A Kinetic Study of the Growth of Fatty Acid Vesicles

小泡 胶束 油酸 脂肪酸 化学 动力学 生物物理学 稀释 生物化学 色谱法 有机化学 生物 热力学 物理 量子力学 水溶液
作者
Irene A. Chen,Jack W. Szostak
出处
期刊:Biophysical Journal [Elsevier BV]
卷期号:87 (2): 988-998 被引量:226
标识
DOI:10.1529/biophysj.104.039875
摘要

Membrane vesicles composed of fatty acids can be made to grow and divide under laboratory conditions, and thus provide a model system relevant to the emergence of cellular life. Fatty acid vesicles grow spontaneously when alkaline micelles are added to buffered vesicles. To investigate the mechanism of this process, we used stopped-flow kinetics to analyze the dilution of non-exchanging FRET probes incorporated into preformed vesicles during growth. Oleate vesicle growth occurs in two phases (fast and slow), indicating two pathways for the incorporation of fatty acid into preformed vesicles. We propose that the fast phase, which is stoichiometrically limited by the preformed vesicles, results from the formation of a "shell" of fatty acid around a vesicle, followed by rapid transfer of this fatty acid into the preformed vesicle. The slower phase may result from incorporation of fatty acid which had been trapped in an intermediate state. We provide independent evidence for the rapid transformation of micelles into an aggregated intermediate form after transfer from high to low pH. Our results show that the most efficient incorporation of added oleate into oleic acid/oleate vesicles occurs under conditions that avoid a large transient increase in the micelle/vesicle ratio.

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