Moss G W, Franks N P, Lieb W R
Biophysics Section, Blackett Laboratory, Imperial College of Science, Technology and Medicine, United Kingdom.
Proc Natl Acad Sci U S A. 1991 Jan 1;88(1):134-8. doi: 10.1073/pnas.88.1.134.
The activities of most proteins are relatively insensitive to general anesthetics. A notable exception is firefly luciferase, whose sensitivity to a wide range of anesthetic agents closely parallels that of whole animals. We have now found that this sensitivity can be controlled by ATP. The enzyme is insensitive at low (microM) concentrations of ATP and very sensitive at high (mM) concentrations. The differential sensitivity varies from anesthetic to anesthetic, being greatest (about a 100-fold difference) for molecules with large apolar segments. This suggests that anesthetic sensitivity is modulated by changes in the hydrophobicity of the anesthetic-binding pocket. Parallel changes in the binding of the substrate firefly luciferin, for which anesthetics compete, indicate that anesthetics bind at the same site as the luciferin substrate. These changes in the nature of the binding pocket modify not only the sensitivity to anesthetics but also the position of the "cutoff" in the homologous series of primary alcohol anesthetics; the cutoff position can vary from octanol to pentadecanol, depending upon the concentration of ATP. Our results suggest that particularly sensitive anesthetic target sites in the central nervous system may possess anesthetic-binding pockets whose polarities are regulated by neuromodulatory agents.
大多数蛋白质的活性对全身麻醉药相对不敏感。一个显著的例外是萤火虫荧光素酶,其对多种麻醉剂的敏感性与整个动物的敏感性密切相似。我们现在发现这种敏感性可由ATP控制。该酶在低(微摩尔)浓度的ATP下不敏感,而在高(毫摩尔)浓度下非常敏感。不同麻醉剂的差异敏感性各不相同,对于具有大的非极性片段的分子,差异最大(约100倍)。这表明麻醉敏感性是由麻醉剂结合口袋疏水性的变化调节的。麻醉剂与之竞争的底物萤火虫荧光素结合的平行变化表明,麻醉剂与荧光素底物结合在同一部位。结合口袋性质的这些变化不仅改变了对麻醉剂的敏感性,还改变了伯醇麻醉剂同系物中“截止点”的位置;截止点位置可从辛醇到十五烷醇不等,这取决于ATP的浓度。我们的结果表明,中枢神经系统中特别敏感的麻醉靶点可能具有其极性由神经调节因子调节的麻醉剂结合口袋。