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家蟋蟀去传入中枢神经元的代谢变化。II. 对胆碱能结合位点和乙酰胆碱酯酶的影响。

Metabolic changes in deafferented central neurons of an insect, Acheta domesticus. II. Effects on cholinergic binding sites and acetylcholinesterase.

作者信息

Meyer M R, Reddy G R, Edwards J S

出版信息

J Neurosci. 1986 Jun;6(6):1676-84. doi: 10.1523/JNEUROSCI.06-06-01676.1986.

Abstract

Following the finding that cercal deafferentation of developing giant interneurons in the terminal abdominal ganglion (TG) of the cricket Acheta domesticus reduces TG protein metabolism within target interneuron dendrites and somata (Meyer and Edwards, 1982), it is now shown that deafferentation alters the turnover of three macromolecules associated with cholinergic transmission in the cercal sensory-giant interneuron pathway. The labeled specific ligands 3H-quinuclidinyl benzilate and 125I-alpha-bungarotoxin were used to assay populations of putative TG muscarinic and nicotinic cholinergic receptors, respectively, in control and deafferented groups of ganglia. The AChE activity of TG was also determined by assay and histochemical methods. Long-term deafferentation sustained throughout postembryonic development markedly reduces the densities of both muscarinic and nicotinic binding sites in the TG; short-term deafferentation of adult TG also leads to characteristic alterations in the properties of all three cholinergic markers within several days. Rapid changes seen in adults thus correlate with ultrastructural data demonstrating loss of afferent terminals within hours of sensory appendage removal. We propose that peripheral innervation-dependent regulatory mechanisms operate in both the developing and adult insect nervous system. Such mechanisms may influence transsynaptically the synthesis and turnover of specific macromolecules, some of which may reside on the cell surface of insect central neurons that are part of the cercal sensory-giant interneuron system.

摘要

在家蟋蟀终腹神经节(TG)中,发育中的巨型中间神经元的尾须去传入神经支配会降低靶中间神经元树突和胞体内的TG蛋白质代谢(迈耶和爱德华兹,1982年),之后发现,去传入神经支配会改变尾须感觉 - 巨型中间神经元通路中与胆碱能传递相关的三种大分子的周转。分别使用标记的特异性配体3H - 喹核醇基苯甲酸酯和125I - α - 银环蛇毒素来检测对照组和去传入神经支配组神经节中假定的TG毒蕈碱型和烟碱型胆碱能受体群体。还通过测定和组织化学方法确定了TG的乙酰胆碱酯酶(AChE)活性。在整个胚胎后发育过程中持续的长期去传入神经支配显著降低了TG中毒蕈碱型和烟碱型结合位点的密度;成年TG的短期去传入神经支配在几天内也会导致所有三种胆碱能标记物特性的特征性改变。因此,在成体中看到的快速变化与超微结构数据相关,这些数据表明在感觉附属物去除后数小时内传入终末的丧失。我们提出,外周神经支配依赖性调节机制在发育中的和成年昆虫神经系统中都起作用。这种机制可能通过跨突触影响特定大分子的合成和周转,其中一些可能存在于作为尾须感觉 - 巨型中间神经元系统一部分的昆虫中枢神经元的细胞表面。

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