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递质释放与易化的单结构域/结合钙假说。

Single-domain/bound calcium hypothesis of transmitter release and facilitation.

作者信息

Bertram R, Sherman A, Stanley E F

机构信息

Mathematical Research Branch, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20814, USA.

出版信息

J Neurophysiol. 1996 May;75(5):1919-31. doi: 10.1152/jn.1996.75.5.1919.

DOI:10.1152/jn.1996.75.5.1919
PMID:8734591
Abstract
  1. We describe a model of transmitter release that is based on the finding that release can be gated during the opening of individual Ca2+ channels, suggesting that the release site can be activated by the Ca2+ domain under a single channel. In this model each release site contains four independent Ca2+ binding sites or gates with unbinding kinetics graded from slow to fast and affinities ranging from high to low. All four gates must be bound for release to occur. Thus synaptic dynamics are governed by the kinetics of Ca2+ binding and unbinding from release sites, not Ca2+ diffusion. 2. Fast facilitation occurs when an action potential invades a terminal with one or more ions remaining bound to the release sites. Residual free Ca2+ is not necessary for facilitation with this mechanism, but if present it would enhance facilitation by binding to high-affinity gates between pulses. 3. This model can account for key features of release. These include fourth-power cooperativity with regard to external Ca2+; a release time course that is virtually independent of an increase in quantal content; an inverse relation between external Ca2+ and the degree of facilitation; and a steplike increase in facilitation with increasing stimulus frequency, with each step corresponding to a unitary decline in the Ca2+ cooperativity. 4. Facilitation of single-channel-based secretion is shown to be robust even if channel opening is stochastic. Spontaneous release of transmitter, assumed to be due in part to spontaneous Ca2+ channel openings, is shown to be elevated during and after a train of impulses. 5. An extension of the model to include multiple Ca2+ channels per release site demonstrates that one role of overlapping Ca2+ domains may be to accentuate depolarization-evoked release relative to spontaneous release.
摘要
  1. 我们描述了一种递质释放模型,该模型基于这样一个发现:在单个Ca2+通道开放期间释放可被门控,这表明释放位点可由单个通道下的Ca2+结构域激活。在这个模型中,每个释放位点包含四个独立的Ca2+结合位点或门控,其解离动力学从慢到快分级,亲和力从高到低。所有四个门控都必须结合才能发生释放。因此,突触动力学由Ca2+与释放位点结合和解离的动力学控制,而非Ca2+扩散。2. 当动作电位侵入终末且有一个或多个离子仍与释放位点结合时,就会发生快速易化。对于这种机制的易化,残余的游离Ca2+并非必需,但如果存在,它会通过在脉冲之间与高亲和力门控结合来增强易化。3. 该模型可以解释释放的关键特征。这些特征包括对外界Ca2+的四次方协同性;释放时间进程实际上与量子含量的增加无关;外界Ca2+与易化程度之间呈反比关系;以及随着刺激频率增加易化呈阶梯状增加,每一步对应Ca2+协同性的单位下降。4. 即使通道开放是随机的,基于单通道的分泌易化也被证明是稳健的。假定部分归因于自发Ca2+通道开放的递质自发释放,在一串冲动期间和之后会增加。5. 该模型扩展到每个释放位点包括多个Ca2+通道,这表明重叠Ca2+结构域的一个作用可能是相对于自发释放增强去极化诱发的释放。

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