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神经甾体类似物。10. C-6和C-7位甲基取代对(3α,5α)-和(3α,5β)-3-羟基孕烷-20-酮的GABA调节作用及麻醉作用的影响。

Neurosteroid analogues. 10. The effect of methyl group substitution at the C-6 and C-7 positions on the GABA modulatory and anesthetic actions of (3alpha,5alpha)- and (3alpha,5beta)-3-hydroxypregnan-20-one.

作者信息

Zeng Chun-min, Manion Brad D, Benz Ann, Evers Alex S, Zorumski Charles F, Mennerick Steven, Covey Douglas F

机构信息

Department of Molecular Biology and Pharmacology, Washington University School of Medicine, 660 South Euclid Avenue, St. Louis, Missouri 63110, USA.

出版信息

J Med Chem. 2005 Apr 21;48(8):3051-9. doi: 10.1021/jm049027+.

Abstract

The planar 5alpha-reduced steroid (3alpha,5alpha)-3-hydroxypregnan-20-one and the nonplanar 5beta-reduced steroid (3alpha,5beta)-3-hydroxypregnan-20-one act at GABA(A) receptors to induce general anesthesia. The structural features of the binding sites for these anesthetic steroids on GABA(A) receptors have not been determined. To determine how structural modifications at the steroid C-6 and C-7 positions effect the actions of these anesthetic steroids, an axial or equatorial methyl group was introduced at these positions. The analogues were evaluated (1) in [(35)S]-tert-butylbicyclophosphorothionate binding experiments, (2) in electrophysiological experiments using rat alpha(1)beta(2)gamma(2L) GABA(A) receptors expressed in Xenopus laevis oocytes, and (3) as tadpole anesthetics. The effects of methyl group substitution in the 5alpha- and 5beta-reduced series of compounds were strikingly similar. In both series, a 6beta-Me group gave compounds with actions similar to or greater than those of the parent steroids. A 6alpha-, 7beta- or 7alpha-Me substituent resulted in reduced potency for inhibition of radioligand binding, GABA(A) receptor modulation and tadpole anesthesia. Because of the similar effects of methyl group substitution in the two series of compounds and previous results from other studies showing that structural modifications in the steroid D ring/side chain region produce similar effects regardless of the stereochemistry of the A,B-ring fusion, we propose that either the 3alpha-hydroxyl groups of planar and nonplanar anesthetic steroids hydrogen bond to different amino acids on GABA(A) receptors or that this critical hydrogen bonding group interacts with membrane lipids instead of the receptor.

摘要

平面5α-还原甾体(3α,5α)-3-羟基孕烷-20-酮和非平面5β-还原甾体(3α,5β)-3-羟基孕烷-20-酮作用于GABA(A)受体以诱导全身麻醉。这些麻醉甾体在GABA(A)受体上的结合位点的结构特征尚未确定。为了确定甾体C-6和C-7位的结构修饰如何影响这些麻醉甾体的作用,在这些位置引入了一个轴向或赤道甲基。对类似物进行了评估:(1)在[(35)S]-叔丁基双环磷硫代酸盐结合实验中;(2)在使用非洲爪蟾卵母细胞中表达的大鼠α(1)β(2)γ(2L) GABA(A)受体的电生理实验中;(3)作为蝌蚪麻醉剂。5α-和5β-还原系列化合物中甲基取代的效果惊人地相似。在这两个系列中,6β-甲基使化合物的作用与母体甾体相似或更强。6α-、7β-或7α-甲基取代导致抑制放射性配体结合、GABA(A)受体调节和蝌蚪麻醉的效力降低。由于两个系列化合物中甲基取代的效果相似,以及其他研究先前的结果表明,无论A、B环融合的立体化学如何,甾体D环/侧链区域的结构修饰都会产生相似的效果,我们提出平面和非平面麻醉甾体的3α-羟基要么与GABA(A)受体上不同的氨基酸形成氢键,要么这个关键的氢键基团与膜脂而非受体相互作用。

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