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本文引用的文献

1
Charge transport of ion pumps on lipid bilayer membranes.脂质双分子层膜上离子泵的电荷传输。
Q Rev Biophys. 1993 Feb;26(1):1-25. doi: 10.1017/s0033583500003942.
2
Distributed kinetics of decay of the photovoltage at the lipid bilayer-water interface.脂质双层-水界面光电压衰减的分布动力学。
Biophys J. 1985 Jul;48(1):1-7. doi: 10.1016/S0006-3495(85)83755-3.
3
Photoinitiated ion movements in bilayer membranes containing magnesium octaethylporphyrin.含八乙基镁卟啉的双层膜中的光引发离子运动。
Biophys J. 1986 Sep;50(3):431-9. doi: 10.1016/S0006-3495(86)83479-8.
4
Kinetics of charge transfer at the lipid bilayer-water interface on the nanosecond time scale.纳秒时间尺度下脂质双分子层-水界面处的电荷转移动力学。
Biophys J. 1987 Oct;52(4):577-86. doi: 10.1016/S0006-3495(87)83247-2.
5
Photogating of ionic currents across a lipid bilayer.通过脂质双分子层的离子电流的光门控。
Proc Natl Acad Sci U S A. 1989 Sep;86(18):6959-62. doi: 10.1073/pnas.86.18.6959.
6
Electrical modulation of membrane proteins: enforced conformational oscillations and biological energy and signal transductions.膜蛋白的电调制:强制构象振荡与生物能量和信号转导
Annu Rev Biophys Biophys Chem. 1990;19:83-106. doi: 10.1146/annurev.bb.19.060190.000503.
7
Photogating of ionic currents across lipid bilayers. Hydrophobic ion conductance by an ion chain mechanism.跨脂质双层离子电流的光门控。通过离子链机制实现的疏水离子传导。
Biophys J. 1992 Dec;63(6):1556-63. doi: 10.1016/S0006-3495(92)81739-3.
8
Photogating of ionic currents across lipid bilayers. Electrostatics of ions and dipoles inside the membrane.跨脂质双层离子电流的光门控。膜内离子和偶极子的静电学。
Biophys J. 1992 Dec;63(6):1544-55. doi: 10.1016/S0006-3495(92)81738-1.

电荷在单个脂质-水界面间的转移导致离子跨双层膜的泵浦。

Charge transfer across a single lipid-water interface causes ion pumping across the bilayer.

作者信息

Sun K, Mauzerall D

机构信息

Rockefeller University, New York, New York 10021, USA.

出版信息

Biophys J. 1996 Jul;71(1):309-16. doi: 10.1016/S0006-3495(96)79226-3.

DOI:10.1016/S0006-3495(96)79226-3
PMID:8804613
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1233481/
Abstract

The photoformation of magnesium-porphyrin cations (P+) at a single lipid bilayer-water interface can pump lipophilic borate anions completely across the lipid bilayer and causes an actual reversal of the photovoltage. The system consists of a lipid bilayer containing magnesium octaethylporphyrin, an aqueous or interfacial electron acceptor on one side, and chloro- or fluoro-substituted tetraphenylborate in both aqueous electrolyte solutions. With 1-micros pulsed illumination, an immediate positive photovoltage is observed, which decreases on the microsecond and millisecond time scales. On the time scale of seconds, as the P+ cation concentration decays in reverse electron transfer, the voltage swings negative to a value almost equal to its initial value and finally decays with a half-time (approximately 20 s) longer than the time constant of the system (approximately 5 s). Thus, an ion gradient across the membrane is formed, trapped by the nonlinear relation between ion mobility and ion concentration. Continuous light illumination confirms that negative charge moves in the direction opposite that of the initial photoinduced electron transfer. Steady-state measurements indicate an ion pumping efficiency of approximately 30%. This simple mechanism may be a progenitor of photobiological ion pumps.

摘要

在单个脂质双层 - 水界面上镁卟啉阳离子(P +)的光形成过程可以将亲脂性硼酸根阴离子完全泵过脂质双层,并导致光电压的实际反转。该系统由含有八乙基镁卟啉的脂质双层、一侧的水性或界面电子受体以及两种水性电解质溶液中的氯代或氟代四苯基硼酸盐组成。用1微秒的脉冲光照时,会观察到立即出现的正光电压,其在微秒和毫秒时间尺度上下降。在秒的时间尺度上,随着P +阳离子浓度在反向电子转移中衰减,电压变为负向,达到几乎等于其初始值的值,最终以比系统时间常数(约5秒)更长的半衰期(约20秒)衰减。因此,形成了跨膜的离子梯度,该梯度被离子迁移率与离子浓度之间的非线性关系所捕获。连续光照证实负电荷沿与初始光诱导电子转移相反的方向移动。稳态测量表明离子泵浦效率约为30%。这种简单的机制可能是光生物离子泵的前身。