Palmer Laura K, Wolfe Darren, Keeley Jessica L, Keil Ralph L
Department of Biochemistry and Molecular Biology, The Milton S. Hershey Medical Center, The Pennsylvania State University, Hershey, Pennsylvania 17033, USA.
Genetics. 2002 Jun;161(2):563-74. doi: 10.1093/genetics/161.2.563.
Volatile anesthetics affect all cells and tissues tested, but their mechanisms and sites of action remain unknown. To gain insight into the cellular activities of anesthetics, we have isolated genes that, when overexpressed, render Saccharomyces cerevisiae resistant to the volatile anesthetic isoflurane. One of these genes, WAK3/TAT1, encodes a permease that transports amino acids including leucine and tryptophan, for which our wild-type strain is auxotrophic. This suggests that availability of amino acids may play a key role in anesthetic response. Multiple lines of evidence support this proposal: (i) Deletion or overexpression of permeases that transport leucine and/or tryptophan alters anesthetic response; (ii) prototrophic strains are anesthetic resistant; (iii) altered concentrations of leucine and tryptophan in the medium affect anesthetic response; and (iv) uptake of leucine and tryptophan is inhibited during anesthetic exposure. Not all amino acids are critical for this response since we find that overexpression of the lysine permease does not affect anesthetic sensitivity. These findings are consistent with models in which anesthetics have a physiologically important effect on availability of specific amino acids by altering function of their permeases. In addition, we show that there is a relationship between nutrient availability and ubiquitin metabolism in this response.
挥发性麻醉剂会影响所有测试的细胞和组织,但其作用机制和作用位点尚不清楚。为了深入了解麻醉剂的细胞活性,我们分离了一些基因,这些基因在过表达时能使酿酒酵母对挥发性麻醉剂异氟烷产生抗性。其中一个基因WAK3/TAT1编码一种通透酶,可转运包括亮氨酸和色氨酸在内的氨基酸,而我们的野生型菌株对这些氨基酸是营养缺陷型的。这表明氨基酸的可用性可能在麻醉反应中起关键作用。多条证据支持这一观点:(i)转运亮氨酸和/或色氨酸的通透酶的缺失或过表达会改变麻醉反应;(ii)原养型菌株对麻醉有抗性;(iii)培养基中亮氨酸和色氨酸浓度的改变会影响麻醉反应;(iv)在麻醉暴露期间,亮氨酸和色氨酸的摄取受到抑制。并非所有氨基酸对这种反应都至关重要,因为我们发现赖氨酸通透酶的过表达不会影响麻醉敏感性。这些发现与以下模型一致,即麻醉剂通过改变通透酶的功能对特定氨基酸的可用性产生生理上重要的影响。此外,我们表明在这种反应中营养可用性与泛素代谢之间存在关系。