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Dipole moment enthalpy and entropy changes of Hodgkin-Huxley type kinetic units.

机译:Hodgkin-Huxley型动力学单元的偶极矩焓和熵变。

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摘要

Dipole moment, enthalpy, and entropy changes were calculated for hypothetical structural units which control the opening and closing of ionic channels in axon membranes. The changes of these thermodynamic functions were calculated both for activation (transition to intermediate complex) and for the structural transformation as a whole. The calculations are based on the experimentally determined Q10 values and the empirical formulae for the rate constants (alpha's and beta's) as functions of membrane potentials in Hodgkin-Huxley type models. From the calculated thermodynamic functions we suggest that the specific structural units of the axon membranes are probably of macromolecular (possible protein-like) dimensions with large dipole moments (hundreds of debyes). The calculated dipole moment changes of a single structural unit indicate that in many cases these dipole moments saturate at strong depolarizations or hyperpolarizations. The transitions in structural units show substantial activation enthalpies and entropies but the net enthalpy and entropy changes are practically negligible for the transition as a whole, i.e. the structural units presumably undergo displacements. While the calculated dipole moment changes associated with structural transformations in Loligo and Myxicola show similar potential dependencies, those for Rana usually show a different behavior. The relevance of the dipole moment changes to gating currents is discussed.
机译:对于控制轴突膜中离子通道的打开和关闭的假设结构单元,计算了偶极矩,焓和熵的变化。计算这些热力学函数的变化,既可以进行活化(过渡为中间体),也可以进行整体的结构转化。该计算基于实验确定的Q10值和速率常数(α和β)随Hodgkin-Huxley型模型中膜电位而变化的经验公式。从计算的热力学函数,我们建议轴突膜的特定结构单元可能是大分子(可能是蛋白质样)尺寸,偶极矩较大(数百德拜)。计算出的单个结构单元的偶极矩变化表明,在许多情况下,这些偶极矩会在强去极化或超极化时饱和。结构单元中的跃迁显示出大量的活化焓和熵,但是净焓和熵的变化对于整个跃迁而言实际上可以忽略不计,即结构单元可能发生位移。虽然计算出的与Loligo和Myxicola中的结构转换相关的偶极矩变化显示出相似的潜在依赖性,但Rana的偶极矩变化通常表现出不同的行为。讨论了偶极矩变化与门控电流的相关性。

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