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一种针对嗅觉编码的化学修饰方法。使用硫醇特异性试剂的研究。

A chemical-modification approach to the olfactory code. Studies with a thiol-specific reagent.

作者信息

Menevse A, Dodd G, Poynder T M

出版信息

Biochem J. 1978 Dec 15;176(3):845-54. doi: 10.1042/bj1760845.

Abstract

The effects of thiol-specific reagents on the amplitude of the electro-olfactogram (E.O.G.) responses elicited from frog olfactory mucosa by pulses of odorant vapours was studied. The impermeant thiol-specific reagent mersalyl [(3-{[2-(carboxymethoxy)-benzoyl]amino}-2-methoxypropyl)hydroxymercury monosodium salt] brings about a rapid decrease in the E.O.G. signal obtained with the odorant pentyl acetate. The extent of the decrease is proportional to the concentration of the mersalyl applied and the effect of the reagent is partially but incompletely reversed by treatment of the labelled mucosa with dithiothreitol. The sites labelled by mersalyl can be protected by pretreating the mucosa with a dilute solution of the odorant pentyl acetate and leaving the solution in contact with the tissue after the addition of mersalyl. When the protecting odorant is washed out of the tissue, the original E.O.G. amplitude is regained. Pentyl acetate applied to the mucosa protected the E.O.G. response to vapour pulses of the following odorants from the effects of mersalyl: n-butyric acid, n-butyl acetate, phenylacetaldehyde and cineole (1,3,3-trimethyl-2-oxabicyclo[2.2.2]octane). The pentyl acetate applied to the mucosa failed to protect the E.O.G. response to vapour pulses of the following odorants from the effects of mersalyl: butan-1-ol, benzyl acetate, nitrobenzene, beta-ionone and linalyl acetate. The significance of the differential protection effects for the odour-quality-coding mechanism in the olfactory primary neurons is discussed. It is suggested that the olfactory code at this level of the olfactory system may be elucidated by chemical-modification methods.

摘要

研究了巯基特异性试剂对由气味剂蒸汽脉冲引发的青蛙嗅觉粘膜的嗅觉电图(E.O.G.)反应幅度的影响。非渗透性巯基特异性试剂汞撒利[(3-{[2-(羧甲氧基)-苯甲酰基]氨基}-2-甲氧基丙基)羟基汞单钠盐]会使由气味剂乙酸戊酯获得的E.O.G.信号迅速降低。降低程度与所施加汞撒利的浓度成正比,并且通过用二硫苏糖醇处理标记的粘膜,该试剂的作用会部分但不完全逆转。用气味剂乙酸戊酯的稀溶液预处理粘膜,并在加入汞撒利后使溶液与组织接触,可以保护被汞撒利标记的位点。当将保护气味剂从组织中冲洗掉时,可恢复原始的E.O.G.幅度。施加到粘膜上的乙酸戊酯保护E.O.G.对以下气味剂蒸汽脉冲的反应免受汞撒利的影响:正丁酸、乙酸正丁酯、苯乙醛和桉叶油素(1,3,3-三甲基-2-氧杂双环[2.2.2]辛烷)。施加到粘膜上的乙酸戊酯未能保护E.O.G.对以下气味剂蒸汽脉冲的反应免受汞撒利的影响:丁醇-1、乙酸苄酯、硝基苯、β-紫罗兰酮和乙酸芳樟酯。讨论了这种差异保护作用对嗅觉初级神经元中气味质量编码机制的意义。有人提出,通过化学修饰方法可能阐明嗅觉系统这一水平的嗅觉编码。

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