小泡
尿素酶
振荡(细胞信号)
化学
尿素
布里格斯-劳舍尔反应
化学物理
生物物理学
催化作用
膜
生物化学
生物
作者
Arthur V. Straube,Stefanie Winkelmann,Christof Schütte,Felix Höfling
标识
DOI:10.1021/acs.jpclett.1c03016
摘要
The urea-urease clock reaction is a pH switch from acid to basic that can turn into a pH oscillator if it occurs inside a suitable open reactor. We numerically study the confinement of the reaction to lipid vesicles, which permit the exchange with an external reservoir by differential transport, enabling the recovery of the pH level and yielding a constant supply of urea molecules. For microscopically small vesicles, the discreteness of the number of molecules requires a stochastic treatment of the reaction dynamics. Our analysis shows that intrinsic noise induces a significant statistical variation of the oscillation period, which increases as the vesicles become smaller. The mean period, however, is found to be remarkably robust for vesicle sizes down to approximately 200 nm, but the periodicity of the rhythm is gradually destroyed for smaller vesicles. The observed oscillations are explained as a canard-like limit cycle that differs from the wide class of conventional feedback oscillators.
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