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胆碱类似物:它们在乙酰胆碱合成、储存和释放研究中的应用。

Choline analogues: their use in studies of acetylcholine synthesis, storage, and release.

作者信息

Collier B

出版信息

Can J Physiol Pharmacol. 1986 Mar;64(3):341-6. doi: 10.1139/y86-056.

Abstract

The objective of this article is to illustrate how choline analogues might provide insight into mechanisms that regulate the synthesis, storage, and release of acetylcholine (ACh). Studies with false neurotransmitters provide information about the origin of releasable transmitter. Thus, false esters that distribute like ACh to vesicle-bound stores are as releasable as is ACh, but esters that poorly localize to synaptic vesicles are poorly releasable. Studies of choline analogue uptake provide information about the structural specificity of that transport process and, also, show that choline uptake is regulated in response to activity. Thus, stimuli that normally release transmitter increase the rate of choline transport, presumably to provide more precursor for ACh synthesis. However, the relationship between precursor delivery and product formed can be dissociated, suggesting that some factor in addition to choline delivery is involved in ACh synthesis regulation. Studies with a compound (AH5183), which inhibits ACh uptake by synaptic vesicles, provide information about the relationship of ACh stores and releasable transmitter. In the presence of AH5183 some 15% of nerve terminal ACh is released in response to nerve impulses, suggesting the existence of a small population of vesicles that contain readily releasable ACh. In presence of AH5183, ACh synthesis is activated even when ACh release is depressed, showing that transmitter synthesis can be regulated by some factor other than nerve terminal ACh levels.

摘要

本文的目的是阐明胆碱类似物如何有助于深入了解调节乙酰胆碱(ACh)合成、储存和释放的机制。对假神经递质的研究提供了有关可释放递质来源的信息。因此,像ACh一样分布到与囊泡结合的储存部位的假酯与ACh一样易于释放,但定位到突触小泡较差的酯则不易释放。胆碱类似物摄取的研究提供了有关该转运过程结构特异性的信息,并且还表明胆碱摄取受活性调节。因此,通常释放递质的刺激会增加胆碱转运速率,大概是为ACh合成提供更多前体。然而,前体递送与形成的产物之间的关系可以分离,这表明除了胆碱递送之外,还有一些因素参与ACh合成调节。用一种抑制突触小泡摄取ACh的化合物(AH5183)进行的研究提供了有关ACh储存与可释放递质之间关系的信息。在AH5183存在的情况下,约15%的神经末梢ACh会因神经冲动而释放,这表明存在一小部分含有易于释放的ACh的囊泡。在AH5183存在的情况下,即使ACh释放受到抑制,ACh合成仍被激活,这表明递质合成可受神经末梢ACh水平以外的某些因素调节。

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