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生电离子转运对藻类巨藻和人工膜阻抗的贡献。

Contribution of electrogenic ion transport to impedance of the algae Valonia utricularis and artificial membranes.

作者信息

Wang J, Zimmermann U, Benz R

机构信息

Lehrstuhl für Biotechnologie, Universität Würzburg, Germany.

出版信息

Biophys J. 1994 Oct;67(4):1582-93. doi: 10.1016/S0006-3495(94)80631-9.

Abstract

The cell membrane of Valonia utricularis contains an electrogenic carrier system for chloride (Wang et al., Biophys J. 59:235-248 (1991)). The electrical impedance of V. utricularis was measured in the frequency range between 1 Hz and 50 kHz. The analysis of the impedance spectra from V. utricularis and its comparison with equivalent circuit models showed that the transport system created a characteristic contribution to the impedance in the frequency range between 10 Hz and 5 kHz. The fit of the impedance spectra with the formalism derived from the theory of carrier-mediated transport allowed the determination of the kinetic parameters of chloride transport through the cell membrane of V. utricularis, and its passive electrical properties. Simultaneous measurements of the kinetic parameters with the charge pulse method demonstrated the equivalence of both experimental approaches with respect to the evaluation of the translocation rate constants of the free and the charged carriers and the total density of carriers within the membrane. Moreover, the impedance spectra of the protonophor-mediated proton transport by FCCP (carbonylcyanide p-trifluoromethoxyphenyl-hydrazone) were measured in model membranes. The carrier system made a substantial contribution to the impedance of the artificial membranes. The analysis of the spectra in terms of a simple carrier system (Benz and McLaughlin, 1983, Biophys. J. 41:381-398) allowed the evaluation of the kinetic and equilibrium parameters of the FCCP-mediated proton transport. The possible application of the measurement of impedance spectra for the study of biological transport systems is discussed.

摘要

伞藻的细胞膜含有一种氯离子的生电载体系统(Wang等人,《生物物理杂志》59:235 - 248 (1991))。在1赫兹至50千赫兹的频率范围内测量了伞藻的电阻抗。对伞藻的阻抗谱进行分析并与等效电路模型进行比较,结果表明该转运系统在10赫兹至5千赫兹的频率范围内对阻抗产生了特征性贡献。将阻抗谱与从载体介导的转运理论推导出来的形式体系进行拟合,可以确定氯离子通过伞藻细胞膜的转运动力学参数及其被动电学性质。用电荷脉冲法同时测量动力学参数,证明了两种实验方法在评估自由载体和带电载体的转运速率常数以及膜内载体总密度方面是等效的。此外,还在模型膜中测量了由羰基氰化物对三氟甲氧基苯腙(FCCP)介导的质子转运的阻抗谱。该载体系统对人工膜的阻抗有显著贡献。根据一个简单的载体系统(Benz和McLaughlin,1983,《生物物理杂志》41:381 - 398)对谱进行分析,从而可以评估FCCP介导的质子转运的动力学和平衡参数。本文讨论了阻抗谱测量在生物转运系统研究中的可能应用。

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