Eckenhoff Roderic G, Xi Jin, Shimaoka Motomu, Bhattacharji Aditya, Covarrubias Manuel, Dailey William P
ACS Chem Neurosci. 2010 Feb 17;1(2):139-145. doi: 10.1021/cn900014m. Epub 2009 Oct 12.
Volatility and low-affinity hamper an ability to define molecular targets of the inhaled anesthetics. Photolabels have proven to be a useful approach in this regard, although none have closely mimicked contemporary drugs. We report here the synthesis and validation of azi-isoflurane, a compound constructed by adding a diazirinyl moiety to the methyl carbon of the commonly used general anesthetic isoflurane. Azi-isoflurane is slightly more hydrophobic than isoflurane, and more potent in tadpoles. This novel compound inhibits Shaw2 K(+) channel currents similarly to isoflurane and binds to apoferritin with enhanced affinity. Finally, when irradiated at 300 nm, azi-isoflurane adducts to residues known to line isoflurane-binding sites in apoferritin and integrin LFA-1, the only proteins with isoflurane binding sites defined by crystallography. This reagent should allow rapid discovery of isoflurane molecular targets and binding sites within those targets.
挥发性和低亲和力阻碍了确定吸入麻醉药分子靶点的能力。在这方面,光标记已被证明是一种有用的方法,尽管目前还没有一种能与当代药物紧密模拟的。我们在此报告氮杂异氟烷的合成与验证,该化合物是通过在常用全身麻醉药异氟烷的甲基碳上添加一个重氮烷基部分构建而成。氮杂异氟烷的疏水性略高于异氟烷,对蝌蚪的作用更强。这种新型化合物与异氟烷类似,能抑制Shaw2钾离子通道电流,并以增强的亲和力与脱铁铁蛋白结合。最后,当用300nm波长照射时,氮杂异氟烷会与脱铁铁蛋白和整合素LFA-1中已知构成异氟烷结合位点的残基形成加合物,这是仅有的通过晶体学确定有异氟烷结合位点的蛋白质。这种试剂应能快速发现异氟烷的分子靶点以及这些靶点内的结合位点。