Nonlinear Thermodynamic Models of Voltage-Dependent Currents

被引:0
|
作者
Alain Destexhe
John R. Huguenard
机构
[1] Laval University,Department of Physiology
[2] CNRS,Unité dé Neurosciences Inté gratives et Computationnelles
[3] UPR-2191,Department of Neurology and Neurological Sciences
[4] Stanford University,undefined
来源
关键词
ion channels; gating; Hodgkin-Huxley models; Markov models; T-type calcium currents;
D O I
暂无
中图分类号
学科分类号
摘要
Hodgkin and Huxley provided the first quantitative description of voltage-dependent currents and adjusted their model to experimental data using empirical functions of voltage. A physically plausible formalism was proposed later by assuming that transition rates depend exponentially on a free-energy barrier, by analogy with the theory of reaction rates. It was also assumed that the free energy depends linearly on voltage. This thermodynamic formalism can accurately describe many processes, but the resulting time constants can be arbitrarily fast, which may also lead to aberrant behavior. We considered here a physically plausible solution to this problem by including nonlinear effects of the electrical field on the free energy. We show that including effects such as mechanical constraints, inherent to the structure of the ion channel protein, leads to more accurate thermodynamic models. These models can account for voltage-dependent transitions that are rate-limited in a given voltage range, without invoking additional states. We illustrate their applicability to fit experimental data by considering the case of the T-type calcium current in thalamic neurons.
引用
收藏
页码:259 / 270
页数:11
相关论文
共 50 条
  • [21] Voltage-dependent currents in isolated vestibular afferent calyx terminals
    Rennie, KJ
    Streeter, MA
    JOURNAL OF NEUROPHYSIOLOGY, 2006, 95 (01) : 26 - 32
  • [22] Human Adipose Cells Have Voltage-dependent Potassium Currents
    M. P. Ramírez-Ponce
    J. C. Mateos
    J. A. Bellido
    The Journal of Membrane Biology, 2003, 196 : 129 - 134
  • [23] VOLTAGE-DEPENDENT IONIC CURRENTS IN DISSOCIATED MUDPUPPY TASTE CELLS
    KINNAMON, SC
    ROPER, SD
    ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 1987, 510 : 413 - 416
  • [24] Voltage-dependent modulation of TRPA1 currents by diphenhydramine
    Shen, Xianfeng
    Wang, Qiaochu
    Lin, Yakang
    Sreekrishna, Koti
    Jian, Zhiyuan
    Zhu, Michael X.
    Tian, Jinbin
    CELL CALCIUM, 2020, 90
  • [25] VOLTAGE-DEPENDENT IONIC CURRENTS IN FROG CULTURED SKELETAL MYOCYTES
    LUKYANENKO, VI
    KATINA, IE
    NASLEDOV, GA
    LONSKY, AV
    GENERAL PHYSIOLOGY AND BIOPHYSICS, 1993, 12 (03) : 231 - 247
  • [26] PHENCYCLIDINE BLOCKS VOLTAGE-DEPENDENT POTASSIUM CURRENTS IN MURINE THYMOCYTES
    FIORICAHOWELLS, E
    GAMBALE, F
    HORN, R
    OSSES, L
    SPECTOR, S
    JOURNAL OF PHARMACOLOGY AND EXPERIMENTAL THERAPEUTICS, 1990, 252 (02): : 610 - 615
  • [27] Human adipose cells have voltage-dependent potassium currents
    Ramírez-Ponce, MP
    Mateos, JC
    Bellido, JA
    JOURNAL OF MEMBRANE BIOLOGY, 2003, 196 (02): : 129 - 134
  • [28] VOLTAGE-DEPENDENT CURRENTS IN ISOLATED SINGLE MERKEL CELLS OF RATS
    YAMASHITA, Y
    AKAIKE, N
    WAKAMORI, M
    IKEDA, I
    OGAWA, H
    JOURNAL OF PHYSIOLOGY-LONDON, 1992, 450 : 143 - 162
  • [29] VOLTAGE-DEPENDENT SODIUM AND POTASSIUM CURRENTS IN CULTURED TROUT ASTROCYTES
    GLASSMEIER, G
    JESERICH, G
    KRUPPEL, T
    GLIA, 1994, 11 (03) : 245 - 254
  • [30] Activity-dependent changes in voltage-dependent calcium currents and transmitter release
    Lnenicka, GA
    Hong, SJ
    MOLECULAR NEUROBIOLOGY, 1997, 14 (1-2) : 37 - 66