Xi Jin, Liu Renyu, Rossi Matthew J, Yang Jay, Loll Patrick J, Dailey William P, Eckenhoff Roderic G
Department of Anesthesiology & Critical Care, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
ACS Chem Biol. 2006 Jul 21;1(6):377-84. doi: 10.1021/cb600207d.
The difficulty in obtaining binding target and site information for low-affinity drugs, like the inhaled anesthetics, has limited identification of their molecular effectors. Because such information can be provided by photoactive analogues, we designed, synthesized, and characterized a novel diazirnyl haloether that closely mimics isoflurane, the most widely used clinical general anesthetic. This compound, H-diaziflurane, is a nontoxic, potent anesthetic that potentiates GABA-gated ion channels in primary cultures of hippocampal neurons. Calorimetric and structural characterizations show that H-diaziflurane binds a model anesthetic host protein with similar energetics as isoflurane and forms photoadducts with residues lining the isoflurane binding site. H-diaziflurane will be immediately useful for identifying targets and sites important for the molecular pharmacology of the inhaled haloether anesthetics.
对于像吸入麻醉剂这类低亲和力药物而言,获取其结合靶点和位点信息存在困难,这限制了对其分子效应器的识别。由于光活性类似物能够提供此类信息,我们设计、合成并表征了一种新型重氮基卤代醚,它与临床应用最为广泛的全身麻醉剂异氟烷极为相似。这种化合物,即H-重氮氟烷,是一种无毒、强效的麻醉剂,可增强海马神经元原代培养物中γ-氨基丁酸(GABA)门控离子通道的活性。量热法和结构表征表明,H-重氮氟烷与一种模型麻醉剂宿主蛋白结合时的能量学特征与异氟烷相似,并与异氟烷结合位点周围的残基形成光加合物。H-重氮氟烷将立即有助于识别对吸入卤代醚麻醉剂分子药理学至关重要的靶点和位点。