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加州海兔神经系统中乙酰胆碱的代谢。IV. 对一条已鉴定的胆碱能轴突的研究。

Metabolism of acetylcholine in the nervous system of Aplysia californica. IV. Studies of an identified cholinergic axon.

作者信息

Treistman S N, Schwartz J H

出版信息

J Gen Physiol. 1977 Jun;69(6):725-41. doi: 10.1085/jgp.69.6.725.

Abstract

[3H]Choline, injected directly into the major axon of the identified cholinergic neuron R2, was readily incorporated into [3H]acetylcholine. Its metabolic fate was similar to that of [3H]choline injected into the cell body of R2. Over the range injected, we found that the amounts of acetylcholine formed were proportional to the amounts injected; the synthetic capability was not exceeded even when 88 pmol of [3H]choline were injected into the axon. Newly synthesized acetylcholine moved within the axon with the kinetics expected of diffusion. We could not detect any selective orthograde or retrograde transport from the site of the injection. In contrast, as indicated by experiments with colchicine, 30% of the [3H]acetylcholine formed after intrasomatic injection was selectively exported from the cell body and transported along the axon. Most of the [3H]acetylcholine was recovered in the soluble fraction after both intra-axonal and intrasomatic injection of [3H]choline; only a small fraction was particulate. The significance of large amounts of soluble acetylcholine in R2 is uncertain, and some may occur physiologically. The concentrations of choline introduced by intraneuronal injection into both cell body and axon were, however, greater than those normally available to choline acetyltransferase in the cholinergic neuron; nevertheless, these large concentrations were efficiently converted into the transmitter. The synthetic capacity of the neuron supplied with injected choline may exceed the capacity of storage vesicles and of the axonal transport process.

摘要

将[3H]胆碱直接注射到已识别的胆碱能神经元R2的主要轴突中,它很容易被掺入到[3H]乙酰胆碱中。其代谢命运与注射到R2细胞体中的[3H]胆碱相似。在注射范围内,我们发现形成的乙酰胆碱量与注射量成正比;即使向轴突中注射88皮摩尔的[3H]胆碱,合成能力也未被超过。新合成的乙酰胆碱在轴突内移动,其动力学符合扩散预期。我们无法检测到从注射部位有任何选择性的顺行或逆行运输。相比之下,如秋水仙碱实验所示,体细胞内注射后形成的[3H]乙酰胆碱中有30%被选择性地从细胞体输出并沿轴突运输。在向轴突内和体细胞内注射[3H]胆碱后,大部分[3H]乙酰胆碱在可溶部分中回收;只有一小部分是颗粒状的。R2中大量可溶性乙酰胆碱的意义尚不确定,可能有一些是生理性的。然而,通过神经元内注射引入细胞体和轴突的胆碱浓度高于胆碱能神经元中胆碱乙酰转移酶通常可利用的浓度;尽管如此,这些高浓度仍能有效地转化为递质。供应注射胆碱的神经元的合成能力可能超过储存囊泡和轴突运输过程的能力。

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