的典型高熔点、低熔点胆固醇混合物表现出具有μ m大小域的宏观相分离。能够捕获脂质组织的横向和横向方面的模型系统是稀缺的,并且由于这个原因,研究细胞膜中脂质组织的两个方面如何相互耦合一直是困难的。我们开发了一个模型系统,捕捉这两个功能。它基于TiO 2上的支持脂质双层(SLB),含有磷脂酰胆碱和PS的高熔点、低熔点胆固醇混合物,分布不对称。目前的工作的目标是量化脂质分布在这些不对称的细胞膜模拟的中子反射法(NR),以便进一步研究这些系统中的相行为和脂质扩散。
英文摘要
Cell membranes are based on lipid bilayers that exhibit complex composition and organization. In healthy cells, the distribution of lipids between the two leaflets of the bilayer is asymmetric: phosphatidyl serine (PS) is restricted to the inner leaflet of the membrane, while the outer leaflet is predominantly composed of phosphatidyl choline and sphingomyelin. Lipids are also organized laterally, with heterogeneities on the lengthscale of tens of nm. How these arise is not clear, because the canonical high-melting, low-melting, cholesterol mixtures of phosphatidylcholines commonly used to model cell membranes exhibit macroscopic phase separation with um-size domains. Model systems that can capture both the lateral and the transverse aspects of lipid organization are scarce, and for that reason, studying how the two aspects of lipid organization in cell membranes couple to each other has been difficult. We developed a model system that captures both these features. It is based on supported lipid bilayers (SLBs) on TiO2 that contain the high-melting, low-melting, cholesterol mixture of phosphatidyl cholines, and PS, that is distributed asymmetrically. The goal of the current work is to quantify lipid distribution in these asymmetric cell membrane mimics by neutron reflectometry (NR) so that further studies of phase behavior and lipid diffusion in these systems could be carried out.
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