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Fleeting glimpses of lipid rafts: how biophysics is being used to track them.

机译:脂质筏漂流一瞥:如何利用生物物理学来跟踪它们。

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摘要

Cell membranes are fluid but can exhibit local order that gives rise to lateral inhomogeneities, often referred to as membrane microdomains. Among the best studied yet least well understood of these microdomains are lipid rafts. Lipid rafts are hypothesized to participate in a variety of physiologic and pathologic pathways important to human health by causing the spatial segregation of proteins and lipids within the plane of the membrane. Despite the widespread implications of the raft model, major questions remain about raft size, composition, and life span. This article discusses how recent biophysical measurements of the dynamic properties of rafts and putative raft-associated proteins and lipids are being used to test the hypothesis that confinement of proteins in rafts slows and/or impairs their ability to sample their microenvironment by lateral diffusion.
机译:细胞膜是流体,但会表现出局部顺序,从而引起横向不均匀性,通常称为膜微区。在对这些微域的研究最多但最不为人所知的是脂质筏。据推测,脂质筏通过引起膜平面内蛋白质和脂质的空间分离,参与了对人类健康重要的各种生理和病理途径。尽管筏模型具有广泛的含义,但主要问题仍然是关于筏的尺寸,组成和寿命。本文讨论了如何用最新的生物物理方法对木筏以及与木筏相关的蛋白质和脂质的动力学特性进行测量,以检验以下假设:木筏中蛋白质的限制会减慢和/或削弱其通过侧向扩散对其微环境进行采样的能力。

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