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化学结构与对乙酰胆碱受体亲和力之间的关系。

Relationships between chemical structure and affinity for acetylcholine receptors.

作者信息

Abramson F B, Barlow R B, Mustafa M G, Stephenson R P

出版信息

Br J Pharmacol. 1969 Sep;37(1):207-33. doi: 10.1111/j.1476-5381.1969.tb09539.x.

Abstract
  1. Series of analogues of acetylcholine have been prepared in which the acetyl group was replaced by phenylacetyl, cyclohexylacetyl, diphenylacetyl, dicyclohexylacetyl, (+/-)-phenylcyclohexylacetyl, benziloyl and (+/-)-phenylcyclohexylhydroxyacetyl groups and the trimethylammonium group was replaced by Me(2)EtN(+), MeEt(2)N(+), Et(3)N(+), [Formula: see text] Further series were prepared in which the acetoxyethyl group was replaced by ethoxyethyl, phenylethoxyethyl, cyclohexylethoxyethyl, diphenylethoxyethyl, and dicyclohexylethoxyethyl groups, and by n-pentyl, 5-phenylpentyl, 5-cyclohexylpentyl and 5:5-diphenylpentyl groups.2. The ethoxyethyl and n-pentyl series contain some compounds which are agonists or partial agonists when tested on the isolated guinea-pig ileum, but all the other compounds are antagonists.3. The affinity of the compounds for the postganglionic ("muscarinesensitive") acetylcholine receptors has been measured in conditions in which the antagonists have been shown to be acting competitively. There were considerable differences between their affinities, the most active (log K, 9.8) having one million times the affinity of the least active (log K, 3.7).4. The changes in affinity as the onium group was modified were not entirely independent of changes in the rest of the molecule. Increasing the size of the onium group, as judged from conductivity measurements on simpler onium salts, increased affinity in the series containing one large group (phenyl or cyclohexyl) but, in the series with two large groups, affinity declined when the size was increased beyond -(+)NMeEt(2).5. In general, the effects of changes in the rest of the molecule on affinity were bigger than the effects of changes in the onium group and there were bigger interactions. Affinity was increased to a greater extent by introducing one phenyl and one cyclohexyl group together than by introducing either two phenyl or two cyclohexyl groups; the increment was greater than the separate contributions made by one phenyl and one cyclohexyl group.6. The factors which influence the binding of molecules to receptors are discussed. There is no evidence that the separation between the onium group and the group in the receptor with which it interacts is greater in compounds with high affinity nor is there any evidence, from the study of the series which contain agonists and partial agonists, that ability to activate receptors depends upon the onium group being able to come close to this charged group in the receptors.
摘要
  1. 已制备了一系列乙酰胆碱类似物,其中乙酰基被苯乙酰基、环己基乙酰基、二苯乙酰基、二环己基乙酰基、(±)-苯基环己基乙酰基、苯甲酰基和(±)-苯基环己基羟基乙酰基取代,三甲铵基被Me(2)EtN(+)、MeEt(2)N(+)、Et(3)N(+)、[化学式:见原文]取代。还制备了进一步的系列,其中乙酰氧基乙基被乙氧基乙基、苯乙氧基乙基、环己乙氧基乙基、二苯乙氧基乙基和二环己乙氧基乙基取代,以及被正戊基、5-苯基戊基、5-环己基戊基和5,5-二苯基戊基取代。

  2. 乙氧基乙基和正戊基系列包含一些在离体豚鼠回肠上测试时为激动剂或部分激动剂的化合物,但所有其他化合物均为拮抗剂。

  3. 已在拮抗剂显示为竞争性作用的条件下测量了这些化合物对节后(“毒蕈碱敏感”)乙酰胆碱受体的亲和力。它们的亲和力存在相当大的差异,活性最高的(log K,9.8)的亲和力是活性最低的(log K,3.7)的一百万倍。

  4. 随着鎓基团的修饰,亲和力的变化并非完全独立于分子其余部分的变化。从更简单的鎓盐的电导率测量判断,增加鎓基团的大小,在含有一个大基团(苯基或环己基)的系列中增加了亲和力,但在含有两个大基团的系列中,当大小增加超过-(+)NMeEt(2)时,亲和力下降。

  5. 一般来说,分子其余部分变化对亲和力的影响大于鎓基团变化的影响,且存在更大的相互作用。同时引入一个苯基和一个环己基基团比引入两个苯基或两个环己基基团能更大程度地增加亲和力;增加量大于一个苯基和一个环己基基团各自的贡献。

  6. 讨论了影响分子与受体结合的因素。没有证据表明在高亲和力化合物中,鎓基团与其在受体中相互作用的基团之间的距离更大,也没有从包含激动剂和部分激动剂的系列研究中得到证据表明激活受体的能力取决于鎓基团能够接近受体中的这个带电基团。

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Quantitative correlations between chemical structure and affinity for acetylcholine receptors.
Eur J Pharmacol. 1976 Feb;35(2):245-52. doi: 10.1016/0014-2999(76)90226-0.

引用本文的文献

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Anticholinergic substances: A single consistent conformation.抗胆碱能物质:单一一致构象。
Proc Natl Acad Sci U S A. 1980 Feb;77(2):708-12. doi: 10.1073/pnas.77.2.708.
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Effect of gallamine on cholinergic receptors.加拉明对胆碱能受体的作用。
Can Anaesth Soc J. 1970 Nov;17(6):574-90. doi: 10.1007/BF03004717.
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On the simultaneous action of two competitive antagonists.关于两种竞争性拮抗剂的同时作用。
Br J Pharmacol. 1974 Jun;51(2):287-300. doi: 10.1111/j.1476-5381.1974.tb09659.x.

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