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贻贝虹吸管感觉细胞的特异突触易化。

Branch-specific heterosynaptic facilitation in Aplysia siphon sensory cells.

机构信息

Center for Neurobiology and Behavior, Department of Physiology, Columbia University, College of Physicians and Surgeons, and New York State Psychiatric Institute, New York, NY 10032.

出版信息

Proc Natl Acad Sci U S A. 1984 Apr;81(8):2577-81. doi: 10.1073/pnas.81.8.2577.

Abstract

Aplysia siphon sensory cells exhibit heterosynaptic facilitation of transmitter release during both sensitization and classical conditioning of the siphon withdrawal response. In the present study, we asked whether facilitation must invariably enhance transmission at all terminals of a neuron or whether facilitation can instead occur at one set of terminals without also occurring at other terminals of the same cell. To examine this question, we compared effects of local application of serotonin and of connective stimulation on transmission at central and peripheral branches of single sensory cells. We found that heterosynaptic facilitation can be branch-specific and can occur at either central or peripheral synapses independently. We also found that siphon sensory cells exhibit homosynaptic post-tetanic potentiation, allowing us to compare effects of hetero- and homosynaptic facilitation in the same cells. By contrast to heterosynaptic facilitation, homosynaptic facilitation occurs concomitantly at both central and peripheral synapses of siphon sensory cells. Thus, while both heterosynaptic and homosynaptic facilitation involve increases in transmitter release from sensory neuron terminals, heterosynaptic facilitation provides a greater specificity and flexibility in the modification of synaptic connections.

摘要

芋螺感觉神经元的触须感觉细胞在芋螺触须退缩反应的敏感化和经典条件作用过程中都表现出递质释放的异突触易化。在本研究中,我们想知道易化是否必须始终增强神经元所有末梢的传递,或者易化是否可以在一组末梢发生而不在同一细胞的其他末梢发生。为了检验这个问题,我们比较了局部应用 5-羟色胺和连接刺激对单个感觉细胞的中枢和外周分支的传递的影响。我们发现,异突触易化可以是分支特异性的,并且可以在中央或外周突触独立发生。我们还发现,芋螺感觉细胞表现出突触后强直增强,这使我们能够在同一细胞中比较异突触和同突触易化的效果。与异突触易化不同,同突触易化同时发生在芋螺感觉神经元的中枢和外周突触。因此,虽然异突触和同突触易化都涉及感觉神经元末梢递质释放的增加,但异突触易化在突触连接的修饰中提供了更大的特异性和灵活性。

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