Department of Anesthesia and Critical Care, Massachusetts General Hospital, Boston, Massachusetts, United States of America.
PLoS One. 2012;7(1):e29854. doi: 10.1371/journal.pone.0029854. Epub 2012 Jan 17.
Firefly luciferase is one of the few soluble proteins that is acted upon by a wide variety of general anesthetics and alcohols; they inhibit the ATP-driven production of light. We have used time-resolved photolabeling to locate the binding sites of alcohols during the initial light output, some 200 ms after adding ATP. The photolabel 3-azioctanol inhibited the initial light output with an IC50 of 200 µM, close to its general anesthetic potency. Photoincorporation of [(3)H]3-azioctanol into luciferase was saturable but weak. It was enhanced 200 ms after adding ATP but was negligible minutes later. Sequencing of tryptic digests by HPLC-MSMS revealed a similar conformation-dependence for photoincorporation of 3-azioctanol into Glu-313, a residue that lines the bottom of a deep cleft (vestibule) whose outer end binds luciferin. An aromatic diazirine analog of benzyl alcohol with broader side chain reactivity reported two sites. First, it photolabeled two residues in the vestibule, Ser-286 and Ile-288, both of which are implicated with Glu-313 in the conformation change accompanying activation. Second, it photolabeled two residues that contact luciferin, Ser-316 and Ser-349. Thus, time resolved photolabeling supports two mechanisms of action. First, an allosteric one, in which anesthetics bind in the vestibule displacing water molecules that are thought to be involved in light output. Second, a competitive one, in which anesthetics bind isosterically with luciferin. This work provides structural evidence that supports the competitive and allosteric actions previously characterized by kinetic studies.
萤火虫荧光素酶是少数几种可被多种全身麻醉剂和醇作用的可溶性蛋白之一;它们抑制 ATP 驱动的光产生。我们使用时间分辨光标记法在添加 ATP 后约 200ms 时,在初始光输出过程中定位醇的结合位点。光标记 3-氮杂辛醇以 IC50 为 200µM 抑制初始光输出,接近其全身麻醉效能。荧光素酶的 [(3)H]3-氮杂辛醇光掺入是可饱和的,但较弱。它在添加 ATP 200ms 后增强,但数分钟后可忽略不计。通过 HPLC-MSMS 对胰蛋白酶消化物进行测序表明,Glu-313 残基排列在一个深裂缝(前庭)的底部,其外端结合荧光素,3-氮杂辛醇的光掺入具有相似的构象依赖性。报道了一种具有更广泛侧链反应性的苄醇的芳香重氮乙烷类似物有两个位点。首先,它标记了前庭中的两个残基,Ser-286 和 Ile-288,这两个残基都与 Glu-313 一起参与伴随激活的构象变化。其次,它标记了与荧光素接触的两个残基,Ser-316 和 Ser-349。因此,时间分辨光标记支持两种作用机制。首先,是变构机制,其中麻醉剂结合在前庭中,取代了被认为参与光输出的水分子。其次,是竞争性机制,其中麻醉剂与荧光素等立体结合。这项工作提供了结构证据,支持了先前通过动力学研究表征的竞争性和变构作用。